ScholarIQanswers from OpenAlex & ORCID
Takeshi Muneta
ResearcherPublications, citations & collaboration network
Takeshi Muneta is a researcher indexed in ScholarIQ from OpenAlex & ORCID.
How many works does Takeshi Muneta have?
ScholarIQindexed works
Takeshi Muneta has 389 works in the ScholarIQ index. The count is the OpenAlex total, not the number of papers listed on this page.
How many citations does Takeshi Muneta have?
ScholarIQcitation count
Takeshi Muneta has 19,216 citations in the OpenAlex counts ScholarIQ stores.
What is the h-index of Takeshi Muneta?
ScholarIQh-index
Takeshi Muneta has an h-index of 74 in OpenAlex.
What is the i10-index of Takeshi Muneta?
ScholarIQi10-index
Takeshi Muneta has an i10-index of 244 in OpenAlex.
What is the ORCID of Takeshi Muneta?
ScholarIQorcid
The ORCID for Takeshi Muneta is on the source record.
What is the OpenAlex record for Takeshi Muneta?
ScholarIQopenalex
The OpenAlex for Takeshi Muneta is on the source record.
What are the most-cited papers on Takeshi Muneta?
ScholarIQmost cited works
Comparison of human stem cells derived from various mesenchymal tissues: Superiority of synovium as a cell source
Yusuke Sakaguchi, Ichiro Sekiya, Kazuyoshi Yagishita, Takeshi Muneta
In vitro chondrogenesis of human synovium-derived mesenchymal stem cells: Optimal condition and comparison with bone marrow-derived cells
Shinichi Shirasawa, Ichiro Sekiya, Yusuke Sakaguchi, Kazuyoshi Yagishita, Shizuko Ichinose, Takeshi Muneta
Higher chondrogenic potential of fibrous synovium– and adipose synovium–derived cells compared with subcutaneous fat–derived cells: Distinguishing properties of mesenchymal stem cells in humans
Tomoyuki Mochizuki, Takeshi Muneta, Yusuke Sakaguchi, Akimoto Nimura, Akiko Yokoyama, Hideyuki Koga, Ichiro Sekiya
Stem cell properties of human periodontal ligament cells
Kanako J. Nagatomo, Motohiro Komaki, Ichiro Sekiya, Yusuke Sakaguchi, Kazuyuki Noguchi, Shigeru Oda, Takeshi Muneta, Isao Ishikawa
Suspended cells from trabecular bone by collagenase digestion become virtually identical to mesenchymal stem cells obtained from marrow aspirates
Yusuke Sakaguchi, Ichiro Sekiya, Kazuyoshi Yagishita, Shizuko Ichinose, Kenichi Shinomiya, Takeshi Muneta