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18期胚胎鸡心脏的心肌内压力测量

Intramyocardial pressure measurements in the stage 18 embryonic chick heart.

作者信息

Chabert Steren, Taber Larry A

机构信息

Department of Biomedical Engineering, Washington University, St. Louis, Missouri 63130, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2002 Apr;282(4):H1248-54. doi: 10.1152/ajpheart.00364.2001.

Abstract

Intramyocardial pressure (IMP) and ventricular pressure (VP) were measured in the trabeculating heart of the stage 18 chick embryo (3 days of incubation). Pressure was measured at several locations across the ventricle using a fluid-filled servo-null system. Maximum systolic and minimum diastolic IMP tended to be greater in the dorsal wall than in the ventral wall, but transmural distributions of peak active (maximum minus minimum) IMP were similar in both walls. Peak active IMP near midwall was similar to peak active VP, but peak active IMP in the subepicardial and subendocardial layers was four to five times larger. These results suggest that the passive stiffness of the dorsal wall is greater than that of the ventral wall and that during contraction the inner and outer layers of both walls generate more contractile force and/or become less permeable to flow than the middle part of the wall. Measured pressures likely correspond to regional variations in wall stress that may influence morphogenesis and function in the embryonic heart.

摘要

在孵化3天的第18期鸡胚的小梁化心脏中测量心肌内压力(IMP)和心室压力(VP)。使用充满液体的伺服零系统在整个心室的多个位置测量压力。最大收缩期和最小舒张期IMP在背壁往往比腹壁更大,但两壁的峰值活动(最大减去最小)IMP的跨壁分布相似。中壁附近的峰值活动IMP与峰值活动VP相似,但心外膜下和心内膜下层的峰值活动IMP大四到五倍。这些结果表明,背壁的被动硬度大于腹壁,并且在收缩期间,两壁的内层和外层比壁的中间部分产生更多的收缩力和/或对血流的渗透性更低。测量的压力可能对应于壁应力的区域变化,这可能影响胚胎心脏的形态发生和功能。

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