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表皮内电刺激期间伤害性小纤维的选择性刺激:实验与计算分析。

Selective stimulation of nociceptive small fibers during intraepidermal electrical stimulation: Experiment and computational analysis.

作者信息

Niimi Yuki, Gomez-Tames Jose, Wasaka Toshiaki, Hirata Akimasa

机构信息

Department of Electrical and Mechanical Engineering, Nagoya Institute of Technology, Nagoya, Japan.

Center for Frontier Medical Engineering, Chiba University, Chiba, Japan.

出版信息

Front Neurosci. 2023 Jan 13;16:1045942. doi: 10.3389/fnins.2022.1045942. eCollection 2022.

Abstract

Electrical stimulation of skin nociceptors is gaining attention in pain research and peripheral neuropathy diagnosis. However, the optimal parameters for selective stimulation are still difficult to determine because they require simultaneous characterization of the electrical response of small fibers (Aδ- and C-fibers). In this study, we measured the electrical threshold responses of small fibers to train-pulse stimulation in humans for the first time. We also examined selective stimulation a computational model, which combines electrical analysis, and terminal fiber and synaptic models, including the first cutaneous pain C-fiber model. Selective stimulation of small fibers is performed by injecting train-pulse stimulation coaxial electrodes with an intraepidermal needle tip at varying pulse counts and frequencies. The activation Aδ- or C-fibers was discriminated from the differences in reaction time. Aδ-fiber elicited a pinpricking sensation with a mean reaction time of 0.522 s, and C-fiber elicited a tingling sensation or slight burning itch with a mean reaction time of 1.243 s. The implemented multiscale electrical model investigates synaptic effects while considering stimulation waveform characteristics. Experimental results showed that perception thresholds decreased with the number of consecutive pulses and frequency up to convergence (five pulses or 70 Hz) during the selective stimulation of Aδ- and C-fibers. Considering the synaptic properties, the optimal stimulus conditions for selective stimulation of Aδ- vs. C-fibers were train of at least four pulses and a frequency of 40-70 Hz at a pulse width of 1 ms. The experimental results were modeled with high fidelity by incorporating temporal synaptic effects into the computational model. Numerical analysis revealed terminal axon thickness to be the most important biophysical factor affecting threshold variability. The computational model can be used to estimate perception thresholds while understanding the mechanisms underlying the selective stimulation of small fibers. The parameters derived here are important in exploring selective stimulation between Aδ- and C-fibers for diagnosing neuropathies.

摘要

皮肤伤害感受器的电刺激在疼痛研究和周围神经病变诊断中越来越受到关注。然而,选择性刺激的最佳参数仍难以确定,因为这需要同时表征小纤维(Aδ纤维和C纤维)的电反应。在本研究中,我们首次测量了人体中小纤维对串脉冲刺激的电阈值反应。我们还通过一个计算模型研究了选择性刺激,该模型结合了电分析以及终末纤维和突触模型,包括首个皮肤痛觉C纤维模型。通过将串脉冲刺激注入带有表皮内针尖的同轴电极,以不同的脉冲数和频率来实现对小纤维的选择性刺激。根据反应时间的差异来区分Aδ纤维或C纤维的激活情况。Aδ纤维引发刺痛感,平均反应时间为0.522秒,C纤维引发麻刺感或轻微灼痒感,平均反应时间为1.243秒。所实施的多尺度电模型在考虑刺激波形特征的同时研究了突触效应。实验结果表明,在对Aδ纤维和C纤维进行选择性刺激时,感知阈值随着连续脉冲数和频率的增加而降低,直至达到收敛值(五个脉冲或70赫兹)。考虑到突触特性,选择性刺激Aδ纤维与C纤维的最佳刺激条件是至少四个脉冲的序列,频率为40 - 70赫兹且脉冲宽度为1毫秒。通过将时间突触效应纳入计算模型,实验结果得到了高保真度的模拟。数值分析表明,终末轴突厚度是影响阈值变异性的最重要生物物理因素。该计算模型可用于估计感知阈值,同时理解小纤维选择性刺激背后的机制。这里得出的参数对于探索Aδ纤维和C纤维之间的选择性刺激以诊断神经病变具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/951e/9880216/2c3e819a103c/fnins-16-1045942-g001.jpg

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