属性の異なる運動イメージ能力評価法の相互関係性に関する検討
〔目的〕属性の異なる運動イメージ能力評価法の相互関係性について検討することを目的とした.〔対象〕対象は健常者43名とした.〔方法〕質問紙法(VMIQ-2),メンタルクロノメトリー課題(iBBT,iTUG),メンタルローテーション課題(HLJT)を用い,測定値について相関分析,および主成分分析を行った.〔結果〕VMIQ2-KIとVMIQ2-EVI,VMIQ2-IVI,iTUG,HLJTの間に相関関係が認められた.主成分分析では主としてVMIQ2-IVI,VMIQ2-KI,iTUG,HLJTから構成される第二主成分が,筋感覚イメージに関係する主成分と考えられた.〔結語〕運動イメージ能力の評価には,...
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| Published in | 理学療法科学 Vol. 29; no. 1; pp. 45 - 49 |
|---|---|
| Main Author | |
| Format | Journal Article |
| Language | Japanese |
| Published |
理学療法科学学会
2014
|
| Subjects | |
| Online Access | Get full text |
| ISSN | 1341-1667 2434-2807 |
| DOI | 10.1589/rika.29.45 |
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| Abstract | 〔目的〕属性の異なる運動イメージ能力評価法の相互関係性について検討することを目的とした.〔対象〕対象は健常者43名とした.〔方法〕質問紙法(VMIQ-2),メンタルクロノメトリー課題(iBBT,iTUG),メンタルローテーション課題(HLJT)を用い,測定値について相関分析,および主成分分析を行った.〔結果〕VMIQ2-KIとVMIQ2-EVI,VMIQ2-IVI,iTUG,HLJTの間に相関関係が認められた.主成分分析では主としてVMIQ2-IVI,VMIQ2-KI,iTUG,HLJTから構成される第二主成分が,筋感覚イメージに関係する主成分と考えられた.〔結語〕運動イメージ能力の評価には,質問紙と合わせてiTUG,HLJTを行うことが有用である. |
|---|---|
| AbstractList | 〔目的〕属性の異なる運動イメージ能力評価法の相互関係性について検討することを目的とした.〔対象〕対象は健常者43名とした.〔方法〕質問紙法(VMIQ-2),メンタルクロノメトリー課題(iBBT,iTUG),メンタルローテーション課題(HLJT)を用い,測定値について相関分析,および主成分分析を行った.〔結果〕VMIQ2-KIとVMIQ2-EVI,VMIQ2-IVI,iTUG,HLJTの間に相関関係が認められた.主成分分析では主としてVMIQ2-IVI,VMIQ2-KI,iTUG,HLJTから構成される第二主成分が,筋感覚イメージに関係する主成分と考えられた.〔結語〕運動イメージ能力の評価には,質問紙と合わせてiTUG,HLJTを行うことが有用である. 要旨:〔目的〕属性の異なる運動イメージ能力評価法の相互関係性について検討することを目的とした. 〔対象〕対象は健常者43名とした. 〔方法〕質問紙法(VMIQ-2), メンタルクロノメトリー課題(iBBT, iTUG), メンタルローテーション課題(HLJT)を用い, 測定値について相関分析, および主成分分析を行った. 〔結果〕VMIQ2-KIとVMIQ2-EVI, VMIQ2-IVI, iTUG, HLJTの間に相関関係が認められた. 主成分分析では主としてVMIQ2-IVI, VMIQ2-KI, iTUG, HLJTから構成される第二主成分が, 筋感覚イメージに関係する主成分と考えられた. 〔結語〕運動イメージ能力の評価には, 質問紙と合わせてiTUG, HLJTを行うことが有用である. |
| Author | 門馬, 博 |
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| Copyright | 2014 by the Society of Physical Therapy Science |
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| References | 5) Driskell JE, Copper C, Moran A: Does mental practice enhance performance?. J Appl Psychol, 1994, 79(4): 481-492. 9) Hall CR, Pongrac J, Buckloz E: The measurement of imagery ability. Hum Mov Sci, 1985, 4(2): 107-118. 8) Saimpont A, Malouin F, Tousignant B, et al.: Motor imagery and aging. J Mot Behav, 2013: 45(1), 21-27. 24) Stinear CM, Byblow WD, Steyvers M, et al.: Kinesthetic, but not visual, motor imagery modulates corticomotor excitability. Exp Brain Res, 2006, 168(1-2): 157-164. 6) Schuster C, Hilfiker R, Amft O, et al.: Best practice for motor imagery: a systematic literature review on motor imagery training elements in five different disciplines. BMC Medicine, 2011, 9: 75. 20) Parsons LM: Imagined spatial transformation of one’s body. J Exp Psychol Gen, 1987, 116(2): 172-191. 16) Mathiowetz V, Volland G, Kashman N, et al.: Adult norms for the Box and Block Test of manual dexterity. Am J Occup Ther, 1985, 39(6): 386-391. 3) Pascual-Leone A, Nguyet D, Cohen LG, et al.: Modulation of muscle responses evoked by transcranial magnetic stimulation during the acquisition of new fine motor skills. J Neurophysiol, 1995, 74(3): 1037-1045. 4) Malouin F, Richards CL: Mental practice for relearning locomotor skills. Phys Ther, 2010, 90(2): 240-251. 15) Collet C, Guillot A, Lebon F, et al.: Measuring motor imagery using psychometric, behavioral, and psychophysiological tools. Exerc Sport Sci Rev, 2011, 39(2): 85-92. 13) Malouin F, Richards CL, Jackson PL, et al.: The kinesthetic and visual imagery questionnaire (KVIQ) for assessing motor imagery in persons with physical disabilities: a reliability and construct validity study. J Neurol Phys Ther, 2007, 31(3): 20-29. 17) Heremans E, Feys P, Nieuwboer A, et al.: Motor imagery ability in patients with early- and mid-stage Parkinson disease. Neurorehabil Neural Repair, 2011, 25(2): 168-177. 14) Gregg M, Hall C, Butler A: The MIQ-RS: a suitable option for examining movement imagery ability. Evid Based Complement Alternat Med, 2010, 7(2): 249-257. 18) Podsiadlo D, Richardson S: The timed “Up & Go”: a test of basic functional mobility for frail elderly persons. J Am Geriatr Soc, 1991, 39(2): 142-148. 11) Isaac A, Marks DF, Russell DG: An instrument for assessing imagery of movement: the vividness of movement imagery questionnaire (VMIQ). J Mental Imagery, 1986, 10(4): 23-30. 10) Hall CR, Martin KA: Measuring movement imagery abilities: a revision of the movement imagery questionnaire. J Mental Imagery, 1997, 21(1 and 2): 143-154. 19) Beauchet O, Annweiler C, Assal F, et al.: Imagined Timed Up & Go test: a new tool to assess higher-level gait and balance disorders in older adults? J Neurol Sci , 2010, 294(1-2): 102-106. 22) Sekiyama K: Kinesthetic aspects of mental representations in the identification of left and right hands. Percept Psychophys, 1982, 32(2): 89-95. 1) Ehrsson HH, Geyer S, Naito E: Imagery of voluntary movement of fingers, toes, and tongue activates corresponding body-part-specific motor representations. J Neurophysiol. 2003, 90(5): 3304-3316. 12) Roberts R, Callow N, Hardy L, et al.: Movement imagery ability: development and assessment of a revised version of the vividness of movement imagery questionnaire. J Sport Exerc Psychol, 2008, 30(2), 200-221. 23) Williams J, Pearce AJ, Loporto M, et al.: The relationship between corticospinal excitability during motor imagery and motor imagery ability. Behav Brain Res, 2012, 226(2): 369-375. 25) 杉原 隆:運動指導の心理学.大修館書店,東京, 2003, pp87-99. 21) 樋口貴広:運動支援の心理学.三輪書店,東京, 2013, pp136-159. 2) Grèzes J, Decety J: Functional anatomy of execution, mental simulation, observation, and verb generation of actions: a meta-analysis. Hum Brain Mapp, 2001, 12(1): 1-19. 7) Ietswaart M., Johnston M., Dijkerman HC, et al.: Mental practice with motor imagery in stroke recovery: randomized controlled trial of efficacy. Brain, 2011, 134(5): 1373-1386. |
| References_xml | – reference: 20) Parsons LM: Imagined spatial transformation of one’s body. J Exp Psychol Gen, 1987, 116(2): 172-191. – reference: 15) Collet C, Guillot A, Lebon F, et al.: Measuring motor imagery using psychometric, behavioral, and psychophysiological tools. Exerc Sport Sci Rev, 2011, 39(2): 85-92. – reference: 13) Malouin F, Richards CL, Jackson PL, et al.: The kinesthetic and visual imagery questionnaire (KVIQ) for assessing motor imagery in persons with physical disabilities: a reliability and construct validity study. J Neurol Phys Ther, 2007, 31(3): 20-29. – reference: 22) Sekiyama K: Kinesthetic aspects of mental representations in the identification of left and right hands. Percept Psychophys, 1982, 32(2): 89-95. – reference: 3) Pascual-Leone A, Nguyet D, Cohen LG, et al.: Modulation of muscle responses evoked by transcranial magnetic stimulation during the acquisition of new fine motor skills. J Neurophysiol, 1995, 74(3): 1037-1045. – reference: 1) Ehrsson HH, Geyer S, Naito E: Imagery of voluntary movement of fingers, toes, and tongue activates corresponding body-part-specific motor representations. J Neurophysiol. 2003, 90(5): 3304-3316. – reference: 4) Malouin F, Richards CL: Mental practice for relearning locomotor skills. Phys Ther, 2010, 90(2): 240-251. – reference: 7) Ietswaart M., Johnston M., Dijkerman HC, et al.: Mental practice with motor imagery in stroke recovery: randomized controlled trial of efficacy. Brain, 2011, 134(5): 1373-1386. – reference: 21) 樋口貴広:運動支援の心理学.三輪書店,東京, 2013, pp136-159. – reference: 23) Williams J, Pearce AJ, Loporto M, et al.: The relationship between corticospinal excitability during motor imagery and motor imagery ability. Behav Brain Res, 2012, 226(2): 369-375. – reference: 8) Saimpont A, Malouin F, Tousignant B, et al.: Motor imagery and aging. J Mot Behav, 2013: 45(1), 21-27. – reference: 24) Stinear CM, Byblow WD, Steyvers M, et al.: Kinesthetic, but not visual, motor imagery modulates corticomotor excitability. Exp Brain Res, 2006, 168(1-2): 157-164. – reference: 12) Roberts R, Callow N, Hardy L, et al.: Movement imagery ability: development and assessment of a revised version of the vividness of movement imagery questionnaire. J Sport Exerc Psychol, 2008, 30(2), 200-221. – reference: 11) Isaac A, Marks DF, Russell DG: An instrument for assessing imagery of movement: the vividness of movement imagery questionnaire (VMIQ). J Mental Imagery, 1986, 10(4): 23-30. – reference: 10) Hall CR, Martin KA: Measuring movement imagery abilities: a revision of the movement imagery questionnaire. J Mental Imagery, 1997, 21(1 and 2): 143-154. – reference: 6) Schuster C, Hilfiker R, Amft O, et al.: Best practice for motor imagery: a systematic literature review on motor imagery training elements in five different disciplines. BMC Medicine, 2011, 9: 75. – reference: 14) Gregg M, Hall C, Butler A: The MIQ-RS: a suitable option for examining movement imagery ability. Evid Based Complement Alternat Med, 2010, 7(2): 249-257. – reference: 19) Beauchet O, Annweiler C, Assal F, et al.: Imagined Timed Up & Go test: a new tool to assess higher-level gait and balance disorders in older adults? J Neurol Sci , 2010, 294(1-2): 102-106. – reference: 25) 杉原 隆:運動指導の心理学.大修館書店,東京, 2003, pp87-99. – reference: 2) Grèzes J, Decety J: Functional anatomy of execution, mental simulation, observation, and verb generation of actions: a meta-analysis. Hum Brain Mapp, 2001, 12(1): 1-19. – reference: 9) Hall CR, Pongrac J, Buckloz E: The measurement of imagery ability. Hum Mov Sci, 1985, 4(2): 107-118. – reference: 5) Driskell JE, Copper C, Moran A: Does mental practice enhance performance?. J Appl Psychol, 1994, 79(4): 481-492. – reference: 16) Mathiowetz V, Volland G, Kashman N, et al.: Adult norms for the Box and Block Test of manual dexterity. Am J Occup Ther, 1985, 39(6): 386-391. – reference: 18) Podsiadlo D, Richardson S: The timed “Up & Go”: a test of basic functional mobility for frail elderly persons. J Am Geriatr Soc, 1991, 39(2): 142-148. – reference: 17) Heremans E, Feys P, Nieuwboer A, et al.: Motor imagery ability in patients with early- and mid-stage Parkinson disease. Neurorehabil Neural Repair, 2011, 25(2): 168-177. |
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| Snippet | 〔目的〕属性の異なる運動イメージ能力評価法の相互関係性について検討することを目的とした.〔対象〕対象は健常者43名とした.〔方法〕質問紙... 要旨:〔目的〕属性の異なる運動イメージ能力評価法の相互関係性について検討することを目的とした. 〔対象〕対象は健常者43名とした. 〔方法〕質問紙法(VMIQ-2),... |
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| Title | 属性の異なる運動イメージ能力評価法の相互関係性に関する検討 |
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