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Motor-evoked potentials elicited from human erector spinae muscles by transcranial magnetic stimulation.

机译:经颅磁刺激从人竖立的脊柱肌中诱发出运动诱发电位。

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STUDY DESIGN: The compound muscle action potentials elicited from the erector spinae muscles by transcranial magnetic stimulation was studied in 15 healthy adults. OBJECTIVE: To describe the recording procedure for consistent compound muscle action potentials elicited from the human erector spinae by transcranial magnetic stimulation and to establish the normal latency ranges of the responses, at respective spinal levels, for the practical use of this test. SUMMARY OF BACKGROUND DATA: Although recording of the compound muscle action potentials from limb muscles after transcranial magnetic stimulation has been extensively studied, the use of the erector spinae as the target muscle has not, probably because of the difficulty of consistently evoking compound muscle action potentials. METHODS: Compound muscle action potentials from the erector spinae muscles were recorded with the subject prone during tonic voluntary background contraction of the back extensor muscles at approximately 20% of maximum effort. The compound muscle action potentials were recorded concurrently at multiple levels after magnetic stimulation to the brain with a round coil centered over the vertex. RESULTS: The onset and peak latencies (mean +/- SD) of the major negative potential increased progressively toward the caudal level from 13.4 +/- 2.2 msec and 17.6 +/- 2.2 msec at T5-T6 to 20.8 +/- 1.5 msec and 26.3 +/- 3.0 msec at L4-L5 in healthy subjects. The latencies changed significantly between two adjacent segments from T5-T6/T6-T7 through T12-L1/L1-L2. CONCLUSIONS: The compound muscle action potential was elicited from the voluntarily contracted erector spinae at all spinal levels from T5-T6 through L4-L5 in all subjects tested. This noninvasive test has potential for evaluating the functional integrity of the motor pathway in the thoracic spinal cord, the spinal nerves, or both.
机译:研究设计:在15位健康成年人中研究了经颅磁刺激从竖脊肌产生的复合肌肉动作电位。目的:描述经颅磁刺激从人竖脊肌激发出的一致的复合肌肉动作电位的记录程序,并建立在各个脊柱水平上反应的正常潜伏范围,以供该试验的实际使用。背景数据概述:尽管已经广泛研究了经颅磁刺激后肢体肌肉的复合肌肉动作电位的记录,但尚未将竖脊肌用作目标肌肉,这可能是因为难以持续激发复合肌肉动作电位。方法:在俯卧肌自发地进行背伸肌自愿性背景收缩的过程中,用最大力量的大约20%记录了竖脊肌的复合肌肉动作电位。在对大脑进行磁刺激后,同时以多个线圈集中在顶点上,同时记录了多个水平的复合肌肉动作电位。结果:主要负电位的起伏和峰值潜伏期(均值+/- SD)逐渐向尾水平增加,从T5-T6的13.4 +/- 2.2毫秒和17.6 +/- 2.2毫秒增加到20.8 +/- 1.5毫秒健康受试者在L4-L5时为26.3 +/- 3.0毫秒。从T5-T6 / T6-T7到T12-L1 / L1-L2,两个相邻线段之间的延迟发生了显着变化。结论:在所有测试的受试者中,从T5-T6到L4-L5的所有脊柱水平,自发收缩的竖脊肌都具有复合肌肉动作电位。这种非侵入性测试具有评估胸脊髓,脊髓神经或两者中运动路径功能完整性的潜力。

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