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Sho Yokoyama
Sho Yokoyama
Assistant Professor, Osaka Institute of Technology
Verified email at oit.ac.jp
Title
Cited by
Cited by
Year
ZnO-based microfluidic pH sensor: a versatile approach for quick recognition of circulating tumor cells in blood
GK Mani, M Morohoshi, Y Yasoda, S Yokoyama, H Kimura, K Tsuchiya
ACS applied materials & interfaces 9 (6), 5193-5203, 2017
732017
Viscoelastic and optical properties of four different PDMS polymers
S Deguchi, J Hotta, S Yokoyama, TS Matsui
Journal of Micromechanics and Microengineering 25 (9), 097002, 2015
662015
New wrinkling substrate assay reveals traction force fields of leader and follower cells undergoing collective migration
S Yokoyama, TS Matsui, S Deguchi
Biochemical and biophysical research communications 482 (4), 975-979, 2017
292017
Microcontact peeling as a new method for cell micropatterning
S Yokoyama, TS Matsui, S Deguchi
PLoS One 9 (7), e102735, 2014
152014
Bouncing behaviors of suspension liquid drops on a superhydrophobic surface
Y Ueda, S Yokoyama, M Nomura, R Tsujino, M Iguchi
Journal of visualization 13, 281-283, 2010
122010
Development of motorized plasma lithography for cell patterning
S Deguchi, Y Nagasawa, AC Saito, TS Matsui, S Yokoyama, M Sato
Biotechnology letters 36, 507-513, 2014
82014
Aluminum alloy substrate for magnetic recording medium, substrate for magnetic recording medium, magnetic recording medium, hard disk drive
K Yukimatsu, H Machida, S Yokoyama
US Patent App. 16/727,476, 2020
42020
Substrate for magnetic recording medium, magnetic recording medium, hard disk drive
K Yukimatsu, H Machida, S Yokoyama
US Patent App. 16/727,549, 2020
42020
An open-type microdevice to improve the quality of fluorescence labeling for axonal transport analysis in neurons
S Yokoyama, A Otomo, S Hadano, H Kimura
Biomicrofluidics 13 (3), 2019
42019
Microcontact peeling: a cell micropatterning technique for circumventing direct adsorption of proteins to hydrophobic PDMS
S Yokoyama, TS Matsui, S Deguchi
Current Protocols in Cell Biology 75 (1), 10.21. 1-10.21. 8, 2017
42017
Substrate for magnetic recording medium, magnetic recording medium, hard disk drive
K Yukimatsu, H Machida, S Yokoyama
US Patent App. 16/727,455, 2020
32020
Low-Power Laser Processing-Based Approach to Plasma Lithography for Cell Micropatterning
S Deguchi, S Yokoyama, Y Kamei, TS Matsui
Journal of Bioanalysis & Biomedicine 7, 2015
12015
Wettability Effect on a Single Bubble Passing through a Plate Orifice Placed in a Vertical Pipe
S Yokoyama, M Iguchi
Journal of the Japanese Society for Experimental Mechanics 10 (Special_Issue …, 2010
12010
Behavior of a Single Bubble Through a Plate Orifice Settled in a Vertical Pipe
S Yokoyama
Proc. JSEM 2009 Annual Conference on Experimental Mechanics, 76-83, 2009
12009
Development of a microfluidic device for heavy-light water separation by Ludwig-Soret effect
M Morohoshi, K Nakayama, K Eguchi, S Yokoyama, K Tsuchiya, H Kimura, ...
2016
Development of a Novel ALS Model in vitro by Using a Microfluidic Device-Based Cell Culture System
木村啓志荒木良介、大友麻子、和田純希、石田智行、横山奨、秦野伸二、
東海大学紀要工学部 56 (1), 67-73, 2016
2016
Air Leakage from Thin-Walled Space between Circular Pipe Flange and Flat Disk
S Yokoyama, M Iguchi
Journal of the Japanese Society for Experimental Mechanics 11 (Special_Issue …, 2011
2011
Two-Dimensional Numerical Simulation of a Rising Bubble near an Orifice Set in a Vertical Pipe
Y Ueda, S Yokoyama, T Ishii, M Iguchi
Journal of the Japanese Society for Experimental Mechanics 9 (4), 345-350, 2009
2009
Power distribution facilities corresponding to increasingly more sophisticated and versatile situations. Thunder resisting technology aiming at lower manufacturing cost; Kodoka …
S Yokoyama
Enerugi 28, 1995
1995
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Articles 1–19