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Hand position-dependent modulation of errors in vibrotactile temporal order judgments: The effects of transcranial magnetic stimulation to the human posterior parietal cortex

机译:触觉时间顺序判断中手的位置依赖性调制误差:经颅磁刺激对人后顶叶皮层的影响

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The ability to decide which of the two stimuli is presented first can be probed using a temporal order judgment (TOJ) task. When the stimuli are delivered to the fingers, TOJ decisions can be confounded by the fact that the hands can be moved to different locations in space. How and where this confounded information is processed in the brain is poorly understood. In the present set of experiments, we addressed this knowledge gap by using single-pulse transcranial magnetic stimulation (TMS) to disrupt processing in the right or left posterior parietal cortex (PPC) during a vibrotactile TOJ task with stimuli applied to the right and left index fingers. In the first experiment, participants held their hands in an uncrossed configuration, and we found that when the index finger contralateral to the site of TMS was stimulated first, there was a significant increase in TOJ errors. This increase did not occur when stimuli were delivered to the ipsilateral finger first. In the second experiment, participants held their hands in a crossed configuration and the pattern of errors was reversed relative to the first experiment. In both the first two experiments, significant increases in TOJ error were present with TMS over either hemisphere, regardless of arm configuration; however, they were larger overall following TMS over the right PPC. Control experiments using sham TMS indicated the systematic modulation in error was not due to nonspecific effects of the stimulation. Additionally, we showed that these TMS-induced changes in TOJ errors were not due to a reduced ability to detect the timing of the vibrotactile stimuli. Taken together, these results demonstrate that both the right and left PPC contribute to the processing underlying vibrotactile TOJs by integrating vibrotactile information and proprioceptive information related to arm position in space.
机译:可以使用时间顺序判断(TOJ)任务来探究确定首先呈现两个刺激中的哪个刺激的能力。当刺激传递到手指上时,TOJ的决定可能会因手可以移动到空间中的不同位置而感到困惑。人们对如何在大脑中处理这些混杂的信息以及在何处进行了解甚少。在本组实验中,我们通过在经触觉性TOJ任务向左右施加刺激的情况下,使用单脉冲经颅磁刺激(TMS)破坏右或左后顶叶皮层(PPC)的处理,解决了这一知识鸿沟食指。在第一个实验中,参与者以双手交叉的姿势握住他们的手,我们发现当首先刺激与TMS部位对侧的食指时,TOJ错误显着增加。首先将刺激传递到同侧手指时,不会发生这种增加。在第二个实验中,参与者双手交叉摆放,错误模式相对于第一个实验相反。在前两个实验中,不管手臂的配置如何,TMS在任一半球的TOJ误差都显着增加。但是,在TMS之后,它们的总体规模要比正确的PPC大。使用假TMS的对照实验表明,系统的误差调节不是由于刺激的非特异性作用。此外,我们表明,这些TMS引起的TOJ错误的变化并不是由于检测到触觉刺激时间的能力降低所致。综上所述,这些结果表明,右PPC和左PPC都通过整合与空间中手臂位置相关的触觉信息和本体感受信息,对处理触觉TOJ做出了贡献。

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