EFFECTS OF STEP WIDTH ON THE MOVEMENT PATTERN OF THE HEAD AND TRUNK WHEN WALKING: STUDY OF USING RECURRENCE QUANTIFICATION ANALYSIS
Eight healthy young participants were included in the study. The purpose of this study was to investigate the effects of step width on the movement pattern of the head and trunk when walking on the treadmill using recurrence quantification analysis. Based on the results, the head and trunk moved in...
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Published in | Japanese Journal of Physiological Anthropology Vol. 26; no. 3; pp. 55 - 62 |
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Main Authors | , , , , |
Format | Journal Article |
Language | Japanese |
Published |
Japan Society of Physiological Anthropology
25.08.2021
日本生理人類学会 |
Subjects | |
Online Access | Get full text |
ISSN | 1342-3215 2432-0986 |
DOI | 10.20718/jjpa.26.3_55 |
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Abstract | Eight healthy young participants were included in the study. The purpose of this study was to investigate the effects of step width on the movement pattern of the head and trunk when walking on the treadmill using recurrence quantification analysis. Based on the results, the head and trunk moved in a deterministic pattern, and this pattern was stably repeated when walking on a wide base. Conversely, the head and trunk moved in an irregular pattern and showed high flexibility when walking on a narrow base. |
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AbstractList | Eight healthy young participants were included in the study. The purpose of this study was to investigate the effects of step width on the movement pattern of the head and trunk when walking on the treadmill using recurrence quantification analysis. Based on the results, the head and trunk moved in a deterministic pattern, and this pattern was stably repeated when walking on a wide base. Conversely, the head and trunk moved in an irregular pattern and showed high flexibility when walking on a narrow base. |
Author | KYOKUTA, Tomoaki OOISHI, Yoshihide TAKADA, Yu TOMITA, Masao YAGI, Takayuki |
Author_FL | 髙田 勇 大石 義秀 曲田 友昭 八木 崇行 冨田 昌夫 |
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Author_xml | – sequence: 1 fullname: OOISHI, Yoshihide organization: Medical corporation R and O Seisei Rehabilitation Hospital – sequence: 1 fullname: YAGI, Takayuki organization: Medical corporation R and O Seisei Rehabilitation Hospital – sequence: 1 fullname: TAKADA, Yu organization: Kanazawa University Hospital, Department of Material Health Science, Faculty and Graduate School of Engineering, Tokyo University of Agriculture and Technology – sequence: 1 fullname: TOMITA, Masao organization: Fujita Health University – sequence: 1 fullname: KYOKUTA, Tomoaki organization: Medical corporation R and O Seisei Rehabilitation Hospital |
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DocumentTitleAlternate | 歩隔が歩行時の頭部と体幹の運動パターンに及ぼす影響:再帰性定量化分析を用いた検討 |
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References | 14) Schmit MJ, Regis ID, Riley MA. Dynamic patterns of postural sway in ballet dancers and track athletes. Exp Brain Res, 163: 370-378, 2005 16) Roelofs K. Freeze for action: neurobiological mechanisms in animal and human freezing. Philos Trans R Soc Lond B Biol Sci, 372: 2017 http://dx.doi.org/10.1098/rstb.2016.0206 10) Marwan N, Wessel N, Meyerfeldt U, Schirdewan A, Kurths J. Recurrence-plot-based measures of complexity and their application to heart-rate-variability data. Phys Rev E, 66: 026702, 2002 1) Bril B, Breniere Y. Postural Requirements and Progression Velocity in Young Walkers. J Mot Behav, 24: 105-116, 1992 15) Klein-Vogelbach S. Fundamental Observation Criteria, Functional Kinetics. Springer, 74-143, 1990 3) 髙田勇,八木崇行,田村妃登美,上田志帆,冨田昌夫,跡見順子,清水美穂,跡見友章,宮下大典,尾関保則.歩隔が歩行時の体幹制御とバランス戦略に及ぼす影響—安定および不安定の意味性の再考—.生態心理学研究,11: 53-56,2018 12) 野村泰伸,鈴木康之,清野健,付春江,吉川直也,佐古田三郎.安定かつ柔軟なヒト直立姿勢の神経制御仮説.バイオメカニズム学会誌,39: 185-195,2015 6) Riva F, Toebes M.J.P, Pijnappels M, Stagni R, van Dieën, J.H. Estimating fall risk with inertial sensors using gait stability measures that do not require step detection. Gait Posture, 38: 170-174, 2013 18) エスター・テーレン,リンダ・スミス.発達のダイナミック原理-歩行学習再考.エスター・テーレン,リンダ・スミス(著),小島康次(監訳),高橋義信,丸山慎,宮内洋,杉村伸一郎(訳).発達へのダイナミックシステム・アプローチ 認知と行為の発生プロセスとメカニズム.新曜社,99-162,2018 4) 三嶋博之,古山宣洋.姿勢と知覚情報: 再帰性定量化分析による評価.電気学会研究会資料 一般産業会,1: 21-25,2006 17) Stel SV, Smit HJ, Pluijm MFS, Lips P. Consequences of falling in older men and women and risk factors for health service use and functional decline. Age Ageing, 33: 58-65, 2004 11) Marwan N, Webber CL. Mathematical and Computational Foundations of Recurrence Quantifications. In Webber CL, Marwan N. Recurrence Quantification Analysis -Theory and Best Practices. Springer, 3-43, 2015 5) Riley MA, Balasubramaniam R, Turvey MT. 5 Recurrence quantification analysis of postural fluctuations. Gait Posture, 9: 65-78, 1999 8) Schmit MJ, Riley MA, Dalvi A, Sahay A, Shear KP, Shockley DK, Pun YKR. Deterministic center of pressure patterns characterize postural instability in Parkinson’s disease. Exp Brain Res, 168: 357-367, 2006 2) 冨田昌夫.概論.冨田昌夫,小林純也(著),患者さんの主観的体感とリハ治療.三輪書店,1-12,2021 13) Tanahashi T, Yamamoto T, Endo T, Fujimura H, Yokoe M, Mochizuki H, Nomura T, Sakoda S. Noisy Interlimb Coordination Can Be a Main Cause of Freezing of Gait in Patients with Little to No Parkinsonism. PloS One, 8: 2013 https://doi.org/10.1371/journal.pone.0084423 9) Webber CL, Zbilut JP. Recurrence quantification analysis of nonlinear dynamical systems. Tutorials in contemporary nonlinear methods for the behavioral sciences, 94, 26-94, 2005 7) Asfar O, Tirnakli U, Marwan N. Recurrence Quantification Analysis at work: Quasi-periodicity based interpretation of gait force profiles for patients with Parkinson disease. Sci Rep, 8: 2018 https://doi.org/10.1038/s41598-018-27369-2 |
References_xml | – reference: 8) Schmit MJ, Riley MA, Dalvi A, Sahay A, Shear KP, Shockley DK, Pun YKR. Deterministic center of pressure patterns characterize postural instability in Parkinson’s disease. Exp Brain Res, 168: 357-367, 2006 – reference: 4) 三嶋博之,古山宣洋.姿勢と知覚情報: 再帰性定量化分析による評価.電気学会研究会資料 一般産業会,1: 21-25,2006 – reference: 16) Roelofs K. Freeze for action: neurobiological mechanisms in animal and human freezing. Philos Trans R Soc Lond B Biol Sci, 372: 2017 http://dx.doi.org/10.1098/rstb.2016.0206 – reference: 2) 冨田昌夫.概論.冨田昌夫,小林純也(著),患者さんの主観的体感とリハ治療.三輪書店,1-12,2021 – reference: 1) Bril B, Breniere Y. Postural Requirements and Progression Velocity in Young Walkers. J Mot Behav, 24: 105-116, 1992 – reference: 15) Klein-Vogelbach S. Fundamental Observation Criteria, Functional Kinetics. Springer, 74-143, 1990 – reference: 3) 髙田勇,八木崇行,田村妃登美,上田志帆,冨田昌夫,跡見順子,清水美穂,跡見友章,宮下大典,尾関保則.歩隔が歩行時の体幹制御とバランス戦略に及ぼす影響—安定および不安定の意味性の再考—.生態心理学研究,11: 53-56,2018 – reference: 6) Riva F, Toebes M.J.P, Pijnappels M, Stagni R, van Dieën, J.H. Estimating fall risk with inertial sensors using gait stability measures that do not require step detection. Gait Posture, 38: 170-174, 2013 – reference: 12) 野村泰伸,鈴木康之,清野健,付春江,吉川直也,佐古田三郎.安定かつ柔軟なヒト直立姿勢の神経制御仮説.バイオメカニズム学会誌,39: 185-195,2015 – reference: 13) Tanahashi T, Yamamoto T, Endo T, Fujimura H, Yokoe M, Mochizuki H, Nomura T, Sakoda S. Noisy Interlimb Coordination Can Be a Main Cause of Freezing of Gait in Patients with Little to No Parkinsonism. PloS One, 8: 2013 https://doi.org/10.1371/journal.pone.0084423 – reference: 5) Riley MA, Balasubramaniam R, Turvey MT. 5 Recurrence quantification analysis of postural fluctuations. Gait Posture, 9: 65-78, 1999 – reference: 7) Asfar O, Tirnakli U, Marwan N. Recurrence Quantification Analysis at work: Quasi-periodicity based interpretation of gait force profiles for patients with Parkinson disease. Sci Rep, 8: 2018 https://doi.org/10.1038/s41598-018-27369-2 – reference: 10) Marwan N, Wessel N, Meyerfeldt U, Schirdewan A, Kurths J. Recurrence-plot-based measures of complexity and their application to heart-rate-variability data. Phys Rev E, 66: 026702, 2002 – reference: 11) Marwan N, Webber CL. Mathematical and Computational Foundations of Recurrence Quantifications. In Webber CL, Marwan N. Recurrence Quantification Analysis -Theory and Best Practices. Springer, 3-43, 2015 – reference: 9) Webber CL, Zbilut JP. Recurrence quantification analysis of nonlinear dynamical systems. Tutorials in contemporary nonlinear methods for the behavioral sciences, 94, 26-94, 2005 – reference: 14) Schmit MJ, Regis ID, Riley MA. Dynamic patterns of postural sway in ballet dancers and track athletes. Exp Brain Res, 163: 370-378, 2005 – reference: 17) Stel SV, Smit HJ, Pluijm MFS, Lips P. Consequences of falling in older men and women and risk factors for health service use and functional decline. Age Ageing, 33: 58-65, 2004 – reference: 18) エスター・テーレン,リンダ・スミス.発達のダイナミック原理-歩行学習再考.エスター・テーレン,リンダ・スミス(著),小島康次(監訳),高橋義信,丸山慎,宮内洋,杉村伸一郎(訳).発達へのダイナミックシステム・アプローチ 認知と行為の発生プロセスとメカニズム.新曜社,99-162,2018 |
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SubjectTerms | Balance Recurrence Quantification Analysis Step width バランス 再帰性定量化分析 歩隔 |
Title | EFFECTS OF STEP WIDTH ON THE MOVEMENT PATTERN OF THE HEAD AND TRUNK WHEN WALKING: STUDY OF USING RECURRENCE QUANTIFICATION ANALYSIS |
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