Craig Richard Forest, Ph.D.

Affiliations: 
2008- George W. Woodruff School of Mechanical Engineering Georgia Institute of Technology, Atlanta, GA 
Area:
Optical systems for molecular biology; micro/nano design, devices, fabrication; metrology; manufacturing processes; precision machine design, macroengineering projects in human genetics
Website:
http://pbl.gatech.edu
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"Craig Forest"

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Timothy J. Lee grad student 2014-2019 Georgia Tech (Neurotree)
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Publications

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Lee TJ, Yip MC, Kumar A, et al. (2020) Capillary- and Stokes-based trapping of serial sections for scalable 3D-EM connectomics. Eneuro
Kolb I, Landry C, Yip M, et al. (2019) PatcherBot: a single-cell electrophysiology robot for adherent cells and brain slices. Journal of Neural Engineering
Holst G, Stoy WA, Yang B, et al. (2019) Autonomous patch clamp robot for functional characterization of neurons in vivo: development and application to mouse visual cortex. Journal of Neurophysiology
Lee TJ, Kumar A, Balwani AH, et al. (2018) Large-scale neuroanatomy using LASSO: Loop-based Automated Serial Sectioning Operation. Plos One. 13: e0206172
Lee TJ, Lewallen CF, Bumbarger DJ, et al. (2018) Transport and trapping of nanosheets via hydrodynamic forces and curvature-induced capillary quadrupolar interactions. Journal of Colloid and Interface Science. 531: 352-359
Lee J, Kolb I, Forest CR, et al. (2018) Cell Membrane Tracking in Living Brain Tissue Using Differential Interference Contrast Microscopy. Ieee Transactions On Image Processing : a Publication of the Ieee Signal Processing Society. 27: 1847-1861
Kodandaramaiah SB, Flores FJ, Holst GL, et al. (2018) Multi-neuron intracellular recording in vivo via interacting autopatching robots. Elife. 7
Suk HJ, van Welie I, Kodandaramaiah SB, et al. (2017) Closed-Loop Real-Time Imaging Enables Fully Automated Cell-Targeted Patch-Clamp Neural Recording In Vivo. Neuron. 96: 244-245
Suk HJ, van Welie I, Kodandaramaiah SB, et al. (2017) Closed-Loop Real-Time Imaging Enables Fully Automated Cell-Targeted Patch-Clamp Neural Recording In Vivo. Neuron. 95: 1037-1047.e11
Stoy WA, Kolb I, Holst G, et al. (2017) Robotic navigation to sub-cortical neural tissue for intracellular electrophysiology in vivo. Journal of Neurophysiology. jn.00117.2017
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