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Koichiro Kano

Showing results (31-40 of 53) with videos related to

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Plastic and Reconstructive Surgery|October 31, 2014
Adipocyte-derived and dedifferentiated fat cells promoting facial nerve regeneration in a rat modelHajime Matsumine, Yuichi Takeuchi, Ryo Sasaki, et al.
Bioengineering (Basel, Switzerland)|December 30, 2025
Augmenting Bone Formation by Implanting Dedifferentiated Fat Cell-Loaded Cotton-like Graft Materials in a Rat Bone Defect ModelJin Inoue, Tomohiko Kazama, Takahisa Okubo, et al.
Journal of Orthopaedic Science : Official Journal of the Japanese Orthopaedic Association|March 25, 2018
Transplantation of dedifferentiated fat cell-derived micromass pellets contributed to cartilage repair in the rat osteochondral defect modelManabu Shimizu, Taro Matsumoto, Shinsuke Kikuta, et al.
Cell Transplantation|December 17, 2008
Mature adipocyte-derived cells, dedifferentiated fat cells (DFAT), promoted functional recovery from spinal cord injury-induced motor dysfunction in ratsYuki Ohta, Mitsuko Takenaga, Yukie Tokura, et al.
International Journal of Urology : Official Journal of the Japanese Urological Association|October 14, 2011
Transplantation of mature adipocyte-derived dedifferentiated fat (DFAT) cells improves urethral sphincter contractility in a rat modelDaisuke Obinata, Taro Matsumoto, Yuichiro Ikado, et al.
Journal of Orthopaedic Surgery and Research|March 11, 2023
Bone marrow-derived dedifferentiated fat cells exhibit similar phenotype as bone marrow mesenchymal stem cells with high osteogenic differentiation and bone regeneration abilityHirokatsu Sawada, Tomohiko Kazama, Yuki Nagaoka, et al.
Regenerative Therapy|January 21, 2022
Phenotypic and functional properties of dedifferentiated fat cells derived from infrapatellar fat padKoji Tanimoto, Taro Matsumoto, Yuki Nagaoka, et al.
Nature Communications|February 27, 2014
Regulation of MKL1 via actin cytoskeleton dynamics drives adipocyte differentiationHiroyuki Nobusue, Nobuyuki Onishi, Takatsune Shimizu, et al.
Plos One|April 2, 2020
All-trans retinoic acid induces reprogramming of canine dedifferentiated cells into neuron-like cellsRei Nakano, Taku Kitanaka, Shinichi Namba, et al.
Journal of Oral Science|October 22, 2019
Transplantation of dedifferentiated fat cells combined with a biodegradable type I collagen-recombinant peptide scaffold for critical-size bone defects in ratsAtsushi Tateno, Masatake Asano, Daisuke Akita, et al.
Pageof 6

Showing results (31-40 of 53) with videos related to

Sort By:
Pageof 6
Plastic and Reconstructive Surgery|October 31, 2014
Adipocyte-derived and dedifferentiated fat cells promoting facial nerve regeneration in a rat modelHajime Matsumine, Yuichi Takeuchi, Ryo Sasaki, et al.
Bioengineering (Basel, Switzerland)|December 30, 2025
Augmenting Bone Formation by Implanting Dedifferentiated Fat Cell-Loaded Cotton-like Graft Materials in a Rat Bone Defect ModelJin Inoue, Tomohiko Kazama, Takahisa Okubo, et al.
Journal of Orthopaedic Science : Official Journal of the Japanese Orthopaedic Association|March 25, 2018
Transplantation of dedifferentiated fat cell-derived micromass pellets contributed to cartilage repair in the rat osteochondral defect modelManabu Shimizu, Taro Matsumoto, Shinsuke Kikuta, et al.
Cell Transplantation|December 17, 2008
Mature adipocyte-derived cells, dedifferentiated fat cells (DFAT), promoted functional recovery from spinal cord injury-induced motor dysfunction in ratsYuki Ohta, Mitsuko Takenaga, Yukie Tokura, et al.
International Journal of Urology : Official Journal of the Japanese Urological Association|October 14, 2011
Transplantation of mature adipocyte-derived dedifferentiated fat (DFAT) cells improves urethral sphincter contractility in a rat modelDaisuke Obinata, Taro Matsumoto, Yuichiro Ikado, et al.
Journal of Orthopaedic Surgery and Research|March 11, 2023
Bone marrow-derived dedifferentiated fat cells exhibit similar phenotype as bone marrow mesenchymal stem cells with high osteogenic differentiation and bone regeneration abilityHirokatsu Sawada, Tomohiko Kazama, Yuki Nagaoka, et al.
Regenerative Therapy|January 21, 2022
Phenotypic and functional properties of dedifferentiated fat cells derived from infrapatellar fat padKoji Tanimoto, Taro Matsumoto, Yuki Nagaoka, et al.
Nature Communications|February 27, 2014
Regulation of MKL1 via actin cytoskeleton dynamics drives adipocyte differentiationHiroyuki Nobusue, Nobuyuki Onishi, Takatsune Shimizu, et al.
Plos One|April 2, 2020
All-trans retinoic acid induces reprogramming of canine dedifferentiated cells into neuron-like cellsRei Nakano, Taku Kitanaka, Shinichi Namba, et al.
Journal of Oral Science|October 22, 2019
Transplantation of dedifferentiated fat cells combined with a biodegradable type I collagen-recombinant peptide scaffold for critical-size bone defects in ratsAtsushi Tateno, Masatake Asano, Daisuke Akita, et al.
Pageof 6