首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Navigated transcranial magnetic stimulation of the primary somatosensory cortex impairs perceptual processing of tactile temporal discrimination.
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Navigated transcranial magnetic stimulation of the primary somatosensory cortex impairs perceptual processing of tactile temporal discrimination.

机译:导航的经颅磁刺激的主要体感皮层损害了触觉时间辨别的知觉处理。

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摘要

Previous studies indicate that transcranial magnetic stimulation (TMS) with biphasic pulses applied approximately over the primary somatosensory cortex (S1) suppresses performance in vibrotactile temporal discrimination tasks; these previous results, however, do not allow separating perceptual influence from memory or decision-making. Moreover, earlier studies using external landmarks for directing biphasic TMS pulses to the cortex do not reveal whether the changes in vibrotactile task performance were due to action on S1 or an adjacent area. In the present study, we determined whether the S1 area representing a cutaneous test site is critical for perceptual processing of tactile temporal discrimination. Electrical test pulses were applied to the thenar skin of the hand and the subjects attempted to discriminate single from twin pulses. During discrimination task, monophasic TMS pulses or sham TMS pulses were directed anatomically accurately to the S1 area representing the thenar using magnetic resonance image-guided navigation. The subject's capacity to temporal discrimination was impaired with a decrease in the delay between the TMS pulse and the cutaneous test pulse from 50 to 0 ms. The result indicates that S1 area representing a cutaneous test site is involved in perceptual processing of tactile temporal discrimination.
机译:先前的研究表明,大约在初级体感皮层(S1)上施加双相脉冲的经颅磁刺激(TMS)会抑制触觉性时间辨别任务的表现。但是,这些先前的结果不允许将感性影响与记忆或决策分开。而且,较早的研究使用外部界标将双相TMS脉冲引导至皮层,并未揭示触觉任务性能的变化是由于作用于S1还是邻近区域。在本研究中,我们确定了代表皮肤测试部位的S1区域是否对感知的触觉时间分辨力处理至关重要。将电测试脉冲施加到手的鼻甲皮肤上,受试者试图将单个脉冲与两个脉冲区分开。在判别任务期间,使用磁共振图像引导导航将单相TMS脉冲或深TMS脉冲在解剖学上精确地定向到代表thenar的S1区域。 TMS脉冲与皮肤测试脉冲之间的延迟从50毫秒降低到0毫秒,从而削弱了受试者的时间辨别能力。结果表明,代表皮肤测试部位的S1区域参与了触觉时间辨别的感知处理。

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