Author

Naoki Yanagisawa

Univ. of Wyoming, Nagoya Univ., Univ. of Oxford & ETH Zurich - Cited by 295 - Microfluidics - Analytical Chemistry - Plant Science

Biography

 Dr. Naoki is a Deputy Director at Tokyo Metropolitan Komagome Hospital, Japan. She worked as a attending physician at the same hospital before acquiring this position. She was a visiting physician at University of Washington, USA in 2007. She worked a  resident doctor at Tokyo Metropolitan Komagome Hospital for 4 years during 2003-2007. She completed her doctor of medicine from Chiba University and PhD from Tokyo Women's Medical University. 
Title
Cited by
Year
40
2012
Capability of tip-growing plant cells to penetrate into extremely narrow gaps
N Yanagisawa, N Sugimoto, H Arata, T Higashiyama, Y SatoScientific Reports 7 (1), 1403, 2017201
35
2017
SPIRAL2 stabilises endoplasmic microtubule minus ends in the moss Physcomitrella patens
SY Leong, M Yamada, N Yanagisawa, G GoshimaCell structure and function 43 (1), 53-60, 2018201
30
2018
A low molecular weight cut-off polymer–silicate membrane for microfluidic applications
GM Toh, N Yanagisawa, RC Corcoran, D DuttaMicrofluidics and nanofluidics 9, 1135-1141, 2010201
27
2010
Multiplex ELISA in a single microfluidic channel
N Yanagisawa, JO Mecham, RC Corcoran, D DuttaAnalytical and bioanalytical chemistry 401, 1173-1181, 111
20
2011
Pressure generation at the junction of two microchannels with different depths
N Yanagisawa, D DuttaElectrophoresis 31 (12), 2080-2088, 2010201
19
2010
Micrografting device for testing systemic signaling in Arabidopsis
H Tsutsui, N Yanagisawa, Y Kawakatsu, S Ikematsu, Y Sawai, R Tabata, ...The Plant Journal 103 (2), 9-929, 2020202
18
2020
Kinetic ELISA in microfluidic channels
N Yanagisawa, D DuttaBiosensors 1 (2), 58-69, 2011201
18
2011
Growth assay of individual pollen tubes arrayed by microchannel device
M Horade, N Yanagisawa, Y Mizuta, T Higashiyama, H ArataMicroelectronic Engineering 118, 25-28, 2014201
16
2014
Undergraduate laboratory module for implementing ELISA on the high performance microfluidic platform
B Giri, RR Peesara, N Yanagisawa, D DuttaJournal of chemical education 92 (4), 728-732, 202
15
2015
Microfluidics-based bioassays and imaging of plant cells
N Yanagisawa, E Kozgunova, G Grossmann, A Geitmann, T HigashiyamaPlant and Cell Physiology 62 (8), 39-50, 2021202
12
2021
Quantitative assessment of chemotropism in pollen tubes using microslit channel filters
N Yanagisawa, T HigashiyamaBiomicrofluidics 12 (2), 0243, 2018201
11
2018
Trade-off between plasticity and velocity in mycelial growth
S Fukuda, R Yamamoto, N Yanagisawa, N Takaya, Y Sato, M Riquelme, ...MBio 12 (2), e03196-20, 2021202
11
2021
Nanochannel arrays as supports for proton exchange membranes in microfluidic fuel cells
CJ Wadsworth, N Yanagisawa, D DuttaJournal of Power Sources 195 (11), 3636-3639, 2010201
8
2010
Microfluidic enzyme-linked immunosorbent assay in a region of finite length
N Yanagisawa, D DuttaAnalytica chimica acta 817, 28-32, 2014201
5
2014
Absorbance Detection in Multireflection Microfluidic Channels Using a Commercial Microplate Reader System
N Yanagisawa, S Mahmud, D DuttaAnalytical Chemistry 92 (19), 13050-13057, 2020202
4
2020
On‐chip pressure generation using a gel membrane fabricated outside of the microfluidic network
L Xia, N Yanagisawa, R Deb, D DuttaElectrophoresis 40 (5), 748-755, 2019201
3
2019
Development of microfluidic devices to study the elongation capability of tip-growing plant cells in extremely small spaces
N Yanagisawa, N Sugimoto, T Higashiyama, Y SatoJournal of Visualized Experiments, e576, 01801
2
2018
Seedling nursery member and seedling nursery set for grafting, and method for producing grafted seedling
SI Michitaka Notaguchi, Naoki Yanagisawa, Hideyuki ArataUS Patent App. 15/550,942, 20181201
1
2018