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首页> 外文期刊>Biomechanics and modeling in mechanobiology >A finite-element model of mechanosensation by a Pacinian corpuscle cluster in human skin
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A finite-element model of mechanosensation by a Pacinian corpuscle cluster in human skin

机译:人体皮肤中的滨莲菌群机组体的有限元模型

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摘要

The Pacinian corpuscle (PC) is the cutaneous mechanoreceptor responsible for sensation of high-frequency (20-1000 Hz) vibrations. PCs lie deep within the skin, often in multicorpuscle clusters with overlapping receptive fields. We developed a finite-element mechanical model of one or two PCs embedded within human skin, coupled to a multiphysics PC model to simulate action potentials elicited by each PC. A vibration was applied to the skin surface, and the resulting mechanical signal was analyzed using two metrics: the deformation amplitude ratio (, and the phase shift of the vibration (, between the stimulus and the PC. Our results showed that the amplitude attenuation and phase shift at a PC increased with distance from the stimulus to the PC. Differences in amplitude ( and phase shift ( between the two PCs in simulated clusters directly affected the interspike interval between the action potentials elicited by each PC (. While had a linear relationship with , 's effect on was greater for lower values of . In our simulations, the separation between PCs and the distance of each PC from the stimulus location resulted in differences in amplitude and phase shift at each PC that caused to vary with PC location. Our results suggest that PCs within a cluster receive different mechanical stimuli which may enhance source localization of vibrotactile stimuli, drawing parallels to sound localization in binaural hearing.
机译:Parinian Corpuscle(PC)是负责高频(20-1000 Hz)振动感应的皮肤机械电机。 PCS在皮肤内深入,通常在具有重叠接收领域的多式多数集群中。我们开发了一种嵌入在人体皮肤内的一个或两个PC的有限元机械模型,耦合到多体/ PC模型,以模拟每个PC引出的动作电位。将振动施加到皮肤表面,使用两个度量分析所得到的机械信号:变形幅度比(以及振动的相移(刺激和PC之间。我们的结果表明幅度衰减和振幅衰减PC的相移随着距离刺激到PC的距离而增加。幅度(和相移之间的两个PC之间的差异(在模拟群集中直接影响每个PC引发的动作电位之间的间隙间隔(虽然有一个线性关系)随着,对较低值的影响效果更大。在我们的模拟中,PC之间的分离与来自刺激位置的每个PC的距离导致每个PC的幅度和相移的差异,导致PC位置变化。我们的结果表明,集群内的PC接收不同的机械刺激,这可能会增强振动触觉刺激的源定位,将相似之处绘制到声音Localiz在双耳听证会上。

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