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首页> 外文期刊>Journal of Neuroscience Methods >A novel device for the study of somatosensory information processing
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A novel device for the study of somatosensory information processing

机译:用于研究体感信息处理的新型设备

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Current methods for applying multi-site vibratory stimuli to the skin typically involve the use of multiple, individual vibrotactile stimulators. Limitations of such an arrangement include difficulty with both positioning the stimuli as well as ensuring that stimuli are delivered in a synchronized and deliberate manner. Previously, we reported a two-site tactile stimulator that was developed in order to solve these problems (Tannan et al., 2007a). Due to both the success of that novel stimulator and the limitations that were inherent in that device, we designed and fabricated a four-site stimulator that provides a number of advantages over the previous version. First, the device can stimulate four independent skin sites and is primarily designed for stimulating the digit tips. Second, the positioning of the probe tips has been re-designed to provide better ergonomic hand placement. Third, the device is much more portable than the previously reported stimulator. Fourth, the stimulator head has a much smaller footprint on the table or surface where it resides. To demonstrate the capacity of the device for delivering tactile stimulation at four independent sites, a finger agnosia protocol, in the presence and absence of conditioning stimuli, was conducted on seventeen healthy control subjects. The study demonstrated that with increasing amplitudes of vibrotactile conditioning stimuli concurrent with the agnosia test, inaccuracies of digit identification increased, particularly at digits D3 and D4. The results are consistent with prior studies that implicated synchronization of adjacent and near-adjacent cortical ensembles with conditioning stimuli in impacting TOJ performance (Tommerdahl et al., 2007a,b).
机译:当前向皮肤施加多部位振动刺激的方法通常包括使用多个单独的振动触觉刺激器。这种布置的局限性包括难以定位刺激以及难以确保以同步且有意的方式递送刺激。以前,我们曾报道过开发一种用于解决这些问题的两点式触觉刺激器(Tannan等,2007a)。由于这种新型刺激器的成功以及该设备固有的局限性,我们设计并制造了一种四点刺激器,与以前的版本相比,它具有许多优势。首先,该设备可以刺激四个独立的皮肤部位,并且主要用于刺激指尖。其次,对探针尖端的位置进行了重新设计,以提供更好的人体工程学手部位置。第三,该设备比以前报道的刺激器更便携。第四,刺激器头部在其所驻留的桌子或表面上的占地面积要小得多。为了证明该装置在四个独立位置上传递触觉刺激的能力,在有和没有条件刺激的情况下,对十七名健康对照受试者进行了手指无知方案。该研究表明,随着触觉适应性刺激幅度的增加,同时也伴随着失认测试,手指识别的不准确性增加,尤其是在手指D3和D4处。该结果与先前的研究相一致,该研究暗示相邻的和接近的皮质集合与条件刺激的同步影响TOJ的表现(Tommerdahl等,2007a,b)。

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