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人类精确抓握的发展。V. 突然加载过程中的预期和触发抓握动作。

Development of human precision grip. V. anticipatory and triggered grip actions during sudden loading.

作者信息

Eliasson A C, Forssberg H, Ikuta K, Apel I, Westling G, Johansson R

机构信息

Department of Woman and Child Health, Karolinska Institute, Stockholm, Sweden.

出版信息

Exp Brain Res. 1995;106(3):425-33. doi: 10.1007/BF00231065.

Abstract

When an object held by a precision gripis subjected to an abrupt vertical load perturbation, somatosensory input from the digits triggers an increase in grip force to restore an adequate safety margin, preventing frictional slips. In adults the response occurs after a latency of 60-80 ms. In the present study, children from 2 years old upward and adults grasped and lifted an object using a precision grip. Sudden, unpredicted increases in load force (tangential to the grip surfaces) were induced by the experimenter by dropping a small disc on to a receptacle attached to the object. The impact elicited a grip force response which in young children had a longer latency and a smaller amplitude than was seen in adults. The grip response latency gradually become shorter and its amplitude increased with increasing age, reaching adult values at 6-10 years. The muscle activity underlying the response could have several bursts. The adults showed one brisk response, appearing 40-50 ms after impact, in extrinsic and intrinsic hand muscles, while younger children also exhibited a short-latency burst, appearing about 20 ms after impact. It is suggested that the short-latency response was mediated via spinal pathways, and that these pathways are disengaged by supraspinal centers during development. In a predictable loading situation, when subjects dropped the disc themselves into the receptable using the contralateral hand, they changed strategy. Adults induced a well-timed anticipatory grip force increase prior to the impact that was scaled to the weight of the object. The youngest children did not time the force increase properly in relation to the impact. Yet, they could scale their anticipatory grip force increase with respect to the weight of the dropped disc. This suggests a well-developed capacity to use information about the weight of objects held by one hand to parameterize a programmed force output to the other hand.

摘要

当用精确抓握方式握住的物体受到突然的垂直负载扰动时,来自手指的体感输入会触发握力增加,以恢复足够的安全裕度,防止摩擦滑动。在成年人中,这种反应在60 - 80毫秒的潜伏期后出现。在本研究中,2岁及以上的儿童和成年人用精确抓握方式抓取并提起一个物体。实验者通过将一个小圆盘掉落到附着在物体上的容器上,引发负载力(与抓握表面相切)突然、不可预测的增加。这种冲击引发了握力反应,幼儿的握力反应潜伏期比成年人更长,幅度更小。握力反应潜伏期随着年龄增长逐渐变短,幅度逐渐增大,在6 - 10岁时达到成人水平。该反应背后的肌肉活动可能有几次爆发。成年人在冲击后40 - 50毫秒出现一次轻快的反应,在手的外在和内在肌肉中都有,而幼儿也表现出一个短潜伏期的爆发,在冲击后约20毫秒出现。有人认为,短潜伏期反应是通过脊髓通路介导的,并且这些通路在发育过程中被脊髓上中枢分离。在可预测的负载情况下,当受试者用对侧手将圆盘自己放入容器时,他们会改变策略。成年人在冲击前适时地引发预期的握力增加,其大小与物体重量成比例。最小的儿童在与冲击相关的时间上没有正确地增加力量。然而,他们能够根据掉落圆盘的重量来调整预期的握力增加。这表明他们具有良好的能力,能够利用一只手所握物体重量的信息来参数化向另一只手输出的程序化力量。

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