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首页> 外文期刊>Experimental Brain Research >Tactile motion aftereffects produced by appropriate presentation for mechanoreceptors.
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Tactile motion aftereffects produced by appropriate presentation for mechanoreceptors.

机译:通过对机械感受器的适当展示产生的触觉运动后效应。

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摘要

Tactile motion perception is one of the most important functions for realizing a delicate appreciation of the tactile world. To explore the neural dynamics of motion processing in the brain, the motion adaptation phenomenon can be a useful probe. Tactile motion aftereffects (MAE), however, have not been reported in a reproducible fashion, and the indistinctive outcomes of the previous studies can be ascribed to the non-optimal choice of adapting and testing stimuli. Considering the features of the stimuli used in the studies, the stimuli activated the different mechanoreceptors in the adapting and testing phase. Consequently, we tested tactile MAE using appropriate combinations of adapting and testing stimuli. We used three pins to generate sensation of apparent motion on the finger cushion. They were sequentially vibrated with the frequency of 30 Hz both in adapting and testing phases. It is expected that this procedure ensured stimulation for the same mechanoreceptor (Rapid-Adapting mechanoreceptor) in both the adaptation and test phases. Using this procedure, we found robust tactile MAEs in the various tactile motions such as the short-distance motion within the fingertip, the long-distance motion from the finger base to the fingertip, and the circular motion on the fingertip. Our development of a protocol that reliably produces tactile MAEs will provide a useful psychophysical probe into the neural mechanisms of tactile motion processing.
机译:触觉运动感知是实现对触觉世界的精致欣赏的最重要功能之一。为了探索大脑中运动处理的神经动力学,运动适应现象可能是有用的探针。然而,尚未以可再现的方式报道触觉运动后效应(MAE),并且先前研究的不明确结果可归因于适应和测试刺激的非最佳选择。考虑到研究中使用的刺激物的特征,刺激物在适应和测试阶段激活了不同的机械感受器。因此,我们使用适应和测试刺激的适当组合测试了触觉MAE。我们使用三个销钉在指垫上产生明显的运动感觉。在适应和测试阶段,它们都以30 Hz的频率依次振动。可以预期,该程序可确保在适应和测试阶段对相同的机械感受器(快速适应性机械感受器)进行刺激。使用此过程,我们在各种触觉运动(例如指尖内的短距离运动,从指根到指尖的长距离运动以及指尖上的圆周运动)中发现了坚固的触觉MAE。我们对可靠产生触觉MAE的协议的开发将为触觉运动处理的神经机制提供有用的心理物理学探查。

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