John C. Selby, Ph.D.

Affiliations: 
2007 University of Illinois, Urbana-Champaign, Urbana-Champaign, IL 
Area:
Biomedical Engineering, Applied Mechanics, General Biophysics
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"John Selby"

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Mark A. Shannon grad student 2007 UIUC
 (Composite diaphragm inflation: A method for probing the rheological functions of cell -cell anchoring junctions and cytoskeletal networks within a living normal human epidermal keratinocyte sheet.)
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Publications

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Zarkoob H, Chinnathambi S, Halberg SA, et al. (2018) Mouse Keratinocytes Without Keratin Intermediate Filaments Demonstrate Substrate Stiffness Dependent Behaviors. Cellular and Molecular Bioengineering. 11: 163-174
Zarkoob H, Chinnathambi S, Selby JC, et al. (2018) Substrate deformations induce directed keratinocyte migration. Journal of the Royal Society, Interface. 15
Zarkoob H, Bodduluri S, Ponnaluri SV, et al. (2015) Substrate Stiffness Affects Human Keratinocyte Colony Formation. Cellular and Molecular Bioengineering. 8: 32-50
Selby JC, Shannon MA. (2009) Inflation of a circular elastomeric membrane into a horizontally semi-infinite liquid reservoir of finite vertical depth: Quasi-static deformation model International Journal of Engineering Science. 47: 700-717
Selby JC, Shannon MA. (2009) Inflation of a circular elastomeric membrane into a horizontally semi-infinite liquid reservoir of finite vertical depth: Estimation of material parameters from volume-pressure data International Journal of Engineering Science. 47: 718-734
Selby JC, Shannon MA. (2008) A method to fabricate mesoscopic freestanding polydimethylsiloxane membranes used to probe the rheology of an epithelial sheet. Journal of Biochemical and Biophysical Methods. 70: 932-44
Selby JC, Shannon MA. (2007) Mechanical response of a living human epidermal keratinocyte sheet as measured in a composite diaphragm inflation experiment. Biorheology. 44: 319-48
Selby JC, Shannon MA. (2007) Apparatus for measuring the finite load-deformation behavior of a sheet of epithelial cells cultured on a mesoscopic freestanding elastomer membrane. The Review of Scientific Instruments. 78: 094301
Prakash S, Long TM, Selby JC, et al. (2007) "Click" modification of silica surfaces and glass microfluidic channels. Analytical Chemistry. 79: 1661-7
Yeom J, Wu Y, Selby JC, et al. (2005) Maximum achievable aspect ratio in deep reactive ion etching of silicon due to aspect ratio dependent transport and the microloading effect Journal of Vacuum Science and Technology B: Microelectronics and Nanometer Structures. 23: 2319-2329
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