Visual Discrepancy Adaptation Process for Reaching Movement in Children with Learning Disabilities
In this study, we measured the ability of children with learning disabilities (LD) to adapt to changes when reaching for visual targets. The rotation and reverse motions of the cursor, representing the subject's hand position, resulted in a change in visual feedback. In the experiment, we measu...
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| Published in | Transactions of Japanese Society for Medical and Biological Engineering Vol. 42; no. 4; pp. 328 - 333 |
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| Main Authors | , , , |
| Format | Journal Article |
| Language | Japanese |
| Published |
Japanese Society for Medical and Biological Engineering
2004
公益社団法人 日本生体医工学会 |
| Subjects | |
| Online Access | Get full text |
| ISSN | 1347-443X 1881-4379 |
| DOI | 10.11239/jsmbe2002.42.328 |
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| Abstract | In this study, we measured the ability of children with learning disabilities (LD) to adapt to changes when reaching for visual targets. The rotation and reverse motions of the cursor, representing the subject's hand position, resulted in a change in visual feedback. In the experiment, we measured the changes in adaptation ability for two groups of children, children with LD and normal children, when rotation and reverse motions were varied and the distance from the body to starting point was varied. The results showed the adaptability of children with LD differs with that of normal children in right and left reversed tasks. The motor ability of children with LD was significantly lower even when identical rotation and reverse motions were used for the two groups of children in an exocentric task. The results suggest the probability of a reduced ability or functional impairment in the brain function of children with LD when perceiving depth. |
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| AbstractList | In this study, we measured the ability of children with learning disabilities (LD) to adapt to changes when reaching for visual targets. The rotation and reverse motions of the cursor, representing the subject's hand position, resulted in a change in visual feedback. In the experiment, we measured the changes in adaptation ability for two groups of children, children with LD and normal children, when rotation and reverse motions were varied and the distance from the body to starting point was varied. The results showed the adaptability of children with LD differs with that of normal children in right and left reversed tasks. The motor ability of children with LD was significantly lower even when identical rotation and reverse motions were used for the two groups of children in an exocentric task. The results suggest the probability of a reduced ability or functional impairment in the brain function of children with LD when perceiving depth. |
| Author | TAKAHASH, Makoto GOTO, Kohtaro MAEDA, Katsutoshi MUROHASHI, Harumitsu |
| Author_FL | 前田 力俊 高橋 誠 室橋 春光 後藤 広太郎 |
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| DocumentTitleAlternate | 学習障害児(Leaming Disabilities)における到達運動の視覚矛盾に対する適応過程 |
| DocumentTitle_FL | 学習障害児(Leaming Disabilities)における到達運動の視覚矛盾に対する適応過程 |
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| Publisher | Japanese Society for Medical and Biological Engineering 公益社団法人 日本生体医工学会 |
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| References | 3) M. Cohen, R. Campbell & F. Yaghmai: Neuropathological abnormalities in developmental dysphasia, Ann. Neurol., 25, 567/570 (1989 8) T. Tamada, S. Miyauchi, H. Imamizu, T. Yoshioka & M. Kawato: Cerebro-cerebellar functional connectivity revealed by the laterality index in tool-use learning, Neuroreport, 10, 325/331 (1999 2) A. M. Galaburda: Neuropathologic correlates of learning disabilities, particularly dyslexia, Semin. Neurol., 11, 20/27 (1991 7) H. Imamizu, S. Miyauchi, T. Tamada, Y. Sasaki, R. Takino, B. Piitz, T. Yoshioka & M. Kawato: Human cerebellar activity reflecting an acquired internal model of a novel tool, Nature, 403, 192/195 (2000 4) H. Imamizu & S. Shimojo: The locus of visual motor learning at the task or manipulator level: Implications from intermanual transfer, J. Exp. Psychol. Hum. Percept. Perform., 21-4, 719/733 (1995 9) K. Sakatani, Y. Xie, W. Lichty, S. Li & H. Zuo: Languageactivated cerebral blood oxygenation and hemodynamic changes of the left prefrontal cortex in poststroke aphasic patients: A near-infrared spectroscopy study, Stroke, 29, 1299/1304 (1998 6) T. A. Martin, J. G. Keating, H. P. Goodkin, A. J. Bastian & W. T. Thach: Throwing while looking through prism I. Focal olivocerebellar lesions impair adaptation, Brain, 119, 1183/1198 (1996 5) 前田力俊, 高橋誠, 高橋昌樹, 後藤広太郎, 室橋春光: 空間把握における学習障害児の上肢運動の適応能力に関する基礎研究, 電子情報通信学会技術研究報告, 103-133, 55/60 (2003 1) 森永良子, 上村菊朗: LD―学習障害, 医歯薬出版, 東京 (1999 |
| References_xml | – reference: 7) H. Imamizu, S. Miyauchi, T. Tamada, Y. Sasaki, R. Takino, B. Piitz, T. Yoshioka & M. Kawato: Human cerebellar activity reflecting an acquired internal model of a novel tool, Nature, 403, 192/195 (2000) – reference: 9) K. Sakatani, Y. Xie, W. Lichty, S. Li & H. Zuo: Languageactivated cerebral blood oxygenation and hemodynamic changes of the left prefrontal cortex in poststroke aphasic patients: A near-infrared spectroscopy study, Stroke, 29, 1299/1304 (1998) – reference: 3) M. Cohen, R. Campbell & F. Yaghmai: Neuropathological abnormalities in developmental dysphasia, Ann. Neurol., 25, 567/570 (1989) – reference: 6) T. A. Martin, J. G. Keating, H. P. Goodkin, A. J. Bastian & W. T. Thach: Throwing while looking through prism I. Focal olivocerebellar lesions impair adaptation, Brain, 119, 1183/1198 (1996) – reference: 2) A. M. Galaburda: Neuropathologic correlates of learning disabilities, particularly dyslexia, Semin. Neurol., 11, 20/27 (1991) – reference: 5) 前田力俊, 高橋誠, 高橋昌樹, 後藤広太郎, 室橋春光: 空間把握における学習障害児の上肢運動の適応能力に関する基礎研究, 電子情報通信学会技術研究報告, 103-133, 55/60 (2003) – reference: 8) T. Tamada, S. Miyauchi, H. Imamizu, T. Yoshioka & M. Kawato: Cerebro-cerebellar functional connectivity revealed by the laterality index in tool-use learning, Neuroreport, 10, 325/331 (1999) – reference: 1) 森永良子, 上村菊朗: LD―学習障害, 医歯薬出版, 東京 (1999) – reference: 4) H. Imamizu & S. Shimojo: The locus of visual motor learning at the task or manipulator level: Implications from intermanual transfer, J. Exp. Psychol. Hum. Percept. Perform., 21-4, 719/733 (1995) |
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| Snippet | In this study, we measured the ability of children with learning disabilities (LD) to adapt to changes when reaching for visual targets. The rotation and... |
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| SubjectTerms | adaptation learning disabilities proprioception spatial perception upper-limb reaching |
| Title | Visual Discrepancy Adaptation Process for Reaching Movement in Children with Learning Disabilities |
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