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经皮电刺激神经疗法中脉冲宽度与激活深度之间的相互作用:一项计算研究。

The interplay between pulse width and activation depth in TENS: a computational study.

作者信息

Guillen Alexander, Truong Dennis Q, Cakmak Yusuf O, Li Sheng, Datta Abhishek

机构信息

Research and Development, Soterix Medical, Woodbridge, NJ, United States.

Department of Anatomy, University of Otago, Dunedin, New Zealand.

出版信息

Front Pain Res (Lausanne). 2025 Apr 17;6:1526277. doi: 10.3389/fpain.2025.1526277. eCollection 2025.

Abstract

BACKGROUND

Transcutaneous electrical nerve stimulation (TENS) has been a commonly used modality to relieve aches and pain for over 40 years. Commercially available devices provide multiple therapy modes involving a different combination of frequency and pulse width with intensity. While frequency sets sensation, intensity helps determine tolerability, longer pulse width is reported to induce a feeling of deeper stimulation. In fact, longer pulse width has been empirically shown to deliver current into deeper tissues, but in context of other electrical stimulation modalities. The goal of this study was to unpack the relationship between pulse width and activation depth in TENS.

METHODS

A highly realistic, anatomically-based, 3D finite element model of the forearm was used to simulate the electric field (E-field) distribution, as the pulse width is varied. A typical titration-guided mechanism was used to obtain the strength-duration (S-D) curves of a sensory McIntyre-Richardson-Grill (MRG) axonal model simulating the pain-transmitting A-delta fibers. The pulse widths tested ranged from 30 μs to 495 μs.

RESULTS

As expected, shorter pulse widths required more current to achieve activation, resulting in a larger E-field. The S-D curve of the target median nerve indicates a rheobase of 1.75 mA and a chronaxie of 232 µs. When the applied currents are the same, shorter pulse widths result in a smaller volume of tissue activated (VTA) compared to the longer pulse widths. A 21 fold difference in VTA was found between the longest and shortest pulse widths considered. For the conditions tested in the study, an increase in pulse width resulted in an increase in activation depth, exhibiting a linear relationship.

CONCLUSION

Our findings highlight the impact of pulse width on activation depth. While choice of a given therapy mode is usually based on an desirable sensation basis, medical professionals may consider advocating a certain therapy mode based on the depth of the intended target nerve.

摘要

背景

经皮电神经刺激(TENS)作为一种常用的缓解疼痛的方法已应用超过40年。市面上的设备提供多种治疗模式,涉及频率、脉冲宽度和强度的不同组合。频率决定感觉,强度有助于确定耐受性,据报道,较长的脉冲宽度会引起更深的刺激感。事实上,根据经验,较长的脉冲宽度已被证明能将电流传导至更深层的组织,但这是在其他电刺激模式的背景下。本研究的目的是剖析TENS中脉冲宽度与激活深度之间的关系。

方法

使用一个高度逼真的、基于解剖学的前臂三维有限元模型来模拟随着脉冲宽度变化的电场(E场)分布。采用典型的滴定引导机制来获取模拟痛觉传递Aδ纤维的感觉麦金太尔 - 理查森 - 格里尔(MRG)轴突模型的强度 - 时间(S - D)曲线。测试的脉冲宽度范围为30微秒至495微秒。

结果

正如预期的那样,较短的脉冲宽度需要更大的电流来实现激活,从而产生更大的E场。目标正中神经的S - D曲线表明基强度为1.75毫安,时值为232微秒。当施加的电流相同时,与较长脉冲宽度相比,较短脉冲宽度导致被激活的组织体积(VTA)更小。在所考虑的最长和最短脉冲宽度之间,VTA存在21倍的差异。对于本研究中测试的条件,脉冲宽度的增加导致激活深度增加,呈现出线性关系。

结论

我们的研究结果突出了脉冲宽度对激活深度的影响。虽然给定治疗模式的选择通常基于期望的感觉基础,但医学专业人员可能会考虑根据预期目标神经的深度来推荐某种治疗模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ddc/12043676/8006e6e14cc3/fpain-06-1526277-g001.jpg

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