Rchr
J-GLOBAL ID:200901002954649831
Update date: May. 17, 2024
Katanosaka Kimiaki
カタノサカ キミアキ | Katanosaka Kimiaki
Affiliation and department:
Job title:
准教授
Research field (6):
Neuroscience - general
, Biomaterials
, Biomedical engineering
, Animals: biochemistry, physiology, behavioral science
, Physiology
, Neuropathology
Research keywords (1):
筋痛
Research theme for competitive and other funds (29):
- 2022 - 2027 運動昇圧反射のメカノバイオロジー機構の解明
- 2023 - 2026 筋の動けば肥大し、動かなければ痩せるしくみの解明
- 2022 - 2025 筋血管のメカニカルストレス応答の解明に基づく運動後の筋痛発症と適応機序の理解
- 2020 - 2024 Monitoring of the activity of cardiac mechanosensor
- 2018 - 2022 医工学的解析に基づく神経筋クロストークを介した筋の運動適応機序の解明
- 2016 - 2022 機械受容応答を支える膜・糖鎖環境の解明と筋疾患治療への展開 - 筋細胞の適切な機械刺激応答に必要な分子基盤の解明
- 2018 - 2020 Identification of mechanical signal from intercalated discs
- 2017 - 2020 Study on the muscular pain in the early phase of inactivity and effects of physical therapy on its development.
- 2017 - 2020 Mechanotransduction on cardiac physiology
- 2015 - 2018 医工学的解析に基づく筋-神経間のクロストークの分子基盤
- 2015 - 2017 熱性疼痛の末梢機構解明にむけた高温感受性一次感覚ニューロンの同定と単離手法の確立
- 2014 - 2017 Analysis of characteristics of the muscle as a tissue that produces pain sensitizing substances
- 2014 - 2017 Elucidation of molecular mechanism of mechanotransduction in the heart
- 2014 - 2016 The maintenance of cardiac structure and function by mechanical feedback system involving multiple organ systems.
- 2013 - 2016 Neural mechanism and treatment of stress-induced myofascial pain
- 2012 - 2015 Novel roles of muscle fascia as a nociceptive sensory tissue.
- 2012 - 2015 多機能メカノセンサーTRPV2の成体知覚神経細胞における機能と疼痛への関与の精査
- 2009 - 2012 侵害的温度刺激による侵害受容器興奮機序の解明
- 2011 - 2011 筋性疼痛における各種神経栄養因子の関与と筋における産生・作用機構
- 2011 - 2011 異質な神経細胞集団からの細胞サブグループの単離回収方法の開発
- 2009 - 2011 マルチレベル医工学評価法に基づく心筋メカノセンサーの作動機序と病態生理的役割
- 2008 - 2010 Role of nerve growth factor (NGF) in muscular pain
- 2005 - 2008 単一皮膚感覚受容器の刺激感受性と発現遺伝子の並列的解析による細胞特異的因子の同定
- 2008 - 2008 筋の痛み受容器細胞の機械応答による筋性疼痛のメカニズムの解明
- 2006 - 2007 Study on the peripheral mechanism of muscular mechanical hyperalgesia using the delayed onset muscle soreness as a model
- 2002 - 2005 温度刺激受容に関わる新規蛋白質の検索
- 2003 - 2005 Analysis of peripheral mechanism for cold-induced aggravation of pain in inflammation and nerve injury models
- 1999 - 2001 Study on the peripheral mechanism of hyperalgesia to mechanical and cold stimulations
- 1994 - 1997 ショウジョウバエ視細胞における光受容膜構造の維持機構
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Papers (27):
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Hiroki Ota, Rihito Oi, Kimiaki Katanosaka, Kazue Mizumura, Toru Taguchi. Expression profiles of <i>Tmem120A ⁄ TACAN</i> in rat skeletal muscle subjected to exercise and inflammation. PAIN RESEARCH. 2024. 39. 1. 35-39
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Tomoko Koeda, Georgios Mavropalias, Kazue Mizumura, Kimiaki Katanosaka, Kazunori Nosaka. Changes in nerve growth factor in vastus lateralis muscle after the first versus second bout of one-leg eccentric cycling. Scandinavian journal of medicine & science in sports. 2024. 34. 1. e14497
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Amane Hori, Ayumi Fukazawa, Kimiaki Katanosaka, Masaki Mizuno, Norio Hotta. Mechanosensitive channels in the mechanical component of the exercise pressor reflex. Autonomic Neuroscience. 2023. 103128-103128
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Teruaki Nasu, Amane Hori, Norio Hotta, Chiaki Kihara, Asako Kubo, Kimiaki Katanosaka, Masamitsu Suzuki, Kazue Mizumura. Vacuolar-ATPase-mediated muscle acidification caused muscular mechanical nociceptive hypersensitivity after chronic stress in rats, which involved extracellular matrix proteoglycan and ASIC3. Scientific Reports. 2023. 13. 1
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Ayumi Fukazawa, Amane Hori, Hotta Norio, Kimiaki Katanosaka, Juan A. Estrada, Rie Ishizawa, Han-Kyul Kim, Gary A. Iwamoto, Scott A. Smith, Wanpen Vongpatanasin, et al. Antagonism of TRPV4 channels partially reduces mechanotransduction in rat skeletal muscle afferents. The Journal of Physiology. 2023. 601. 8. 1407-1424
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MISC (21):
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Symposium3. Japanese Journal of Physical Fitness and Sports Medicine. 2024. 73. 1. 23-23
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Symposium3-4. Japanese Journal of Physical Fitness and Sports Medicine. 2024. 73. 1. 25-25
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Symposium3-1. Japanese Journal of Physical Fitness and Sports Medicine. 2023. 72. 1. 23-23
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MIYAHARA Kenichiro, WAKATSUKI Koji, TSUBOSHIMA Katsuyuki, OTA Hiroki, KATANOSAKA Kimiaki, MIZUMURA Kazue, NISHIJO Hisao, TAGUCHI Toru. Histological Changes in Skeletal Muscle of a Rat Reserpine-induced Fibromyalgia Model. Physical Therapy Japan. 2022. 49. 4. 306-312
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太田 大樹, 坪島 功幸, 片野坂 公明, 金川 基, 田口 徹. 運動の繰り返し効果における糖鎖ヒアルロン酸の役割. 日本筋学会学術集会プログラム・抄録集. 2022. 8回. 111-111
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Books (4):
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ガイトン生理学 原著第13版, J.E.Hall
エルゼビア・ジャパン 2018
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メカノバイオロジー(DOJIN BIOSCIENCE SERIES)細胞が力を感じ応答するしくみ,曽我部正博編
化学同人 2015
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中部大学生命健康科学研究所紀要 Vol. 11
中部大学生命健康科学研究所 2015
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Neural mechanisms and developmental process of mechanically induced pain -insights obtained from the study on the mechanical hyperalgesia after exercise (delayed onset muscle soreness)- In: Recent Advances in Mechanobiology
Shanghai Scientific and Technological Literature Publishing House 2012
Lectures and oral presentations (18):
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Analysis of changes in expression level of sarcolemmal proteins after exercise in a rat model for delayed onset muscle soreness (DOMS).
(第95回日本生理学会大会 高松大会 2018)
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A new method to examine animal tactile sensation and its practical application to the analysis of a primary sensory neuron-specific gene knockout mice.
(第39回日本比較生理生化学会 博多大会 2017)
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The role of transient receptor potential vanilloid 2(TRPV2)in mechanosensation of adult mice.
(日本比較生理生化学会第38回大会 2016)
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TRPV2 is crucial for cardiac structure and function
(Gordon Research Conferences:Muscle:Excitation-Contraction Coupling 2015)
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The immunohistochemical characterization of the new heat-sensitive primary sensory neuron in mouse dorsal root ganglia.
(第92回日本生理学会大会(神戸) 2015)
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Professional career (1):
Work history (2):
- 2014/04 - 現在 Chubu University Department of Biomedical Sciences, College of Life and Health Sciences, Associate Professor
- 2007 - 2014/03 Nagoya University Research Institute of Environmental Medicine, Division of Stress Recognition and Response, Research Institute of Environmental Medicine Assistant Professor
Committee career (6):
Association Membership(s) (5):
日本神経科学会
, 日本比較生理生化学会
, 日本生理学会
, Society for Neuroscience
, International Association for the Study of Pain
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