Darling Warren G, Yem Joshua
Department of Health and Human Physiology, Motor Control Laboratory, University of Iowa, 225 S Grand Ave, Iowa City, IA 52242, United States.
Department of Health and Human Physiology, Motor Control Laboratory, University of Iowa, 225 S Grand Ave, Iowa City, IA 52242, United States.
Neuroscience. 2023 Apr 15;516:100-112. doi: 10.1016/j.neuroscience.2023.02.015. Epub 2023 Feb 24.
We accurately sense locations of objects touching various points on the body and, if they are irritants, make accurate rapid movements to remove them. Such movements require accurate proprioception of orientation and motion of the reaching limb and of the target. However, it is unknown whether acuity of these sensations is similar for different points on the body. We investigated accuracy of comfortable speed reaching movements of the right index-tip by 10 subjects (five females) to touch 12 different body locations with and without vision with the body part stationary in different locations and moving in different directions. Reaching movements to points on the face/head and trunk had mean errors averaging less than 0.2 cm greater than under vision conditions. Mean errors for reaches to touch points on the left arm and digits were less accurate (p < 0.05), but average less than 1 cm relative to vision conditions. Mean errors for reaches to touch points on the left lower limb were least accurate (p < 0.05), with mean errors averaging 1.5-3.1 cm relative to movements made with vision. We conclude that there is high proprioceptive acuity for locations of points on axial structures and the left upper limb including the digits, which contrasts with previous reports of greatly distorted proprioceptive maps of the face/head and hand. Apparently low proprioceptive acuity for points on the leg may be task sensitive as many lower limb motor tasks can be performed accurately without vision.
我们能够准确感知触碰身体各部位的物体位置,并且如果这些物体是刺激物,能做出准确快速的动作将其移除。此类动作需要对伸展肢体及目标的方位和运动有准确的本体感觉。然而,尚不清楚这些感觉的敏锐度在身体不同部位是否相似。我们让10名受试者(5名女性)在身体部位处于不同位置并沿不同方向移动时,在有视觉和无视觉的情况下,用右手食指尖以舒适速度进行伸展动作,触碰12个不同的身体部位。触碰面部/头部和躯干上各点的伸展动作的平均误差,比有视觉条件下平均大不到0.2厘米。触碰左臂和手指上各点的伸展动作误差相对不准确(p < 0.05),但相对于有视觉条件下平均不到1厘米。触碰左下肢上各点的伸展动作误差最不准确(p < 0.05),相对于有视觉时的动作,平均误差为1.5 - 3.1厘米。我们得出结论,轴向结构和包括手指在内的左上肢各点位置的本体感觉敏锐度较高,这与先前关于面部/头部和手部本体感觉图谱严重扭曲的报道形成对比。腿部各点明显较低的本体感觉敏锐度可能对任务敏感,因为许多下肢运动任务在无视觉情况下也能准确执行。