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首页> 外文期刊>Journal of neural engineering >Characterization of evoked tactile sensation in forearm amputees with transcutaneous electrical nerve stimulation
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Characterization of evoked tactile sensation in forearm amputees with transcutaneous electrical nerve stimulation

机译:经皮电神经刺激对前臂截肢者诱发触觉的表征

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摘要

Objective. The goal of this study is to characterize the phenomenon of evoked tactile sensation (ETS) on the stump skin of forearm amputees using transcutaneous electrical nerve stimulation (TENS). Approach. We identified the projected finger map (PFM) of ETS on the stump skin in 11 forearm amputees, and compared perceptual attributes of the ETS in nine forearm amputees and eight able-bodied subjects using TENS. The profile of perceptual thresholds at the most sensitive points (MSPs) in each finger-projected area was obtained by modulating current amplitude, pulse width, and frequency of the biphasic, rectangular current stimulus. The long-term stability of the PFM and the perceptual threshold of the ETS were monitored in five forearm amputees for a period of 11 months. Main results. Five finger-specific projection areas can be independently identified on the stump skin of forearm amputees with a relatively long residual stump length. The shape of the PFM was progressively similar to that of the hand with more distal amputation. Similar sensory modalities of touch, pressure, buzz, vibration, and numb below pain sensation could be evoked both in the PFM of the stump skin of amputees and in the normal skin of able-bodied subjects. Sensory thresholds in the normal skin of able-bodied subjects were generally lower than those in the stump skin of forearm amputees, however, both were linearly modulated by current amplitude and pulse width. The variation of the MSPs in the PFM was confined to a small elliptical area with 95% confidence. The perceptual thresholds of thumb-projected areas were found to vary less than 0.99 × 10~(-2) mA cm~(-2). Significance. The stable PFM and sensory thresholds of ETS are desirable for a non-invasive neural interface that can feed back finger-specific tactile information from the prosthetic hand to forearm amputees.
机译:目的。这项研究的目的是使用经皮神经电刺激(TENS)来表征前臂截肢者残端皮肤上的诱发触觉(ETS)现象。方法。我们确定了11名前臂截肢者树桩皮肤上ETS的投影手指图(PFM),并使用TENS比较了9名前臂截肢者和8名身体健全的受试者中ETS的感知属性。通过调节双相矩形电流刺激的电流幅度,脉冲宽度和频率,可以获得每个手指投影区域中最敏感点(MSP)的感知阈值的轮廓。在五个前臂截肢者中监测PFM的长期稳定性和ETS的感知阈值,持续11个月。主要结果。可以在前肢截肢者的残肢皮肤上独立识别五个手指特定的投影区域,残肢残端的长度相对较长。 PFM的形状逐渐类似于截肢较多的手的形状。在被截肢者的残端皮肤的PFM和身体健全的受试者的正常皮肤中均可引起类似的触觉,压力,嗡嗡声,振动和疼痛感以下的麻木感官模式。身体健全的受试者的正常皮肤中的感觉阈值通常低于前臂截肢者的残端皮肤中的感觉阈值,但是,两者均受电流幅度和脉冲宽度的线性调节。 PFM中MSP的变化被限制在一个较小的椭圆区域,置信度为95%。拇指投影区域的感知阈值变化小于0.99×10〜(-2)mA cm〜(-2)。意义。 ETS的稳定PFM和感觉阈值对于非侵入性神经接口是理想的,该接口可以将手指特定的触觉信息从假手反馈到前臂截肢者。

著录项

  • 来源
    《Journal of neural engineering 》 |2015年第6期| 066002.1-066002.13| 共13页
  • 作者单位

    Institute of Rehabilitation Engineering, Med-X Research Institute, School of Biomcdical Engineering at Shanghai Jiao Tong University, Shanghai 200030, People's Republic of China;

    Institute of Rehabilitation Engineering, Med-X Research Institute, School of Biomcdical Engineering at Shanghai Jiao Tong University, Shanghai 200030, People's Republic of China;

    Institute of Rehabilitation Engineering, Med-X Research Institute, School of Biomcdical Engineering at Shanghai Jiao Tong University, Shanghai 200030, People's Republic of China;

    Shanghai Liankang Prosthetics and Orthotics Manufacturing Co. Ltd, Shanghai 200127, People's Republic of China;

    Institute of Rehabilitation Engineering, Med-X Research Institute, School of Biomcdical Engineering at Shanghai Jiao Tong University, Shanghai 200030, People's Republic of China;

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  • 正文语种 eng
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  • 关键词

    evoked tactile sensation (ETS); transcutaneous electrical nerve stimulation (TENS); neural interface; sensory feedback; prosthetic hand; perceptual threshold; sensory modality;

    机译:诱发触觉(ETS);经皮电神经刺激(TENS);神经接口感觉反馈;假手知觉阈值;感觉模态;

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