
About
Michael Gramlich is an Assistant Professor in the Department of Physics at Auburn University. He holds a Ph.D. from the University of Missouri - Columbia (2011) and a B.S. from the same institution (2005). His research focuses on understanding the biophysical principles governing intracellular transport and resource sharing in neurons, particularly synaptic vesicle dynamics, myosin and kinesin motor proteins, and the structural constraints impacting synaptic function.
His lab employs interdisciplinary approaches, combining microscopy, computational modeling, and genetic mouse/rat models to study presynaptic mechanisms. Key research questions include how vesicles navigate neuronal microtubules, how synapses prioritize resource allocation during activity, and the molecular underpinnings of synaptic plasticity and neurodegeneration. The lab's 'Physics of Cognition' framework seeks to link molecular-level processes to higher-level cognitive functions like memory formation.
Gramlich has published extensively on topics such as vesicle recycling, axonal transport defects, and the role of myosin V in neurotransmitter release. While no explicit awards are listed, his work has advanced understanding of synaptic mechanisms relevant to neuropsychiatric and neurodegenerative disorders. He currently leads a growing laboratory and is recruiting new members to expand these research initiatives.
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