Contacts
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Jennifer Hunter
Associate Professor; Director, AOWL
Dr. Hunter joined the School of Optometry and Vision Science at the University of À¶Ý®ÊÓÆµ in August 2022 as a tenured Associate Professor. Previously, she was faculty at the University of Rochester for 11 years. She is an active member of the ANSI Z136 Safe Use of Lasers standards committee and the Laser Bioeffects & Medical Surveillance subcommittee (TSC-1). Dr. Hunter is a Fellow of Optica (formerly OSA).
Research Interests
- Adaptive Optics
- Mechanisms of light-induced retinal damage
- Non-invasive fluorescence imaging techniques to study retinal function in healthy and diseased eyes
Michelle Peimann
Research Manager, AOWL

Michelle Peimann graduated from the University of Western Ontario with an HonoursÌýBachelourÌýof ScienceÌýspecializing in Genetics.Ìý She has worked as a research technician for over 20 years specializing inÌýmolecular biology and immunohistochemistry.​
Michelle joined Dr. Jennifer Hunter's research team as a lab manager in 2023.​​
Marjan Mansourian
Research Technician, AOWL

Marjan MansourianÌýcompleted my BSC in Electrical Engineering. After that, she completed a Master's (M.Sc.A) degree inÌýElectrical engineering with emphasis on photonics from École de Technologie Supérieure (ÉTS) /ÌýEngineering School of the Université du Québec à Montréal in 2022. Marjan currently works as a researchÌýtechnician in the AOWL group.​
Marjan enjoys swimming, reading novels, painting, and planting flowers.​
Rosa Martinez Ojeda
Post-doctoral Fellow​

Rosa Martinez Ojeda completed her BSc degree in Optics and Optometry at the University of Murcia (UM), her MScÌýdegree in Optical and Imaging Technologies at the University Complutense of Madrid andÌýreceived her PhD degree in Vision Sciences from UM in 2022. She joined the AOWL lab inÌý2023. Her research is focused on two-photon excitation fluorescence ophthalmoscopy of theÌýliving eye.
Wuao Jia
Graduate student, PhD

ÌýI am a PhD student in optics at University of Rochester. My research is about two photon excited fluorescence retinal imaging for mice with adaptive optics.