Sinderby C, Ingvarsson P, Sullivan L, Wickström I, Lindström L
Department of Neurosurgery, Sahlgrenska Hospital, Gothenburg, Sweden.
Paraplegia. 1992 Jun;30(6):389-95. doi: 10.1038/sc.1992.88.
Interest has been focused on the diaphragm as the all important respiratory muscle in tetraplegia for decades but its unique role as a trunk extension muscle has not been considered. This study set out to establish the relationship, if any, between the roles of the diaphragm during arm exercise and trunk flexion. Eight male complete cervical cord injuries (CCI) patients, sitting in their wheelchairs, were studied during rest, trunk flexion and start of arm cranking. The average flow, volume, oesophageal and gastric pressures (Poes and Pga) and the myoelectric activity of the diaphragm (EMGdi) were recorded. The EMGdi pattern changed from phasic activity at rest to continuous or almost continuous activity during trunk flexion. Patients were then either spontaneously holding their breath or breathing irregularly with rapid or shallow breaths. Also, the normalised EMGdi signal strength increased by an average of 150% and the mean Pga by about 3 kPa, while mean Poes decreased by about 0.5 kPa. At the start of exercise, patients with poor triceps function, less than MRC grade 3, exhibited similar ventilatory and EMGdi changes as had been seen in trunk flexion. In patients with better triceps function, only minor changes in these variables were observed. The findings suggest that the diaphragm acts both as a trunk extensor muscle and a respiratory muscle. During posture imbalance, the postural needs temporarily override the respiratory needs.
几十年来,膈肌一直被视为四肢瘫痪中至关重要的呼吸肌,但它作为躯干伸展肌的独特作用却未被考虑。本研究旨在确定膈肌在手臂运动和躯干屈曲过程中的作用之间是否存在关联(若有)。对八名坐在轮椅上的男性完全性颈髓损伤(CCI)患者在休息、躯干屈曲和开始手摇曲柄运动时进行了研究。记录了平均流量、容积、食管和胃内压力(Poes和Pga)以及膈肌的肌电活动(EMGdi)。EMGdi模式从休息时的阶段性活动转变为躯干屈曲时的持续性或几乎持续性活动。此时患者要么自主屏气,要么呼吸不规律,呼吸急促或浅弱。此外,标准化的EMGdi信号强度平均增加了150%,平均Pga增加了约3 kPa,而平均Poes降低了约0.5 kPa。在运动开始时,三头肌功能较差(低于医学研究委员会(MRC)3级)的患者表现出与躯干屈曲时类似的通气和EMGdi变化。在三头肌功能较好的患者中,这些变量仅出现轻微变化。研究结果表明,膈肌既作为躯干伸展肌,又作为呼吸肌发挥作用。在姿势失衡期间,姿势需求会暂时压倒呼吸需求。