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 geneticsWebsite:
http://pbl.gatech.eduGoogle:
"Craig Forest"
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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 |