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Kazutaka Mitobe

ResearcherPublications, citations & collaboration network

Kazutaka Mitobe is a researcher indexed in ScholarIQ from OpenAlex & ORCID. ScholarIQ records 139 works, 561 citations, an h-index of 11 and an i10-index of 12.

139
Works
561
Citations
11
h-index
12
i10-index

How has Kazutaka Mitobe's publication output changed over time?

ScholarIQpublication output · 2006–2023

Output grew0% over the shown period — from 1 works in 2006 to 1 in 2023.

1
3
1
1
1
1
1
1
1
200620082009201020112012201320182023

What are the most-cited papers on Kazutaka Mitobe?

ScholarIQmost cited works
Inhibition of heat shock protein 90 sensitizes melanoma cells to thermosensitive ferromagnetic particle‐mediated hyperthermia with low Curie temperature
Aki Ito, Hajime Saito, Kazutaka Mitobe, Yoshihiro Minamiya, Naoko Takahashi, Kiyotomi Maruyama, Satoru Motoyama, Yoshihisa Katayose, Jun‐ichi Ogawa
S175946340. 200961 CitationsOPEN ACCESS
Self‐regulating hyperthermia induced using thermosensitive ferromagnetic material with a low Curie temperature
Hajime Saito, Kazutaka Mitobe, Aki Ito, Yu Sugawara, Kiyotomi Maruyama, Yoshihiro Minamiya, Satoru Motoyama, Noboru Yoshimura, Jun‐ichi Ogawa
S175946340. 200855 CitationsOPEN ACCESS
Development of a motion capture system for a hand using a magnetic three dimensional position sensor
Kazutaka Mitobe, Takaaki Kaiga, Takashi Yukawa, Takeshi Miura, Hideo Tamamoto, Al Rodgers, Noboru Yoshimura
200647 Citations
Inhibition of Hsp90 and 70 sensitizes melanoma cells to hyperthermia using ferromagnetic particles with a low Curie temperature
Tomoyuki Miyagawa, Hajime Saito, Yoshihiro Minamiya, Kazutaka Mitobe, Shinogu Takashima, Naoko Takahashi, Aki Ito, Kazuhiro Imai, Satoru Motoyama, Jun‐ichi Ogawa
International Journal of Clinical Oncology. 201345 Citations
Analysis of Finger Movements of a Pianist Using Magnetic Motion Capture System with Six Dimensional Position Sensors
Md. Mostafizur Rahman, Kazutaka Mitobe, Masafumi Suzuki, Noboru Yoshimura
201026 Citations

Related on ScholarIQ

Akita University
Institution
Inhibition of heat shock protein 90 sensitizes melanoma cells to thermosensitive ferromagnetic particle‐mediated hyperthermia with low Curie temperature
Paper
Self‐regulating hyperthermia induced using thermosensitive ferromagnetic material with a low Curie temperature
Paper
Development of a motion capture system for a hand using a magnetic three dimensional position sensor
Paper
Inhibition of Hsp90 and 70 sensitizes melanoma cells to hyperthermia using ferromagnetic particles with a low Curie temperature
Paper
Analysis of Finger Movements of a Pianist Using Magnetic Motion Capture System with Six Dimensional Position Sensors
Paper
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