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日间经口神经肌肉刺激对上气道生理学的影响——一项基于机制的临床研究。

The impact of daytime transoral neuromuscular stimulation on upper airway physiology - A mechanistic clinical investigation.

机构信息

University of California, Division of Pulmonary, Critical Care, Sleep Medicine, and Physiology, La Jolla, California, USA.

VA San Diego, Division of Sleep Medicine, San Diego, California, USA.

出版信息

Physiol Rep. 2022 Jun;10(12):e15360. doi: 10.14814/phy2.15360.

Abstract

There is a need for alternatives to positive airway pressure for the treatment of obstructive sleep apnea and snoring. Improving upper airway dilator function might alleviate upper airway obstruction. We hypothesized that transoral neuromuscular stimulation would reduce upper airway collapse in concert with improvement in genioglossal muscle function. Subjects with simple snoring and mild OSA (AHI < 15/h on screening) underwent in-laboratory polysomnography with concurrent genioglossal electromyography (EMGgg) before and after 4-6 weeks of twice-daily transoral neuromuscular stimulation. Twenty patients completed the study: Sixteen males, mean ± SD age 40 ± 13 years, and BMI 26.3 ± 3.8 kg/m . Although there was no change in non-rapid eye movement EMGgg phasic (p = 0.66) or tonic activity (p = 0.83), and no decrease in snoring or flow limitation, treatment was associated with improvements in tongue endurance, sleep quality, and sleep efficiency. In this protocol, transoral neurostimulation did not result in changes in genioglossal activity or upper airway collapse, but other beneficial effects were noted suggesting a need for additional mechanistic investigation.

摘要

需要寻找替代正压通气的方法来治疗阻塞性睡眠呼吸暂停和打鼾。改善上气道扩张肌的功能可能会减轻上气道阻塞。我们假设经口神经肌肉刺激会改善颏舌肌功能,从而减轻上气道塌陷。单纯打鼾和轻度 OSA(筛查时 AHI<15/h)的受试者在接受经口神经肌肉刺激 4-6 周前后,进行了实验室多导睡眠图和颏舌肌肌电图(EMGgg)同步检测。20 例患者完成了研究:16 名男性,平均年龄为 40±13 岁,BMI 为 26.3±3.8kg/m2。尽管非快速眼动 EMGgg 相位(p=0.66)或紧张活动(p=0.83)没有变化,打鼾或气流受限也没有减少,但治疗与舌耐力、睡眠质量和睡眠效率的提高有关。在本方案中,经口神经刺激并没有导致颏舌肌活动或上气道塌陷的改变,但也注意到了其他有益的影响,这表明需要进一步的机制研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d17/9226850/6ef769112d47/PHY2-10-e15360-g003.jpg

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