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Prismatic displacement of vision induces transient changes in the timing of eye-hand coordination.

作者信息

Rossetti Y, Koga K, Mano T

机构信息

Nagoya University, Japan.

出版信息

Percept Psychophys. 1993 Sep;54(3):355-64. doi: 10.3758/bf03205270.

DOI:10.3758/bf03205270
PMID:8414894
Abstract

Eye-hand coordination was investigated during a task of finger pointing toward visual targets viewed through wedge prisms. Hand and eye latencies and movement times were identical during the control condition and at the end of prism exposure. A temporal reorganization of eye and hand movements was observed during the course of adaptation. During the earlier stage of prism exposure, the time gap between the end of the eye saccade and the onset of hand movement was increased from a control time of 23 to 68 msec. This suggests that a time-consuming process occurred during the early prism-exposure period. The evolution of this time gap was correlated with the evolution of pointing errors during the early stage of prism exposure, in such a way that both measures increased at the onset of prism exposure and decreased almost back to control values within about 10 trials. However, spatial error was not entirely corrected, even late in prism exposure when the temporal organization of eye and hand had returned to baseline. These data suggest that two different adaptive mechanisms were at work: a rather short-term mechanism, involved in normal coordination of spatially aligned eye and hand systems, and a long-term mechanism, responsible for remapping spatially misaligned systems. The former mechanism can be strategically employed to quickly optimize accuracy in a situation involving misalignment, but completely adaptive behavior must await the slower-acting latter mechanism to achieve long-term spatial alignment.

摘要

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本文引用的文献

1
Extreme vestibulo-ocular adaptation induced by prolonged optical reversal of vision.长期视觉光学反转诱导的极端前庭眼适应
J Physiol. 1976 Apr;256(2):381-414. doi: 10.1113/jphysiol.1976.sp011330.
2
The effects of instructions to subjects on the programming of visually directed reaching movements.
J Mot Behav. 1989 Mar;21(1):5-19. doi: 10.1080/00222895.1989.10735461.
3
The temporal organization of hand, eye, and head movements during reaching and pointing.伸手和指向过程中手、眼和头部运动的时间组织。
主动推断统一了运动控制的意向性和冲突解决的必要性。
PLoS Comput Biol. 2022 Jun 17;18(6):e1010095. doi: 10.1371/journal.pcbi.1010095. eCollection 2022 Jun.
4
The Effects of Continuous vs. Intermittent Prism Adaptation Protocols for Treating Visuospatial Neglect: A Randomized Controlled Trial.连续与间歇性棱镜适应方案治疗视觉空间忽视的效果:一项随机对照试验
Front Neurol. 2021 Nov 19;12:742727. doi: 10.3389/fneur.2021.742727. eCollection 2021.
5
On the nature of eye-hand coordination in natural steering behavior.自然转向行为中眼手协调的本质。
PLoS One. 2020 Nov 23;15(11):e0242818. doi: 10.1371/journal.pone.0242818. eCollection 2020.
6
On the Mechanics of Immediate Corrections and Aftereffects in Prism Adaptation.关于棱镜适应中即时矫正及其后效应的力学原理。
Vision (Basel). 2017 Dec 19;1(4):27. doi: 10.3390/vision1040027.
7
Simulated prism exposure in immersed virtual reality produces larger prismatic after-effects than standard prism exposure in healthy subjects.沉浸式虚拟现实中的模拟棱镜暴露比健康受试者中的标准棱镜暴露产生更大的棱镜后效。
PLoS One. 2019 May 24;14(5):e0217074. doi: 10.1371/journal.pone.0217074. eCollection 2019.
8
Online Adaptation to Altered Auditory Feedback Is Predicted by Auditory Acuity and Not by Domain-General Executive Control Resources.听觉敏锐度而非一般领域执行控制资源可预测对改变的听觉反馈的在线适应。
Front Hum Neurosci. 2018 Mar 12;12:91. doi: 10.3389/fnhum.2018.00091. eCollection 2018.
9
Influence of Visual Prism Adaptation on Auditory Space Representation.视觉棱镜适应对听觉空间表征的影响。
Iperception. 2017 Dec 18;8(6):2041669517746701. doi: 10.1177/2041669517746701. eCollection 2017 Nov-Dec.
10
Towards a neuro-computational account of prism adaptation.朝向关于棱镜适应的神经计算解释。
Neuropsychologia. 2018 Jul 1;115:188-203. doi: 10.1016/j.neuropsychologia.2017.12.021. Epub 2017 Dec 14.
J Mot Behav. 1991 Jun;23(2):109-19. doi: 10.1080/00222895.1991.9942028.
4
Experiments with goggles.使用护目镜进行的实验。
Sci Am. 1962 May;206:62-72. doi: 10.1038/scientificamerican0562-62.
5
Adaptation to displaced vision: visual, motor, or proprioceptive change?适应视觉位移:视觉、运动还是本体感觉变化?
Science. 1963 May 17;140(3568):812-3. doi: 10.1126/science.140.3568.812.
6
Exposure-history as a factor in maintaining stability of perception and coordination.作为维持感知和协调稳定性因素的暴露史。
J Nerv Ment Dis. 1961 Jan;132:26-32.
7
Perceptual and cognitive spatial learning.感知与认知空间学习。
J Exp Psychol Hum Percept Perform. 1993 Jun;19(3):517-30. doi: 10.1037//0096-1523.19.3.517.
8
The coordination of eye, head, and arm movements during reaching at a single visual target.在伸手去够单个视觉目标时眼睛、头部和手臂运动的协调。
Exp Brain Res. 1982;46(2):301-4. doi: 10.1007/BF00237188.
9
Immediate perceptual response to intersensory discrepancy.对跨感觉差异的即时感知反应。
Psychol Bull. 1980 Nov;88(3):638-67.
10
Adaptation to lateral displacement of vision in patients with lesions of the central nervous system.中枢神经系统病变患者对视觉侧向位移的适应
Neurology. 1983 Jun;33(6):766-72. doi: 10.1212/wnl.33.6.766.