研究者業績
基本情報
- 所属
- 藤田医科大学 保健衛生学部 リハビリテーション学科 専門基礎科学 講師
- 学位
- 障害科学博士(東北大学)
- J-GLOBAL ID
- 201801010136640155
- researchmap会員ID
- B000304111
専門理学療法士(基礎)
研究分野
4受賞
1論文
27-
2025年8月27日Abstract <p>Motor control is affected by subjective muscle fatigue and attention to the body (body-specific attention). Although voluntary hand movements immediately alter spatial attention, it is unclear whether these voluntary movements also alter body-specific attention to the hand. We aimed to determine whether voluntary hand movements and subjective muscle fatigue immediately affect body-specific attention to the hand. Nineteen healthy adults participated in this study. Body-specific attention to the left hand and subjective muscle fatigue were assessed before and after participants repeatedly moved their left hand to the palmar and dorsal sides. In the visual detection task measuring body-specific attention, participants responded rapidly to a light appearing on a real hand and a dummy hand. Body-specific attention was calculated by subtracting the reaction time of the real hand from that of the dummy hand. To assess subjective muscle fatigue, participants answered a question on an 11-point scale. Changes in body-specific attention were categorized into two groups: with and without muscle fatigue (p < 0.05). In the group without muscle fatigue, body-specific attention was higher after the movements than before (p < 0.05). Additionally, as muscle fatigue increased after the movements, body-specific attention decreased (r = − 0.568, p < 0.05). Our results showed that voluntary hand movements increased body-specific attention to the hand without subjective muscle fatigue, but decreased it with fatigue. These findings suggest that subjective muscle fatigue affects body-specific attention and consequently makes motor control more difficult. Our findings may provide new strategies and interpretations for rehabilitation therapy.</p>
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Mechanobiology in Medicine 3 100148-100148 2025年8月
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Fujita medical journal 11(3) 111-120 2025年4月 査読有り
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Heliyon 10(8) e29090-e29090 2024年4月
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Dementia and geriatric cognitive disorders 53(6) 329-337 2024年INTRODUCTION: Exercise has been recommended to suppress or prevent cognitive decline. Aerobic exercise (AE) may suppress cognitive decline via the fibronectin type III domain-containing protein 5 (FNDC5)/irisin/brain-derived neurotrophic factor (BDNF) pathway, and resistance training (RT) has a preventive effect on cognitive decline. However, the underlying mechanism remains unclear. This study verified the differences in the effects of AE and RT in suppressing and preventing cognitive decline based on the FNDC5/irisin/BDNF pathway. METHODS: We divided senescence-accelerated mouse-prone 8 into three groups: control (CON), AE, and RT and evaluated their memory during exercise intervention through a novel object recognition (NOR) task. We quantified FNDC5/irisin, mBDNF, and TrkB in the hippocampus using enzyme-linked immunosorbent assay and FNDC5 in skeletal muscle using Western blotting (WB). RESULTS: Behavioral analysis using NOR showed that values for both AE and RT were significantly greater than those for CON. WB analysis showed that the peripheral FNDC5 expression in the skeletal muscle was increased in AE. The expression levels of FNDC5/irisin and mBDNF in the hippocampus were significantly increased in both AE and RT compared with that in CON but that if TrkB was increased only in AE. CONCLUSION: No significant difference was observed between AE and RT in the inhibitory effect on age-related cognitive decline, and both groups were effective. The FNDC5/Irisin/BDNF pathway, which was the focus of this experiment, may be specific to AE. The mechanism that suppresses cognitive decline may differ depending on the type of exercise.
MISC
32書籍等出版物
4講演・口頭発表等
48-
第23回日本神経理学療法学会学術大会 2025年10月31日 招待有り
担当経験のある科目(授業)
7共同研究・競争的資金等の研究課題
6-
日本学術振興会 科学研究費助成事業 2025年4月 - 2028年3月
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文部科学省 若手研究 2022年4月 - 2025年3月
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日本学術振興会 科学研究費助成事業 2022年4月 - 2024年3月
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文部科学省 若手研究 2019年4月 - 2023年3月
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日本学術振興会 科学研究費助成事業 2020年4月 - 2022年3月
学術貢献活動
1その他
2教育内容・方法の工夫(授業評価等を含む)
2-
件名ICTを利用した学習開始年月日2020/04/01概要登校しなくても対面と変わらないように工夫した講義の実施。
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件名全身骨格模型を用いた演習開始年月日2019/04/01概要全身骨格模型を用いて筋・靭帯を模擬的に作成することで、人体の構造を理解する。
作成した教科書、教材、参考書
1-
件名新人理学療法士のためのスキルアップガイド 疾患別理学療法からチーム医療・研究まで開始年月日2020/08/05概要分担執筆「切断」「義足」「難治性疼痛と異常知覚(幻肢痛)」「中枢神経領域での研究の進め方」