Mitra J. Hartmann

Affiliations: 
Biomedical Engineering and Mechanical Engineering Northwestern University, Evanston, IL 
Area:
Somatosensory systems
Website:
http://www.mccormick.northwestern.edu/research-faculty/directory/profiles/hartmann-mitra.html
Google:
"Mitra Hartmann"
Bio:

http://nxr.northwestern.edu/people/mitra-j-z-hartmann
http://hartmann.mech.northwestern.edu/

Mean distance: 13.47 (cluster 6)
 
SNBCP

Parents

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James Bower grad student 2000 Caltech
 (The cerebellum and active somatosensation: Recordings from the granule cell layer of awake, freely-behaving rats.)

Children

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Chris S Bresee grad student
Nicholas E Bush grad student
Yan S. W. Yu grad student 2012- Northwestern
Pravin Kumarappan grad student 2014- Northwestern
Joseph H. Solomon grad student 2008 Northwestern
Aniket S. Kaloti grad student 2010 Northwestern
Regan Blythe Towal grad student 2004-2010 Northwestern
Montakan Thajchayapong grad student 2011 Northwestern
Mark Locascio grad student 2012 Northwestern
Brian W. Quist grad student 2012 Northwestern
Christopher L. Schroeder grad student 2013 Northwestern
Jennifer A. Hobbs grad student 2015 Northwestern
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Publications

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Belli H, Yang AE, Bresee C, et al. (2016) Variations in vibrissal geometry across the rat mystacial pad: base diameter, medulla, and taper. Journal of Neurophysiology. jn.00054.2016
Bush NE, Solla SA, Hartmann MJ. (2016) Whisking mechanics and active sensing. Current Opinion in Neurobiology. 40: 178-188
Yu YS, Graff MM, Bresee CS, et al. (2016) Whiskers aid anemotaxis in rats. Science Advances. 2: e1600716
Yang AE, Hartmann MJ. (2016) Whisking Kinematics Enables Object Localization in Head-Centered Coordinates Based on Tactile Information from a Single Vibrissa. Frontiers in Behavioral Neuroscience. 10: 145
Kaloti AS, Johnson EC, Bresee CS, et al. (2016) Representation of Stimulus Speed and Direction in Vibrissal-Sensitive Regions of the Trigeminal Nuclei: A Comparison of Single Unit and Population Responses. Plos One. 11: e0158399
Bush NE, Schroeder CL, Hobbs JA, et al. (2016) Decoupling kinematics and mechanics reveals coding properties of trigeminal ganglion neurons in the rat vibrissal system. Elife. 5
Yu YS, Graff MM, Hartmann MJ. (2016) Mechanical responses of rat vibrissae to airflow. The Journal of Experimental Biology. 219: 937-48
Huet LA, Hartmann MJ. (2016) Simulations of a Vibrissa Slipping along a Straight Edge and an Analysis of Frictional Effects during Whisking. Ieee Transactions On Haptics. 9: 158-69
Hobbs JA, Towal RB, Hartmann MJ. (2016) Evidence for Functional Groupings of Vibrissae across the Rodent Mystacial Pad. Plos Computational Biology. 12: e1004109
Bush NE, Schroeder CL, Hobbs JA, et al. (2016) Author response: Decoupling kinematics and mechanics reveals coding properties of trigeminal ganglion neurons in the rat vibrissal system Elife
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