artificial intelligence Archives | Âé¶¹Ó³»­´«Ã½ News Central Florida Research, Arts, Technology, Student Life and College News, Stories and More Fri, 18 Sep 2026 19:24:44 +0000 en-US hourly 1 https://wordpress.org/?v=7.1 /wp-content/blogs.dir/20/files/2019/05/cropped-logo-150x150.png artificial intelligence Archives | Âé¶¹Ó³»­´«Ã½ News 32 32 How to Impress on Your Job Interview /news/how-to-impress-on-your-job-interview/ Fri, 18 Sep 2026 13:24:14 +0000 /news/?p=151094 Experts from Âé¶¹Ó³»­´«Ã½â€™s Kenneth G. Dixon Career Development Center share pro tips on giving yourself the best chance at landing a job offer.

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Whether you’re attending a job fair or trying to advance to the interview stage for a position you’re applying for, you can increase your chances of success by following some tried-and-true tips from Âé¶¹Ó³»­´«Ã½â€™s .

How can you make a strong impression on your job interview?

  • Know your professional story/prepare your elevator pitch
  • Offer a confident greeting, handshake and smile
  • Think about two to three key selling points about your professional self. For Âé¶¹Ó³»­´«Ã½ students, start with your major/expected graduation and talk about related skills/experience including student clubs and class projects
  • Research employers and showcase your knowledge in conversation
  • Give examples to back up your answers. Storytelling is a big part of the interview experience.

How can you craft an effective elevator pitch?

Your elevator pitch introduces you to recruiters in 30-60 seconds. Follow the present-past-future format:

  • Present: What are you currently studying? What’s your major or program?
  • Past: Highlight a recent relevant experience (e.g., internship, research project, volunteer work).
  • Future: State your career goals and explain why you’re excited to connect with this employer.

What are some ways you can make your resume stand out in a pile?

  • A resume should be concise, organized marketing document highlighting your education, experiences and achievements; its purpose is to secure an interview and evolve with your professional growth.
  • Keep formatting clean and consistent: 1-inch margins, 1 page (up to 2 max), standard 10- to 12-point fonts, professional appearance and easy-to-scan layout.
  • Focus content on relevance: tailor to the position, connect transferable skills, emphasize contributions and quantify results whenever possible.
  • Use strong writing mechanics: start bullets with action verbs, maintain consistent verb tense (present for current roles, past for previous) and keep statements concise.
  • Include core sections as appropriate: Heading, objective (optional but tailored), education (reverse chronological order), summary of qualifications (skills-focused) and experience (employment, internships, research, projects).
  • Add optional sections when relevant: Activities, leadership, honors/awards, publications or research.

What software or AI tools can help build your resume?

  • is a fantastic tool available to all students by logging in with their NID credentials
  • VMock is a 24/7 virtual career assistant that utilizes technologies like artificial intelligence, machine learning and sophisticated analytics engine to deliver instant, personalized, and smart career guidance to students and professionals.
  • Do not rely only on AI to write content for your resume. Double check wonky spelling/grammar and word choices to make sure it is your voice.
  • Be aware that employers are now reviewing resumes and running them through plagiarism detection software to check for AI.
  • Utilize AI (VMock can do this) to make sure your resume matches the language in the job description closely enough so that it will pass through applicant tracking systems successfully.

What questions should job candidates ask the interviewer?

Typically, it’s best to focus on two to three questions to have prepared to ask at the end of the interview.

  • Ask about the company culture. What is it like to work there?
  • Ask about the position or opportunity in a way that helps you learn more than what you have already learned on your own research. In your opinion, what qualities/traits do you look for in an ideal candidate to be successful in the role?
  • Ask about what to expect in the interview process. What are next steps?

Are there any best practices for following up after an interview?

Within 24 hours, send personalized thank-you emails to the recruiters you spoke with that include:

  • A brief recap of your conversation
  • An expression of gratitude
  • A question or statement to keep the dialogue going
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Âé¶¹Ó³»­´«Ã½ Faculty Help Shape the Future of Human-Machine Communication as Emerging Field Earns International Recognition /news/ucf-faculty-help-shape-the-future-of-human-machine-communication-as-emerging-field-earns-international-recognition/ Wed, 16 Sep 2026 14:00:56 +0000 /news/?p=154868 The International Communication Association’s decision to elevate human-machine communication to Division status reflects years of leadership from Âé¶¹Ó³»­´«Ã½ researchers who helped establish the field and create a scholarly home for its growing community.

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As artificial intelligence (AI), virtual assistants and robots become increasingly woven into everyday life, more researchers are asking this question: What happens when technology stops being just a tool and becomes something we can communicate with?

Âé¶¹Ó³»­´«Ã½ faculty have spent years helping create a field dedicated to finding the answers.

“Human-machine communication is about studying how humans perceive and interact with technology as a communicator rather than simply as a tool.”

This summer, human-machine communication (HMC) reached a major milestone when the International Communication Association (ICA) elevated it from an interest group to an official Division, recognizing it as an established area of communication research. The achievement reflects the rapid growth of a field exploring how emerging technologies are reshaping the way people communicate, form relationships and make decisions.

“Human-machine communication is about studying how humans perceive and interact with technology as a communicator rather than simply as a tool,” Âé¶¹Ó³»­´«Ã½ College of Sciences Professor Jihyun Kim says. “It’s about communicating with machine agents as interaction partners.”

Among those who helped shape the field are faculty members Kim and Professor Patric Spence, whose leadership has contributed to HMC’s development both at Âé¶¹Ó³»­´«Ã½ and within the international research community.

When Technology Becomes the Communicator

Traditional studies of technology-mediated communication typically examine technology as a channel connecting people. HMC shifts the focus to interactions between people and technologies such as AI assistants, social robots and virtual companions.

Âé¶¹Ó³»­´«Ã½ Professor Jihyun Kim has helped advance human-machine communication’s development at Âé¶¹Ó³»­´«Ã½ while shaping the field through contributions to the global research community.

Researchers explore how these interactions can influence everything from trust and relationships to decision-making and communication.

Although scholars have studied human-computer interaction for decades, HMC is a relatively young field within the communication discipline. It formally emerged in 2015, bringing together researchers interested in studying machines not simply as tools, but as communicators.

Since then, the rapid adoption of generative AI has accelerated both public interest and scholarly research.

Kim, who recently completed a four-year leadership term with ICA’s Human-Machine Communication Interest Group, witnessed that growth firsthand.

“During my four years in leadership, I saw a drastic increase in the volume of HMC research,” she says. “I also saw scholars from interpersonal communication, organizational communication, public relations and many other communication specialties begin collaborating to better understand AI from their own perspectives.”

“We’re studying how humans perceive AI and communicate with it for good outcomes.”

But as public conversations increasingly focus on whether AI could replace human work or relationships, Kim says that’s a common misconception about human-machine communication research.

“A lot of times people assume we’re glorifying AI, but that’s not what we study,” Kim says. “We’re studying how humans perceive AI and communicate with it for good outcomes.”

Her own research explores how people perceive and interact with AI or machine agents and how people can instead use AI to strengthen, rather than replace, human relationships.

“I’m studying augmentation,†Kim says. “How can AI help strengthen the relationships we already have? How can we communicate with AI more effectively, so it enhances our social relationships instead of replacing them?”

Building a Scholarly Home

As interest in HMC grew, so did the need for a dedicated scholarly community.

Spence was among the founding members who organized the first HMC post-conference in 2016, creating one of the first formal spaces where researchers with shared interests could collaborate and exchange ideas.

“Through our research and leadership, we’ve helped put Âé¶¹Ó³»­´«Ã½ on the international stage.”

He later helped establish the journal, which launched in 2020 and is hosted under a Âé¶¹Ó³»­´«Ã½ domain. Before its creation, researchers published HMC studies across broader communication journals, as no publication was dedicated exclusively to the emerging field. The journal provided a central platform for sharing HMC research and scholarship, building an international academic community, and further positioning Âé¶¹Ó³»­´«Ã½ as a leader in the discipline.

“Whenever we do something meaningful in this field, Âé¶¹Ó³»­´«Ã½ is represented alongside that achievement,” Kim says. “Through our research and leadership, we’ve helped put Âé¶¹Ó³»­´«Ã½ on the international stage.”

Kim continued that work during her tenure as vice chair and later chair of ICA’s Human-Machine Communication Interest Group.  She focused on mentoring early-career researchers, expanding the field’s international presence and helping prepare the review dossier that ultimately led to HMC’s elevation to Division status.

From Momentum to Milestone

For Kim, the new designation signals more than organizational growth.

“[The recognition] especially matters for junior scholars because they’re contributing to a discipline that’s formally recognized by the world’s largest communication association.”

“Having this formal recognition within the International Communication Association sends the message that human-machine communication is now an established field,” Kim says. “It especially matters for junior scholars because they’re contributing to a discipline that’s formally recognized by the world’s largest communication association.”

The milestone is expected to create new opportunities for cross-disciplinary collaboration, including partnerships with researchers studying AI from technical, behavioral and social perspectives.

And as AI continues to evolve, Kim believes HMC will continue growing alongside it, helping researchers better understand not only the technologies themselves but also the people who use them.

“We want to make sure it’s not about studying bad things,” Kim says. “It’s about how we can leverage what AI offers to improve our lives and how we can communicate more effectively.”

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Jihyun-Kim
Âé¶¹Ó³»­´«Ã½ FinTech-AI Lab Is Shaping AI Talent /news/ucf-fintech-ai-lab-is-shaping-ai-talent/ Wed, 09 Sep 2026 13:30:37 +0000 /news/?p=155020 Âé¶¹Ó³»­´«Ã½ graduate students are collaborating with faculty and industry experts to solve real-world business challenges with AI and help shape the future of financial technology.

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What happens when graduate students go beyond the classroom to tackle real-world artificial intelligence (AI) challenges facing the financial industry?

At Âé¶¹Ó³»­´«Ã½â€™s , that experience comes to life in the FinTech-AI Lab.

The lab puts fintech master’s students to work on complex AI and machine learning problems alongside faculty researchers and industry mentors. Beyond technical expertise, the experience gives students a front-row seat to how AI is being used to solve business challenges and the opportunity to contribute to what comes next.

Established to bridge the gap between academic learning and industry innovation, the lab pairs selected students with leading industry organizations to develop solutions with the potential to influence products, improve decision-making and drive innovation across financial technology.

Each semester, just two to four students are selected through a competitive process based on academic performance and faculty interviews. Instead of completing a traditional capstone project, they join a faculty-led research team conducting applied AI research for industry partners.

Partnership Powering Innovation

One of the lab’s most impactful collaborations is with Equifax, a global leader in data, analytics and technology.

Together with Miller College of Business faculty, Equifax identifies high-impact business challenges, provides resources and mentors students throughout the research process. Fintech faculty members, Associate Professor Cuneyt Akcora and Assistant Professor Yafei Zhang, lead the lab’s research initiatives, meeting weekly with student teams and collaborating with Equifax to review progress and refine projects.

Students spend more than a year working on AI research, gaining an experience that closely resembles a part-time industry internship.

“The partnership shows what makes Âé¶¹Ó³»­´«Ã½â€™s master’s in fintech distinctive,†Zhang says. “Students not only learn finance, AI and data science in the classroom; they apply these tools to real industry problems with guidance from faculty and industry mentors. In the AI era, that kind of hands-on, corporate-partnered experience is essential.â€

Turning AI Skills Into Industry Solutions

The impact of the FinTech-AI Lab comes to life through the work of its students, whose research tackles real challenges facing the financial industry.

Fintech graduate student Michael Azzi set out to help address synthetic identity fraud, the fastest-growing financial crime in the United States.

Azzi developed an address-intelligence framework that combines Google’s Gemini large language model, the Google Places API and a rule-based risk engine to identify high-risk addresses, including virtual offices and private mailbox services. The approach could help improve fraud detection within consumer credit files.

“Working on synthetic identity fraud detection at Equifax showed me how AI can be applied to real-world business challenges,†Azzi says. “Being able to combine large language models with live address intelligence to help protect consumers made this one of the most meaningful projects I’ve worked on.”

Another fintech graduate student, Clare Anandra Eric Hamissi, investigated how government intervention programs, including stimulus payments and loan forbearance, influenced consumer default risk.

Her findings revealed that lower-income consumers and those with lower credit scores experienced the greatest reductions in default risk.

The projects don’t necessarily end when the research does. When a project demonstrates strong business potential, Equifax evaluates the results for possible productization or internal implementation, giving students the opportunity to contribute to solutions that could make a measurable impact across the financial industry.

Opening the Door to Experiential Learning

The FinTech-AI Lab demonstrates the Miller College of Business’ commitment to experiential learning while providing students with a new way to prepare for and help shape an AI-driven future.

Students gain experience working with enterprise-scale data, collaborating with faculty researchers and industry professionals, and solving problems at the intersection of finance, AI and data science.

As the lab prepares to welcome its third cohort of fintech student researchers this fall, it continues to set Âé¶¹Ó³»­´«Ã½â€™s Master’s in FinTech program apart. Students don’t just learn about AI, machine learning and financial technology — they put that knowledge to work alongside faculty and industry experts, solving real business challenges with the potential to influence products and business decisions.


The Âé¶¹Ó³»­´«Ã½ master’s in fintech is a STEM-designated graduate program that prepares the next generation of fintech leaders through AI, data analytics and emerging financial technologies. The first program of its kind in Florida, the program is offered each fall with in-person and online options.

 Applications are now open for Fall 2027.

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25 of Âé¶¹Ó³»­´«Ã½â€™s Fastest-Growing Alumni-Led Companies /news/25-of-ucfs-fastest-growing-alumni-led-companies/ Wed, 02 Sep 2026 15:23:58 +0000 /news/?p=154985 Family influences, career reinvention and lifelong friendships shaped the entrepreneurs behind Âé¶¹Ó³»­´«Ã½â€™s inaugural Ever Upward competition, proving there is no single path to building the future.

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Entrepreneurship has no single blueprint — and the stories behind Âé¶¹Ó³»­´«Ã½â€™s inaugural Ever Upward honorees make that clear.

The top three finalists from the new program, organized by Âé¶¹Ó³»­´«Ã½ Alumni, are creating jobs, strengthening communities and introducing innovative approaches in industries ranging from health care and hospitality to technology, finance and motorsports.

Their origin stories are shaped by education, family, friendships, unexpected career turns and the ability to adapt. Âé¶¹Ó³»­´«Ã½ helped the Ever Upward honorees build the knowledge, relationships and confidence to turn their ideas into impact. Rodney M. Grabowski, Âé¶¹Ó³»­´«Ã½â€™s senior vice president for and CEO of the Âé¶¹Ó³»­´«Ã½ Foundation, connected the honorees’ work to the university’s founding mission.

“Âé¶¹Ó³»­´«Ã½ was founded to support the space program … to launch humanity even further. And that spirit still defines us today,†Grabowski says. “We’re launching students into careers and leadership positions in every industry. We’re launching ideas from our classrooms and labs into the real world.â€

Recognizing Excellence

Ever Upward is Âé¶¹Ó³»­´«Ã½â€™s first program recognizing the fastest-growing Knight-owned and Knight-led businesses around the world. The 2026 rankings were based on cumulative percentage revenue growth over a consecutive three-year period, using calendar years 2022 through 2024.

Explore ways to

Âé¶¹Ó³»­´«Ã½ Alumni accepted applications in January before announcing the top 25 finalists in June. Companies were ranked by percentage of cumulative annual growth in revenue. The final rankings were revealed at a special celebration in August.

Grabowski says, “The success of Knight-led businesses is part of the momentum shaping Âé¶¹Ó³»­´«Ã½â€™s future. Through the university’s $3.5 billion campaign, Âé¶¹Ó³»­´«Ã½ is investing in people, ideas, research and partnerships that will help bring tomorrow within reach.â€

“These companies demonstrate the transformational power of entrepreneurship,†says Mike Harding, Âé¶¹Ó³»­´«Ã½ associate vice president for partnerships. “As they grow, their success creates opportunities for employees, strengthens the industries and communities they serve and inspires other entrepreneurs to pursue their own ideas.â€

Learn more about this year’s top three finalists. 

Blonde, bearded man in black business suit and tan pants stands next to white cylinder table with glass award on top
Ryan Rapolti ’11MBA, founder and CEO of Reception 24/7 (Photo by David Gallucci ’92, Âé¶¹Ó³»­´«Ã½ Alumni)

No. 3: Reception 24/7

Ryan Rapolti ’11MBA, founder and CEO of Reception 24/7, traces his approach to leadership to experiences he had at home.

Rapolti watched his mother return to college while raising a family, which shaped his understanding of perseverance. His stepfather’s work in vocational rehabilitation also influenced his belief that business can be a vehicle for helping people.

Those influences became part of the foundation for Reception 24/7, which provides around-the-clock answering services for businesses. As artificial intelligence reshapes customer service, the company combines aspects of that technology with human support so clients can remain responsive and accessible. Rapolti applies the same people-first philosophy to the company’s workplace culture.

For Rapolti, innovation begins with understanding what both clients and employees need, then using technology to strengthen rather than replace human connection.

“You take away so many things from the Âé¶¹Ó³»­´«Ã½ experience — not just what you learn in a textbook or from the professor, but from the people sitting next to you,†says Rapolti. “I am so excited to have been in the top three. Being able to grow quickly is great. Hopefully it will allow us to hire more Âé¶¹Ó³»­´«Ã½ graduates and continue to do great things with the university.â€

Man wearing glasses in black business jacket, white shirt, and black and white polka dot tie, stands next to white cylinder table with glass award on top
W. Paul Jones ’94, Sebring Driving Club founder. (Photo by David Gallucci ’92, Âé¶¹Ó³»­´«Ã½ Alumni)

No. 2: Sebring Driving Club

Four years ago, W. Paul Jones ’94 had a choice to make: accept his fate or pivot.

Jones was the longtime managing director of the Palm Beach Driving Club before the historic raceway shuttered its gates in 2022. When an opportunity to purchase the Sebring International Raceway appeared in front of him, Jones decided to take action.

Jones, who had extensive hospitality management experience, returned to his longtime interest when he founded the Sebring Driving Club, creating memorable experiences in the form of a private driving community. The club gives members access to Sebring International Raceway and a place to connect through a shared interest in motorsports.

By turning the traditional track experience into a year-round membership community, Jones found a new business model.

Jones challenges aspiring entrepreneurs to take the leap and dare to chart their own paths forward.

“Don’t be afraid to fail,†says Jones. “Start your company and keep on going. Go at it with passion.â€

Four men in business suits stand side by side behind white cylinder table with glass award on top
From left to right: Keith Ahrens ’08, Tyler Bloechinger ’09, Carey Sobel ’09 and Travis Barr ’09 (Photo by David Gallucci ’92, Âé¶¹Ó³»­´«Ã½ Alumni)

No. 1: Coastal Investment Company

For Coastal Investment Company founders Keith Ahrens ’08, Travis Barr ’09, Tyler Bloechinger ’09 and Carey Sobel ’09, entrepreneurship was shaped by friendships that began at Âé¶¹Ó³»­´«Ã½.

The partners built a diversified investment company that acquires and grows businesses across multiple industries. Their model combines complementary expertise with a hands-on approach to identifying opportunities, supporting leadership teams and helping companies reach their next stage of growth.

They credit Âé¶¹Ó³»­´«Ã½ with providing the mentors, networks and entrepreneurial environment that gave them the confidence to take risks and ultimately launch Coastal together. Those connections remain central to the company’s culture, from hiring fellow Knights and drawing talent from their Âé¶¹Ó³»­´«Ã½ networks to mentoring students and young alumni.

“We met at Âé¶¹Ó³»­´«Ã½, continued on, kept in touch and pushed each other,†says Bloechinger. “Relationships are so important. People are what will lead to your success.â€

Coastal’s approach shows how different perspectives and complementary strengths can create a more collaborative model for growth.

Celebrating the Top 25

Interested in Ever Upward? Details about the next application period, including eligibility for 2027 honorees, will be announced at .

See the final rankings below.

1. Coastal Investment Company

  • Tyler Bloechinger ’09 
  • Keith Ahrens ’08 
  • Travis Barr ’09 
  • Carey Sobel ’09 

2. Sebring Driving Club

  • W. Paul Jones ’94 

3. Reception 24/7

  • Ryan Rapolti ’11MBA

4. Orange Tree Staffing

  • Mardly Smith ’95 
  • Craig Smith ’94 

5. Quadrant Engineering, P.C.

  • Rafiqul Chowdhury ’09 ’11MS 

6. Island Direct Primary Care

  • John Rothwell III ’13 ’15MS ’18DNP

7. Martin Aquatic Design and Engineering

  • Josh Martin ’07 

8. Maymont Senior Care

  • Nichole Blake-Little ’15 

9. Boys Electrical Contractors

  • Kyle Nylander ’02 ’09 

10. Brewlando

  • Shara Sooknarine Pathak ’04

11. Qu5 Services, Inc.

  • Zachary Quandt ’84 

12. I’m All Ears

  • Shelby Roemer ’08

13. Strategos Group

  • Adam Giery ’08 ’11MA 

14. CJS Communications

  • Christopher Slaven ’13 
  • Alexander Fackler Sr. ’11 

15. Space Coast Pool School

  • Lauren Broom ’00 

16. Buckalew Hospitality

  • David “Skee” Buckalew ’05

17. Knight Federal Solutions

  • Chris Baeten ’03 

18. Boston Data Pro, LLC

  • Rajeev Verma ’04MS

19. McGinniss Himmel Insurance Agency

  • Allen McGinniss ’05

20. Threaded Marketing Group

  • Kelly Jo Jefferis ’04 

21. Garney Construction

  • Matthew Reaves ’05 

22. aVenue Event Group

  • Sean Hughes Jr. ’10 

23. S Cook Productions, LLC

  • Stacey Cook ’99 

24. Global Ktech

  • Kannan Srinivasan ’96MS 

25. Kavaliro

  • Mark Moore ’99 
  • John Mahony ’96
  • Diane Mahony ’96 ’01MEd 
  • Bill Peppler ’96 
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Reception-Ryan Rapolti Ryan Rapolti ’11MBA, founder and CEO of Reception 24/7 (Photo by David Gallucci '92, Âé¶¹Ó³»­´«Ã½ Alumni) W. Paul Jones-Sebring W. Paul Jones ’94, Sebring Driving Club founder. (Photo by David Gallucci '92, Âé¶¹Ó³»­´«Ã½ Alumni) Âé¶¹Ó³»­´«Ã½-Alumni-Coastal-Investment From left to right: Carey Sobel '09 (Photo by David Gallucci '92, Âé¶¹Ó³»­´«Ã½ Alumni)
Âé¶¹Ó³»­´«Ã½ Professor Paves the Way for the Promising Future of Special Education /news/ucf-professor-paves-the-way-for-the-promising-future-of-special-education/ Mon, 31 Aug 2026 12:55:51 +0000 /news/?p=154920 Matthew Marino defied odds when doctors told him he’d never walk again. Now he’s advancing research to help others overcome their own obstacles at Âé¶¹Ó³»­´«Ã½â€™s Toni Jennings Exceptional Education Institute.

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Matthew Marino rises at 4:45 a.m. to begin a day he’s already thankful for. He chooses to not think about his vision problems or the surgeries (more than a dozen) his body has endured. Marino says he’s “happy†to work out, “blessed†to spend time with his daughter and son before they go to school, and “honored†to come to work as director of Âé¶¹Ó³»­´«Ã½â€™s Toni Jennings Exceptional Education Institute (TJEEI).

“To lead this amazing team and help change the lives of people with disabilities,†Marino says, summarizing the impact of his work before emphasizing the impact it’s made on him, “I feel like I’m living a dream every single day.â€

A number of factors, personal and professional, feed Marino’s enthusiasm.

He was once given only a slim chance to walk again. He knows how it feels to vanquish doubt and has witnessed dramatic changes in others because someone believed in them, perhaps for the first time.

He funnels all of this — passion, teamwork and life experiences — into his why: Discover better strategies to help more people read, learn and find meaningful employment.

“People with learning disabilities are all around us,†says Marino, a professor of special education in the College of Community Innovation and Education. “There isn’t a moment that goes by when I’m not thinking about how I can make a difference for them.â€

His resolve has led to $75.5 million in funding for 18 research projects since 2011. The most recent months, however, have been stunning, with technology unlocking so many doors that Marino can hardly believe what’s happening.

“We’re in a spot with AI that I never thought I’d see in my lifetime,†he says. “It means our opportunities to give people hope are growing.â€

Man in long-sleeve white dress shirt points to screen at front of classroom of students sitting at wooden desks situated in a semi circle
Matthew Marino is driven to help people living with disabilities to find the tools to open the doors of employment. (Photo by Antoine Hart)

Using Tech to Better Serve People

The field of special education is complicated. Disorders, spectrums, challenges that change with age, processing delays, they’re all part of a giant melting pot.

Marino boils his work down to the largest group: those who have specific learning disabilities — about 2.4 million students in the United States.

“Most of them face a constant battle to identify letters and translate them into sounds and words,†he says. “The same is true with math symbols and numbers. It takes a ton of persistence to do basic classwork.â€

Unfortunately, frustration often leads capable, intelligent people to give up.

“But our work with AI is changing everything,†Marino says. He puts us in the shoes of a student to illustrate. “You’re studying the complexities of cells, trying to read cumbersome texts about mitochondria and osmosis. Now we can show you how to use AI to code words, phrases or symbols and translate them into understandable text.â€

The material can be converted to slide decks, podcasts and videos. A process that used to take five days to complete can be done in one minute.

“What matters most is that students can learn,†Marino says. “It’s a gamechanger for teachers, too. Instead of spending an hour presenting information, they can focus on the reason they love teaching: to give students a better future.â€

This far exceeds the futuristic vision Marino brought to Âé¶¹Ó³»­´«Ã½ in 2011.

He didn’t even intend to accept a position when he came from Washington State University for an interview.

“I’m an early adopter of technology,†he says. “On that trip, I was introduced to Âé¶¹Ó³»­´«Ã½â€™s work in VR, AR and . I told my wife, ‘I think we need to come here.’â€

He immediately dove in, earning research grants and contracts from agencies like the U.S. National Science Foundation, the Office of Special Education Programs, and Institute of Educational Sciences. He’s layered the newest advancements into each project.

The progress made, according to Marino, has mostly come from a force more powerful than technology alone: the team of experts at TJEEI.

“They have siblings who never thrived because of dyslexia or they’ve cared for a family member with memory loss,†he says. “When a student comes in with a story, at least one of us can relate to it.â€

Turning Obstacles into Impact

As for Marino’s own story, he recites the date as easily as his birthday: Sept. 23, 1990. Marino, 19, was playing rugby for Keene State College in New Hampshire.

During a breakaway, two opponents hit him so hard his head snapped back and he landed on his neck. In the hospital, he was told a spinal cord injury would prevent him from walking and his life expectancy will shorten.

“I laid in that hospital bed for a long time,†Marino says, “and had a moment with God where I made a promise: ‘If I get up and walk out of here, I’ll change my life and give back to others.’ â€

“I laid in that hospital bed for a long time. … I made a promise: ‘If I get up and walk out of here, I’ll change my life and give back to others.’ â€

That’s exactly what he did, walking out the door and leaving plans for an architecture career in the past.

For his first job, he mentored students with extreme behavior challenges. Marino’s dad, an educator, opened his son’s eyes to an unfortunate truth: They hired you because no one else wants to work with those kids.

“He was right,†Marino says. “That experience made me realize how much it means to a kid when someone takes the time to help, without judging. I also knew the field of special education is where I’m needed most.â€

There are too many stories for Marino to recount. Each carries its own weightiness, so he shares a recent one: “We heard from a graduate who was named employee of the month at Amazon. When we first met, he was living in a poor area of Orlando, riding a bus two hours to Âé¶¹Ó³»­´«Ã½. But he committed to learning and improving his life. We gave him the same commitment. And now look how he’s doing.â€

The daily inspiration Marino finds in people he helps at Âé¶¹Ó³»­´«Ã½ is part of why he doesn’t dwell on the near-tragic accident or the limitations it still causes at times. Instead, he focuses on the benefits that continue to grow from it.

“I walked when doctors said I wouldn’t,†he says. “I made it to 30 years old, to 40 and to 50. I’m still going, still keeping my promise, and I have no intention to stop.â€

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ucf-matthew-marino-education Matthew Marino is driven to help people living with disabilities to find the tools to open the doors of employment. (Photo by Antoine Hart)
The Dawn of Neuro-Accounting /news/the-dawn-of-neuro-accounting-2/ Tue, 25 Aug 2026 13:00:35 +0000 /news/?p=154739 Âé¶¹Ó³»­´«Ã½ Professor of Accounting Jake Rose is one of a handful of researchers using artificial intelligence and neuroscience to transform business decision-making, benefiting companies worldwide.

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The more Jake Rose’s colleagues at Âé¶¹Ó³»­´«Ã½ and his neighbors around Chuluota, Florida, get to know him, the more he surprises them. The California native surfs and gardens. He is as comfortable building barns as he is building frameworks for AI-driven interfaces. He studied premed, minored in information systems and at heart admits to being “a closet psychologist.†He and his wife, who is now a visiting lecturer in the Kenneth G. Dixon School of Accounting at Âé¶¹Ó³»­´«Ã½, raised their two children in New Zealand and recently purchased seven acres of workable land in the Orlando area.

Through the emerging field of neuro-accounting, Âé¶¹Ó³»­´«Ã½ Professor Jake Rose is exploring how AI and neuroscience can transform the way accounting is understood, practiced and applied. (GIF by Antoine Hart)

The man with the callused hands is one of only a handful of professors in the world merging artificial intelligence (AI) and neuroscience to shape the future of the field he’s best known for at Âé¶¹Ó³»­´«Ã½ — accounting.

Welcome to the dawn of neuro-accounting.

“When my master’s students hear about these new ways to view and practice accounting and the tremendous difference technology can make, it heightens their interest,†says Rose, Âé¶¹Ó³»­´«Ã½’s Kenneth G. Dixon Eminent Scholar. He adds with a smile, “I’m also more relatable when they find out how I spend my weekends.â€

“Accounting provides the information needed for [business] decision-making, and that’s why neuro-accounting will eventually impact the entire global economy.”

On his most recent Saturdays, he’s been using his hands to dig postholes for 2,000 linear feet of fencing while letting his mind do what comes naturally to him: envisioning the future. In this one, he sees Paso Fino horses and an orchard.

Then, fully refreshed on Monday, he’s Professor Rose again with his thoughts laser-focused on what he calls “this unusual combination†of behavioral science, technology and accounting.

“I’ve never viewed accounting as just credits and debits,†he says. “When you take a step back, you see business is about decision-making. Accounting provides the information needed for this decision-making, and that’s why neuro-accounting will eventually impact the entire global economy.â€

Trailblazing with Technology

Rose joined Âé¶¹Ó³»­´«Ã½ in August 2025 after directing accountancy programs at universities from the South Pacific to America’s heartland. He made the move because he recognized a unique culture in , which recently received a $50 million gift from entrepreneur and alum Barry Miller ’95 to strengthen tech-driven business education — including Rose’s work.

“This is one of the very few business schools that want to pursue experimental work with technology,†Rose says. “I saw it as a unique place to make progress in neuro-accounting, which, other than Âé¶¹Ó³»­´«Ã½, only exists in a colleague’s lab in Australia.â€

He’s made rapid progress. Within weeks of arriving at Âé¶¹Ó³»­´«Ã½, Rose was named the university’s Kenneth G. Dixon Eminent Scholar for excellence in accounting research. At the award ceremony, Rose emphasized the larger mission driving his work: “We can literally improve the world.â€

When he says “we†in this context, he refers to a collaboration between people and advanced tech.

“When we design systems and interfaces that allow people and AI to make important decisions together, then every business and government can benefit.”

“The basic mechanics of accounting are already being automated,†he says. “The future will be about how people perceive risks within financial data and how technology can improve professional judgment. The consequences of good judgment are massive and affect businesses and lives worldwide. The truth is, we’re bad at dealing with large amounts of data because our brains are limited. But AI and other new technologies are expanding our limits. When we design systems and interfaces that allow people and AI to make important decisions together, then every business and government can benefit. The implications are massive.â€

Those improvements, the way Rose sees them, will have their origins at Âé¶¹Ó³»­´«Ã½â€™s Dixon School of Accounting, in the first neuro-accounting lab of its kind in the U.S.

Fun and Fresh: The Future of Accounting

Rose already knows what the future lab could look like because he’s worked in the Business Behavioural Laboratory at Monash University in Australia. The Dixon School’s director, Jay Thibodeau, is currently seeking funding to bring the concept to Âé¶¹Ó³»­´«Ã½.

Once complete, the lab would allow researchers to measure how new technology and financial information influence crucial judgment factors like stress and attention.

“Ultimately, we’ll be able to help firms make better decisions,†Rose says.

However, he doesn’t want to be one of the only people in the world who understands neuro-accounting.

“This is why I love teaching,†Rose says. “I get to spread the word with students and let them experiment. It’s fun. They’re enthusiastic about taking accounting where no one has taken it.â€

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Âé¶¹Ó³»­´«Ã½ Researcher to Support DOE Project Using AI to Accelerate Scientific Discovery /news/ucf-researcher-to-support-doe-project-using-ai-to-accelerate-scientific-discovery/ Thu, 06 Aug 2026 16:00:12 +0000 /news/?p=154574 Assistant Professor Haonan Ling will explore virtual solutions to biomanufacturing for the Department of Energy’s Genesis Mission, which aims to strengthen America’s energy industry and national security.

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Scientific breakthroughs often require years of experimentation, testing and refinement before researchers can answer some of society’s most complex questions. To explore how artificial intelligence can help accelerate that process, Assistant Professor of Mechanical and Aerospace Engineering Haonan Ling is joining the U.S. Department of Energy’s Genesis Mission.

The nationwide initiative encourages interdisciplinary teams to develop new AI models and research workflows capable of addressing national challenges across fields such as advanced manufacturing, biotechnology, critical materials, energy and quantum information.

“The Genesis Mission harnesses the collective strengths of the nation’s leading institutions across academia, industry, and government to accelerate the pace of discovery,†says Winston Schoenfeld, Âé¶¹Ó³»­´«Ã½ vice president for research and innovation. “Âé¶¹Ó³»­´«Ã½â€™s participation reflects the expertise of our researchers and talented students, whose contributions will help shape AI-enabled scientific workflows and transform technological advances into real-world solutions that fuel American competitiveness.â€

A New Approach to Creating Fuels and Chemicals

As interdisciplinary scientific challenges become increasingly data-intensive, applying human ingenuity to advanced technologies creates possibilities to solve long-standing industry issues.

Ling’s contribution to the Genesis Mission will aim to address problems with biomanufacturing by developing an AI digital twin (virtual replication). This digital twin predicts and optimizes bioprocess performance, enabling improved process monitoring, decision-making, and scale-up.

The project will also provide opportunities for Âé¶¹Ó³»­´«Ã½ researchers at different stages of their careers to contribute to the work. Pinzhen Lin, who will begin a doctoral degree at Âé¶¹Ó³»­´«Ã½â€™s College of Optics and Photonics in Fall 2026, will join Ling’s research group and lead development of the project’s real-time sensor, including its characterization and performance benchmarking. Jirui Fu ’24PhD, a Âé¶¹Ó³»­´«Ã½ mechanical engineering doctoral graduate and postdoctoral scholar in the College of Engineering and Computer Science, will also assist with the project.

“The challenge is that conventionally scaling up biomanufacturing is slow and prone to failure, creating a need for smarter tools to accelerate development,†Ling says. “If successful, this project could significantly accelerate the development and deployment of sustainable biomanufacturing for fuels and chemicals, making the process faster, cheaper and less risky.â€

With industry-academic collaboration at the core of the Genesis Mission, Ling is working on the project with Kansas State University Assistant Professor Yian Chen, as well as the National Laboratory of the Rockies researchers Ajinkya Pal, Jason DesVeaux and Evan Komp.

A Mission With Many Benefits

Although the Genesis Mission is focused on accelerating scientific discovery, Ling believes the work has the potential to create benefits that extend beyond the research community.

“The AI digital twin framework developed here has strong potential as a commercial platform that can be adopted across a wide range of industries, from energy to materials,†Ling says. “More broadly, it could lower the barriers for industrial partners to adopt bio-based processes, helping drive the transition toward a more sustainable economy.â€

For Ling, the research also represents an opportunity to see emerging technologies applied to real-world challenges.

“As an early-career researcher, I feel very fortunate to lead and participate in a mission of this scale,†Ling says. “What excites me most is the opportunity to apply this technology to solve real-world problems, and to see how it can be integrated with the rapidly advancing field of AI.â€


This project will be supported by the U.S. Department of Energy Office of Science through the Genesis Mission, a Transforming Science and Energy with AI initiative.

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Successful Entrepreneur Turns to Âé¶¹Ó³»­´«Ã½ to Amplify His Impact /news/successful-entrepreneur-turns-to-ucf-to-amplify-his-impact/ Fri, 29 May 2026 13:45:38 +0000 /news/?p=153476 ±õ²Ô»å³Ü²õ³Ù°ù²âÌý¾±²Ô²Ô´Ç±¹²¹³Ù´Ç°ùÌýAlex Hubenthal ’13 is taking his career across the global business landscape to the next level through his fintech master’s studies at Âé¶¹Ó³»­´«Ã½.

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When corporate finance executive and entrepreneur Alex Hubenthal ’13 senses change on the horizon, he doesn’t shy away — he leans in.

At 16, he opened his first brokerage account in 2008, with his grandmother’s help, during the Great Recession because he saw a market that had no place to go but up.

When cloud accounting platforms were just starting to become viable in the early 2010s, he was an early adopter, eventually building a firm that served clients remotely.

Now as artificial intelligence (AI) reshapes the business landscape, Hubenthal decided to embrace this latest inflection point by enrolling in Âé¶¹Ó³»­´«Ã½â€™s .

“Âé¶¹Ó³»­´«Ã½ is ready for every Knight who dares to lean in.â€

“Âé¶¹Ó³»­´«Ã½Â doesn’t just educate you. It finds you. It amplifies who you are and prepares you to make a difference,†says Hubenthal, who is from Elon, North Carolina. “Sometimes I’m amazed that this small-town kid has ended up consulting with business leaders in boardrooms across the globe. Somewhere out there, another teenager is watching the world shift and feeling that pull. Âé¶¹Ó³»­´«Ã½ is ready for every Knight who dares to lean in.â€

Alex Hubenthal in dark suit, white dress shirt and tie, stands to the right of Barry Miller in beige suit jacket and white shirt in front of grass wall
Âé¶¹Ó³»­´«Ã½ alumni Alex Hubenthal ’13 (left) and Barry S. Miller ’95 (right) at the College of Business.

Leading With a Spirit of Innovation

It’s Knights like Hubenthal who inspired Barry S. Miller ’95 to invest a transformational $50 million gift into the College of Business to further strengthen Âé¶¹Ó³»­´«Ã½â€™s reputation as a global leader in fintech, AI and business innovation.

A graduate of Âé¶¹Ó³»­´«Ã½â€™s  program in the , Hubenthal initially came to Âé¶¹Ó³»­´«Ã½ to study Ìý²¹²Ô»åÌýengineering. But after witnessing the impact of the Great Recession on families, including his own, he switched to business and finance.

“I made it my mission to understand what happened, why it happened and how to help prevent it,â€Â Hubenthal says.

Early in his career, Hubenthal worked in corporate finance, gaining hands-on experienceÌý²¹²Ô»åÌýlearning how established organizations manage their financial infrastructure.

In 2015, just two years after earning his bachelor’s degree, he co-founded a data analytics firm with fellow Âé¶¹Ó³»­´«Ã½ graduates, bringing enterprise-grade big data and analytics services to local businesses at an accessible price point. That venture earned Hubenthal recognition as part of Business North Carolina magazine’s cover story on innovation in 2016.

Building on Success

He has since founded firms rooted in data analytics, accounting and finance — including his firm Bookscaping — started a financial literacy podcast to share his expertise with small businesses, and published a book, The Simple Fiscal Method: 17 Financial Lessons for Every Small Business Owner to Succeed in Life.

In 2022, he signed on as vice president of finance for ryco.io, an educational startup where he built and still leads the company’s financial strategy and operations.

He is currently beta testing an automated system for the company, which almost fully manages its payable function with safeguards, audit trails and authorizations built in. He envisions this empowering ryco.io to scale its financial operations.

Hubenthal wanted to fully immerse himself in this new era of business and tech, so he is turning to Âé¶¹Ó³»­´«Ã½â€™s fintech program to prepare him for what’s ahead.

“For me, the real world is the lab. And thanks to Âé¶¹Ó³»­´«Ã½, I’m just getting started.â€

“The program put me in a room with nearly 30 students from four continents who felt like family within the first month,â€Â Hubenthal says. “Just weeks ago, I built a portfolio optimization tool for my own retirement account — 1 million simulated market daysÌý²¹²Ô»åÌýalmost 4,000 years of data, solved by a supercomputer in under three seconds — using what I learned in this program.

“For me, the real world is the lab,†he continues. “And thanks to Âé¶¹Ó³»­´«Ã½, I’m just getting started.â€

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Alex Hubenthal – Barry Millerv2 Alex Hubenthal (left) and Barry Miller (right) at the College of Business.
NASA-Funded Âé¶¹Ó³»­´«Ã½ Research Advances Urban Air Mobility by Mapping Radio Signals /news/nasa-funded-ucf-research-advances-urban-air-mobility-by-mapping-radio-signals/ Thu, 30 Apr 2026 13:00:34 +0000 /news/?p=152510 Through a NASA award, Âé¶¹Ó³»­´«Ã½ postdoctoral researcher Saumya Gupta is modeling how radio signals move through dense urban environments — a challenge critical to the future of urban air mobility.

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As drones, air taxis and emergency aircraft begin to fill city skies, the biggest challenge may be invisible: how radio signals move through dense urban environments.

That future depends on reliable communication systems that can function reliably amid buildings, materials and interference, a problem Âé¶¹Ó³»­´«Ã½ postdoctoral researcher Saumya Gupta is working to solve.

“Collaborating with NASA through the MUREP MPLAN program provides an opportunity to contribute to cutting-edge research that supports the future of aviation and air mobility.†— Saumya Gupta, postdoctoral researcher

Gupta received a NASA Minority University Research and Education Project (MUREP) Partnership Learning Annual Notification (MPLAN) award to study and model how radio signals behavior in complex urban environments. She is working with co-principal investigator , an associate professor in Âé¶¹Ó³»­´«Ã½â€™s , on a project titled “A Digital Twin for AAM Communication Channels.â€

Gupta’s research focuses on urban air mobility, where drones, emergency response aircraft and potential air taxis depend on reliable communication networks to operate safely in dense cities. The work builds on a growing body of AAM research at Âé¶¹Ó³»­´«Ã½, including prior simulation efforts led by Professor Vela, by focusing specifically on how communication signals move through crowded cities.

“Collaborating with NASA through the MUREP MPLAN program provides an opportunity to contribute to cutting-edge research that supports the future of aviation and air mobility,†Gupta says. “It allows our team at Âé¶¹Ó³»­´«Ã½ to work on problems that are directly relevant to NASA’s AAM (advanced air mobility) mission while also benefitting from guidance and collaboration with NASA researchers. This partnership helps ensure that our research addresses real-world challenges in integrating new air vehicles into the national airspace.â€

Building the Digital Twin

Traditional radio frequency prediction models often rely on simplified formulas that estimate how signals weaken over distance. While useful, these models lack the spatial and material detail needed to represent dense urban environments where glass, steel and concrete significantly affect signal behavior.

More advanced simulation tools can model signal reflection, absorption and diffraction using digital maps. Most maps include building shapes but not detailed material data, a factor that strongly influences how signals are transmitted.

To address this limitation, Dr.Gupta and Professor Vela, along with their research team, are developing a simulation-based digital twin, a virtual model of an urban communication environment that incorporates artificial intelligence to improve prediction accuracy.

“Reliable communication is essential for future systems such as drones, emergency response UAVs and urban air taxis.†— Saumya Gupta, postdoctoral researcher

Rather than relying solely on static maps, the system trains neural networks using signal data collected by uncrewed aerial vehicles. By analyzing how signal strength changes across locations, the system can infer building material properties and refine the model accordingly. Over time, this approach allows the digital twin to become more adaptive and better aligned with real-world conditions.

“Reliable communication is essential for future systems such as drones, emergency response UAVs and urban air taxis,†Gupta says. “By using a digital twin to model how buildings and materials affect radio frequency signals, this research helps identify where signals may weaken, become blocked or experience interference. These insights can guide safer routing, real-time coordination and the scalable airspace management that future urban air mobility will depend on.â€

Strengthening Industry-Academic Partnerships

NASA’s MUREP program aims to broaden participation in aerospace research while strengthening partnerships between universities and NASA centers.

Through the MPLAN initiative, faculty researchers work directly with NASA scientists to develop technologies aligned with the agency’s long-term missions while also expanding opportunities for students to engage in aerospace research.

“We plan to expand student involvement as the project progresses,†Gupta says. “We also look forward to engaging with NASA researchers to provide mentorship and collaborative learning opportunities.â€

In addition to Gupta’s project, Âé¶¹Ó³»­´«Ã½ researcher Justin Urso also received a MUREP MPLAN award supporting research on communication and sensing systems for advanced air mobility, further reflecting Âé¶¹Ó³»­´«Ã½â€™s role in NASA’s urban initiatives. Urso is a research assistant professor of mechanical and aerospace engineering who conducts work in Professor Subith Vasu’s laboratory.


This material is based upon work supported by the National Aeronautics and Space Administration (NASA) through the Minority University Research and Education Project (MUREP) Partnership Learning Annual Notification (MPLAN) program. Any opinions, findings and conclusions or recommendations expressed in this material are those of the author(s) and do not necessarily reflect the views of NASA. 

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Taking Apart the Mystery of Vocal Fatigue /news/taking-apart-the-mystery-of-vocal-fatigue/ Tue, 28 Apr 2026 13:30:10 +0000 /news/?p=152594 For Assistant Professor Hamzeh Ghasemzadeh, finding solutions to unsolved communication problems was what he was always destined to do.

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To better understand Assistant Professor Hamzeh Ghasemzadeh and his work, he goes back to a childhood memory of broken toys. Within hours of receiving little robotic figures or remote-control cars, he’d dissembled what had once been a carefully crafted package of technology. To him, sitting among the remnants of a new gift meant he was sitting in a circle of fun.

“My favorite game was to take the toys apart to see how they work and then try to put them back together,†Ghasemzadeh says. “My parents saw my curiosity as a great thing.â€

“This is why I came to Âé¶¹Ó³»­´«Ã½. I’ve been able to jump right in and address mysteries that haven’t received much attention.”

That same curiosity now drives his research at , where he seeks to take apart discomforted voices, figuratively, so he can develop strategies to make each one whole again. Ghasemzadeh, who joined Âé¶¹Ó³»­´«Ã½ in late Summer 2025 and will teach in the school’s newly launched , has already secured one research project funded by the U.S. National Institutes of Health and is developing another.

“This is why I came to Âé¶¹Ó³»­´«Ã½,†he says. “I’ve been able to jump right in and address mysteries that haven’t received much attention until now.â€

A Common Problem Without Clear Answers

The first such mystery sounds quite straightforward: vocal fatigue, a common vocal complaint. Beneath the surface, however, it’s deceptive. Solutions have mostly evaded scientists, leaving vocal fatigue as an ongoing problem for many people who rely on their voices, like coaches, public speakers, singers and teachers. Many of Ghasemzadeh’s colleagues experience the very throat discomfort that he’s deconstructing during the funded project just underway.

“We want to collect … multi-modal data and use machine learning models to analyze [vocal fatigue] and develop recommendations for each person.”

“Some instructors get vocal fatigue quickly, some get it slowly and some don’t get it at all,†he says. “There’s a genetic component, but there are also behavioral components. How do they use their voice? How often do they use it? What about the environment where they’re using it? What about personality? We want to collect such comprehensive multi-modal data and use machine learning models to analyze it and develop recommendations for each person.â€

The recommendations might include pacing voice usage, projecting the voice efficiently and allowing the voice to recover. Ghasemzadeh envisions this model being predictive and — this is the part he stresses most — personalized.

“The approach to general medicine started with an assumption that while we’re different on the outside, we are very similar inside. Patients with similar ailments took the same medications and [the] same dosages. But we now know that people don’t always respond to pills the same way. If we can quantify how we’re different inside, we can create a computational model to predict responses to medications and optimize treatment plans.â€

To integrate artificial intelligence (AI) into vocal fatigue solutions, subjects in Ghasemzadeh’s study will wear sensors that track how and where they use their voices. He’ll prompt them to perform specific vocal tasks and monitor their phonatory function throughout the day. The AI model will analyze these patterns in real time to identify early signs of vocal strain and predict when fatigue is likely to occur.

“We are different. Every prescribed solution should be different, too.”

Participants will also visit his lab at the in Central Florida Research Park, where specialists will collect imaging, aerodynamic and acoustic data. The highly equipped facility brings together America’s leading hearing and voice scientists to develop new technologies and clinical tools for people with hearing loss or voice disorders.

With all of that in hand, including the technology, Ghasemzadeh and his team hope to unwind the mystery of vocal fatigue — one person at a time.

“That’s the idea I want to put forward with every project,†he says. “We are different. Every prescribed solution should be different, too.â€

From Engineering to Human Connection

Many would think a toy-reassembling boy is destined to become an engineer. That’s what Ghasemzadeh thought, too. He earned bachelor’s and master’s degrees in electrical engineering and began his career with a focus on telecommunications and signal processing.

“There was something important missing,†he says. “Human connection.â€

“Speech became my research interest because … it sets us apart as a species and as individuals.”

He crossed paths with a close friend who mentioned his own research in a field Ghasemzadeh was vaguely familiar with: communication sciences and disorders. The conversation sparked Ghasemzadeh’s enthusiasm for applying his expertise in areas such as signal processing to personally help others.

“Speech became my research interest because it’s the signal we predominantly use to communicate,†he says. “It sets us apart as a species and as individuals.â€

For example, it’s quite easy to identify Ghasemzadeh without even seeing him. He sounds young yet intelligent enough to have dual doctoral degrees. There’s an inflection of humility in his voice. The curiosity is always there, too. In fact, his peers have noticed, from his work, what his parents noticed among his broken toys: his curiosity leading to great things. Shortly after arriving at Âé¶¹Ó³»­´«Ã½, the American Speech-Language-Hearing Association chose Ghasemzadeh for its Early Career Contributions in Research Award.

“It’s also a reminder that I’m early in my career,†he says, “and the sky is the limit.â€

At the center of his work as a principal investigator is a belief that progress doesn’t happen alone, but through teamwork.

“You have to surround yourself with different skillsets, all of us willing to take things apart that have never been taken apart, with everyone focused on one goal,†Ghasemzadeh says. “When you win, I win and everyone wins.â€


Research reported in this publication was supported by the National Institute on Deafness and Other Communication Disorders of the National Institutes of Health under award number R00DC021235. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health.

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