麻豆传媒

7 Early Career Faculty Honored for Creativity, Innovation

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Collage of seven professional headshot photographs, neutral backgrounds, smiling.
Top row, from left: Benjamin Hurrell, winner of the 麻豆传媒 Early Career Faculty Award for Creativity and Innovation; UC Office of the President Early Career Faculty Research Excellence Award winners Alex Fauer and Hyoyoung Jeong. Second row, from left: UC Office of the President Early Career Faculty Research Excellence Award winners Imtiyaz Khanday, Tina Law, Xiaosa Xu and Jie Zheng.

Seven early career faculty members at 麻豆传媒 are being recognized with awards from the university and the UC Office of the President that highlight their research and creative exploration.

Benjamin Hurrell, assistant professor of nutrition and immunology in the College of Agricultural and Environmental Sciences, has been named this year鈥檚 recipient of the . The award comes with a $40,000 prize. 

Separately, the UC Office of the President named six 麻豆传媒 faculty members recipients of its , which includes a $50,000 prize:

  • Alex Fauer, assistant professor in the Family Caregiving Institute, Betty Irene Moore School of Nursing
  • Hyoyoung Jeong, assistant professor of electrical and computer engineering, College of Engineering
  • Imtiyaz Khanday, assistant professor of plant sciences, College of Agricultural and Environmental Sciences
  • Tina Law, assistant professor of sociology, College of Letters and Science
  • Xiaosa Xu, assistant professor of plant biology, College of Biological Sciences
  • Jie Zheng, assistant professor, Departments of Neurological Surgery (School of Medicine) and Biomedical Engineering (College of Engineering)

The 麻豆传媒 Early Career Faculty Award for Creativity and Innovation was established in 2016 to promote and support exploration, creativity and advances in research by 麻豆传媒 faculty. It is intended to encourage early career faculty to develop their own intellectual pursuits; one award is given to a non-tenured, ladder rank assistant professor each year. 

This is the first year of the UCOP Early Career Faculty Research Excellence Awards, which seek to advance the university鈥檚 commitment to the scholarship and creative activity of early career faculty across all 10 UC campuses.

The application process for both awards was combined, and nominations were submitted by deans.

The recipients and their projects

The impact on nutrition on the development of asthma

will use the funding to investigate the immune mechanisms that lead to asthma. His research examines how nutrition influences immune responses in the airway microenvironment and contributes to lung inflammation. He said that while much is known about asthma as a disease, less is understood about its underlying immunological causes and how diet may modulate disease development.

鈥淭his project is designed to evaluate the effects of dietary nutrients, such as sodium and iron, on the lung microenvironment and allergen-driven inflammation,鈥 he wrote in his application for the award. 鈥淭his award will enable crucial milestones in establishing an innovative research program that bridges immunology and nutrition.鈥

Hurrell joined 麻豆传媒 in 2025 and was previously a postdoctoral fellow and faculty member at the University of Southern California鈥檚 Keck School of Medicine in Los Angeles.

More thorough follow-up care for older cancer survivors

The largest 鈥 and fastest growing 鈥 group of cancer survivors is those who are 65 and older, and plans to analyze whether patients who received an intervention to tailor age-appropriate cancer care in a previous study had fewer long-term hospital stays, emergency room visits and healthcare costs.  He wrote in his application that he plans to link and analyze data from and information from the California Cancer Registry at 麻豆传媒.

鈥淐linical oncology has long called for tailored interventions for older adult cancer patients and caregivers,鈥 Fauer wrote. 鈥淲hile [geriatric assessment] has consistently demonstrated benefits in reducing treatment toxicity and improving quality of life, its potential influence on survival remains largely unexplored.鈥

His project is titled, 鈥淪urvival Outcomes and Cost-Effectiveness of a Geriatric Assessment-Guided Model of Supportive Care for Older Adults with Cancer.鈥

Fauer joined 麻豆传媒 in 2022, after completing a National Clinician Scholars Program postdoctoral fellowship at UCLA.

Epilepsy care for kids

, an expert in autonomous wireless electronics, will focus on creating a device that detects and mitigates seizures in children with pediatric epilepsy. He plans to combine a biodegradable, wireless device implanted inside the skull paired with an 鈥渆lectronic tattoo鈥 鈥 a device attached to the skin. The tattoo would detect seizures and power the implant to deliver pulses to the brain.

鈥淐urrent epilepsy technologies are largely designed for adults and are not suitable for pediatric patients due to anatomical mismatch, infection risks from transdermal electrodes, repeated surgeries, and device failure caused by growth-related strain,鈥 he wrote. 鈥淭hese limitations create a critical gap in care during the early developmental years.鈥

The implant would be designed to dissolve into biocompatible byproducts when triggered by an external electromagnet or other device once the child is old enough for a permanent form of treatment.

Jeong noted that epilepsy is the most prevalent 鈥 and comes with the most severe consequences 鈥 in infants and children.

His project is titled, 鈥淓stablishing Growth-Accommodating, Biodegradable Neuromodulation Systems for Children with Epilepsy.鈥

Jeong joined 麻豆传媒 in 2022 after a postdoctoral fellowship at Northwestern University.

More efficient potato propagation

 was part of the research team that developed rice plants capable of reproducing clonally through seed. He is now working to extend this technology to potato, where it could eventually enable growers to use small, disease-free botanical seeds instead of bulky seed tubers, which are expensive to produce, transport and store, and can carry disease.

The project uses gene editing to develop synthetic apomixis, a process that allows plants to produce clonal seeds without genetic reshuffling through sexual reproduction. In potato, this approach could allow true potato seeds, or TPS, to faithfully preserve elite genotypes while enabling disease-free seed-based propagation.

鈥淧otato is the world鈥檚 most important tuber crop and ranks fourth globally in human caloric intake,鈥 Khanday wrote. 鈥淧ropagation of potatoes through clonal TPS could revolutionize potato cultivation.鈥

His project is titled 鈥淓ngineering Synthetic Apomixis for Clonal Seed Propagation in Potato.鈥

Khanday joined 麻豆传媒 in 2014 as a postdoctoral scholar, then worked as an assistant project scientist at the university before becoming an assistant professor in 2021.

How do people form opinions on AI?

For her project, sociologist plans to analyze a database of more than 50,000 YouTube videos about AI to better understand how Americans learn about the topic. She hopes her work will clarify what information on AI is publicly available and identify ways to increase Americans鈥 ability to have a say about how AI is influencing their lives.

鈥淭his project will help to inform research, policy and grantmaking priorities by providing new insights about how the public engages with AI, and to improve understanding of the contemporary dynamics of expertise and the growing role of social media platforms in inequality and democratic (dis)engagement,鈥 Law wrote.

Law built a database of more than 50,000 videos about AI with help from the 麻豆传媒 DataLab and the YouTube Researcher Program, and will seek to analyze them to answer four questions:

  1. What information about AI is available on YouTube?
  2. Who are viewed as AI 鈥渆xperts鈥?
  3. How is AI explained?
  4. How do users interact with AI experts?

Law joined 麻豆传媒 in 2024 after spending time as a postdoctoral scholar at the CUNY Graduate Center.

Her project is titled 鈥淯nderstanding Public Engagement with AI: A Computational Text and Image Analysis of YouTube Videos.鈥 Read more about it in  

Understanding the evolution of the maize ear

Plant biologist  plans to use his award to investigate how maize ear architecture changed during domestication from its wild ancestor, teosinte.

Maize is one of the world鈥檚 most productive cereal crops. Its ear changed dramatically during domestication from teosinte, but the biological processes underlying those changes remain poorly understood.

鈥淭his project will advance our understanding of how maize ear development and architecture evolved during domestication,鈥 Xu said. 鈥淚n the longer term, this knowledge may provide a foundation for research on agriculturally important traits.鈥

The project will use complementary approaches to investigate the biological basis of variation in maize ear architecture.

The project is titled, 鈥淩esolving the Cellular Basis of Maize Ear Domestication to Enhance Yield Potential.鈥

Xu joined 麻豆传媒 in 2023 after completing a postdoctoral fellowship at Cold Spring Harbor Laboratory in New York.

The midbrain鈥檚 role in memory

Biomedical engineer  plans to focus on learning more about the way the midbrain, or the topmost part of the brainstem, contributes to our ability to form and retrieve memories.

Zheng writes that she will focus on the specific part of the midbrain called the substantia nigra, which plays a large role in the release of dopamine. Her project will use deep brain stimulation surgery to implant special probes that can record hundreds of neurons at once, then conducting memory tasks involving video clips.

鈥淲e focus on 鈥榚vent boundaries鈥 鈥 transitions between sequential events, such as finishing one chapter of a book and starting another 鈥 where the brain naturally reorganizes and stabilizes memory,鈥 Zheng wrote in her application.

The project will also explore how electrical stimulation of the midbrain region changes memory outcomes.

The project 鈥渨ill generate critical insights into midbrain contributions to memory 鈥 a domain where human studies remain scarce 鈥 while establishing a technical platform for research previously considered infeasible,鈥 she wrote.

Her project is titled 鈥淐ellular Precision Neural Interfaces for Midbrain Modulation and Memory Enhancement.鈥

Zheng joined 麻豆传媒 in 2024 after a postdoctoral fellowship at Boston Children's Hospital, Harvard Medical School.

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Cody Kitaura is the editor of Dateline 麻豆传媒 and can be reached by email or at 530-752-1932.

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