De Troyer A, Ninane V
J Appl Physiol (1985). 1986 Jan;60(1):14-21. doi: 10.1152/jappl.1986.60.1.14.
The isolated action, pattern of neural activation, and mechanical contribution to eupnea of the triangularis sterni (transversus thoracis) muscle were studied in supine anesthetized dogs. Linear displacement transducers were used to measure the axial displacements of the ribs and sternum. Tetanic stimulation of the triangularis sterni in the apneic animal caused a marked caudal displacement of the ribs, a moderate cranial displacement of the sternum, and a decrease in lung volume. During quiet breathing, there was invariably a rhythmic activation of the muscle in phase with expiration that was independent of the presence or absence of activity in the abdominal and internal interosseous intercostal muscles. This phasic expiratory activity in the triangularis sterni was of large amplitude and caused the ribs to be more caudal and the sternum to be more cranial during the spontaneous expiratory pause than during relaxation. Additional studies on awake animals showed that rhythmic activation of the triangularis sterni occurs in all body positions and is not caused by anesthesia. These findings indicate that expiration in the dog is not a passive process and that the end-expiratory volume of the rib cage is not determined by an equilibrium of static forces alone. Rather, it is actively determined and maintained below its relaxation volume by contraction of the triangularis sterni throughout expiration. The use of this muscle is likely to facilitate inspiration by increasing the length of the parasternal intercostals and taking on a portion of their work.
在仰卧麻醉的犬身上研究了胸骨三角肌(胸横肌)的孤立作用、神经激活模式及其对平静呼吸的机械贡献。使用线性位移传感器测量肋骨和胸骨的轴向位移。在呼吸暂停的动物中,对胸骨三角肌进行强直刺激会导致肋骨明显向尾侧移位、胸骨适度向头侧移位以及肺容积减小。在安静呼吸期间,该肌肉始终会在呼气时出现有节奏的激活,且这种激活与腹部和骨间内肋间肌是否有活动无关。胸骨三角肌的这种阶段性呼气活动幅度较大,导致在自发性呼气暂停期间肋骨比放松时更靠尾侧,胸骨比放松时更靠头侧。对清醒动物的进一步研究表明,胸骨三角肌的有节奏激活在所有体位下都会发生,并非由麻醉引起。这些发现表明,犬的呼气不是一个被动过程,胸廓的呼气末容积并非仅由静力平衡决定。相反,在整个呼气过程中,胸骨三角肌的收缩会主动决定并将胸廓容积维持在其松弛容积以下。使用这块肌肉可能通过增加胸骨旁肋间肌的长度并承担其一部分工作来促进吸气。