Nasimova Mohigul, Khadka Niranjan, Bikson Marom
Department of Biomedical Engineering, The City College of New York, NY, United States of America.
Department of Biomedical Engineering, Boston University, Boston, MA, United States of America.
Biomed Phys Eng Express. 2025 Mar 21;11(3). doi: 10.1088/2057-1976/adbf9d.
Transcutaneous Electrical Nerve Stimulation (TENS) to the lower back is an established electrical therapy for acute and chronic back pain. The efficacy and mechanisms of lower back TENS depend on the penetration depth of electrical current. We compare the intensity and spatial extent (depth) of current flow in the body during TENS with varied electrode positions/shapes on the human back.A high-resolution MRI-derived anatomical model of the back was developed, considering major tissue compartments, including skin and muscles. TENS with upper and lower back electrode positions and varied electrode shapes (square, circular, rectangular) were simulated. An exemplary 50 mA current was applied under quasistatic approximation and quasi-uniform electric field assumption of 6.15 V m(low), 12.3 V m(mid), and 24.6 V m(high) neuromuscular activation thresholds were considered.Under all simulated TENS conditions (50 mA), electric fields at the skin exceed the high threshold (consistent with peripheral nerve activation) and at least some muscle regions exceed the mid threshold. Muscle activation was influenced by the anatomy of muscle in the medial-lateral direction and upper-lower back. The electrode shape had minimal effect on deep tissue current penetration.Our simulations indicate significant current penetration into back tissue (electric fields above low threshold) to >8 cm in all TENS conditions simulated, consistent with nerve and muscle activation.Anatomically precise models of upper and lower back TENS show current penetration to deep muscle, supporting direct muscle stimulation driving clinical benefits.
经皮电刺激神经疗法(TENS)作用于下背部是一种针对急慢性背痛的成熟电疗法。下背部TENS的疗效和机制取决于电流的穿透深度。我们比较了在TENS过程中,人体背部不同电极位置/形状下电流在体内的强度和空间范围(深度)。考虑到包括皮肤和肌肉在内的主要组织部分,建立了一个基于高分辨率MRI的背部解剖模型。模拟了上背部和下背部电极位置以及不同电极形状(方形、圆形、矩形)的TENS情况。在准静态近似和6.15 V/m(低)、12.3 V/m(中)和24.6 V/m(高)神经肌肉激活阈值的准均匀电场假设下,施加了50 mA的典型电流。在所有模拟的TENS条件(50 mA)下,皮肤处的电场超过高阈值(与周围神经激活一致),并且至少一些肌肉区域超过中阈值。肌肉激活受内侧-外侧方向和上-下背部肌肉解剖结构的影响。电极形状对深层组织电流穿透的影响最小。我们的模拟表明,在所有模拟的TENS条件下,电流都能显著穿透背部组织(电场高于低阈值),深度超过8厘米,这与神经和肌肉激活一致。上背部和下背部TENS的解剖学精确模型显示电流可穿透深层肌肉,支持直接肌肉刺激带来临床益处。