Motor point heatmap guide for neuromuscular electrical stimulation of the quadriceps muscle

IF 2 4区 医学 Q3 NEUROSCIENCES Journal of Electromyography and Kinesiology Pub Date : 2023-06-01 DOI:10.1016/j.jelekin.2023.102771
J. Flodin , R. Juthberg , PW. Ackermann
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Abstract

Purpose

To create an anatomical chart that indicates the probability of finding a motor point (MP) in different areas of the quadriceps muscle.

Methods

On 31 healthy adults, the individual anatomy of the vastus medialis (VM), rectus femoris (RF) and vastus lateralis (VL) was determined using ultrasound. Thereafter, a 3 Hz neuromuscular electrical stimulation (NMES) MP-search with a MP-pen was performed. The thigh anatomy was normalized and divided into 112 (8x14) 3x3cm areas, and the probability of finding a MP in the different areas was calculated to create a MP heat-map.

Results

The heat-map displayed the two best 3x3cm areas, over VL and VM respectively, each with a probability greater than 50% of finding a MP and a higher probability compared to all other areas (p <.05). RF exhibited two areas with a 29% probability of finding a MP. A higher number of MPs on the quadriceps, mean (±SD) 9.4 ± 1, was in regression analysis found to be significantly associated with two independent factors higher physical activity level and lower body fat (R2 = 0.42, p=<.0001).

Conclusion

Large inter-individual variations in location, and number of MPs were found, but the heat-map displayed areas with higher probability of finding a MP and can be used to facilitate NMES-application.

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用于股四头肌神经肌肉电刺激的运动点热图指南
目的创建一个解剖图,显示在股四头肌不同区域找到运动点的概率。方法对31例健康成人的股内侧肌(VM)、股直肌(RF)和股外侧肌(VL)进行超声个体解剖。此后,用MP笔进行3Hz神经肌肉电刺激(NMES)MP搜索。对大腿解剖结构进行归一化,并将其划分为112(8x14)个3x3cm区域,并计算在不同区域中发现MP的概率,以创建MP热图。结果热图分别显示了VL和VM上的两个最佳3x3cm区,每个区域发现MP的概率大于50%,与所有其他区域相比概率更高(p<;.05)。RF有两个区域发现MP概率为29%。股四头肌上的MP数量更高,平均值(±SD)9.4±1,在回归分析中发现与两个独立因素显著相关——较高的体力活动水平和较低的体脂(R2=0.42,p=<;.0001)。结论发现MP的位置和数量存在较大的个体间差异,但热图显示发现MP的概率较高的区域,可用于促进NMES的应用。
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来源期刊
CiteScore
4.70
自引率
8.00%
发文量
70
审稿时长
74 days
期刊介绍: Journal of Electromyography & Kinesiology is the primary source for outstanding original articles on the study of human movement from muscle contraction via its motor units and sensory system to integrated motion through mechanical and electrical detection techniques. As the official publication of the International Society of Electrophysiology and Kinesiology, the journal is dedicated to publishing the best work in all areas of electromyography and kinesiology, including: control of movement, muscle fatigue, muscle and nerve properties, joint biomechanics and electrical stimulation. Applications in rehabilitation, sports & exercise, motion analysis, ergonomics, alternative & complimentary medicine, measures of human performance and technical articles on electromyographic signal processing are welcome.
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