Colino Francisco L, Binsted Gordon
a School of Health & Exercise Sciences, Faculty of Health & Social Development, The University of British Columbia , Kelowna , Canada.
J Mot Behav. 2016 Sep-Oct;48(5):390-400. doi: 10.1080/00222895.2015.1113917. Epub 2016 Jun 2.
Humans' sensory systems are bombarded by myriad events every moment of our lives. Thus, it is crucial for sensory systems to choose and process critical sensory events deemed important for a given task and, indeed, those that affect survival. Tactile gating is well known, and defined as a reduced ability to detect and discriminate tactile events before and during movement. Also, different locations of the effector exhibit different magnitudes of sensitivity changes. The authors examined that time course of tactile gating in a reaching and grasping movement to characterize its behavior. Tactile stimulators were attached to the right and left mid-forearms and the right index finger and fifth digit. When participants performed reach-to-grasp and lift targets, tactile acuity decreased at the right forearm before movement onset (F. L. Colino, G. Buckingham, D. T. Cheng, P. van Donkelaar, & G. Binsted, 2014 ). However, tactile sensitivity at the right index finger decreased by nearly 20% contrary to expectations. This result reflecting that there may be an additional source acting to reduce inhibition related to tactile gating. Additionally, sensitivity improved as movement end approached. Collectively, the present results indicate that predictive and postdictive mechanisms strongly influence tactile gating.
在我们生命的每一刻,人类的感觉系统都会受到无数事件的冲击。因此,感觉系统选择和处理对特定任务至关重要、实际上对生存有影响的关键感觉事件至关重要。触觉门控是众所周知的,被定义为在运动之前和期间检测和区分触觉事件的能力降低。此外,效应器的不同位置表现出不同程度的敏感性变化。作者研究了在伸手抓握运动中触觉门控的时间进程,以表征其行为。触觉刺激器附着在左右前臂中部以及右手食指和小指上。当参与者执行伸手抓握并提起目标时,在运动开始前右前臂的触觉敏锐度下降(F.L. 科利诺、G. 白金汉、D.T. 程、P. 范·唐克拉尔和G. 宾斯特德,2014年)。然而,右手食指的触觉敏感度下降了近20%,与预期相反。这一结果表明可能存在另一个作用源来减少与触觉门控相关的抑制。此外,随着运动接近结束,敏感度提高。总体而言,目前的结果表明预测和后预测机制强烈影响触觉门控。