Omens J H, May K D, McCulloch A D
Department of Medicine, University of California, San Diego, La Jolla 92039.
Am J Physiol. 1991 Sep;261(3 Pt 2):H918-28. doi: 10.1152/ajpheart.1991.261.3.H918.
Three-dimensional myocardial strains in seven isolated, potassium-arrested dog hearts were measured by biplane radiography of 3 transmural columns of 4-6 radiopaque beads implanted in the midanterior left ventricular free wall. Transmural distributions of strain during inflation of a left ventricular balloon to 20-30 mmHg were computed with respect to the zero pressure state. Magnitudes of the 3 principal strains increased in proportion to ventricular volume (0.0088, 0.0037, and -0.0059 ml-1). At a left ventricular pressure of 8 +/- 4 mmHg, mean circumferential (E11) and longitudinal strains (E22) were similar, increasing from epicardium (0.058 +/- 0.055 and 0.036 +/- 0.024) to subendocardium (0.139 +/- 0.102 and 0.120 +/- 0.084) as did the transmural (wall thinning) strain E33 (-0.053 +/- 0.071 to -0.128 +/- 0.083). Negative in-plane shear E12 was small (-0.008 to -0.052), consistent with a left-handed torsion of the left ventricular wall. Mean transverse shear strains E13 and E23 were small (-0.029 to 0.007) but showed considerable variability between hearts. Fiber strain had no significant transmural variation (P = 0.57). The principal axis of greatest strain was close to the fiber orientation on the epicardium (-15 degrees) but closer to the cross-fiber direction near the endocardium (-40 degrees). Therefore, the end-diastolic fiber lengths are maximized on the epicardium and minimized on the endocardium.
通过对植入左心室前壁中部的4 - 6个不透射线珠子的3个透壁柱进行双平面射线照相,测量了7个离体钾停搏犬心脏的三维心肌应变。计算了左心室球囊充气至20 - 30 mmHg时相对于零压力状态的透壁应变分布。3个主应变的大小与心室容积成比例增加(0.0088、0.0037和 - 0.0059 ml-1)。在左心室压力为8±4 mmHg时,平均周向应变(E11)和纵向应变(E22)相似,从心外膜(0.058±0.055和0.036±0.024)到心内膜下(0.139±0.102和0.120±0.084)增加,透壁(壁变薄)应变E33也是如此(-0.053±0.071至 - 0.128±0.083)。平面内负剪切E12较小(-0.008至 - 0.052),与左心室壁的左旋扭转一致。平均横向剪切应变E13和E23较小(-0.029至0.007),但在不同心脏之间表现出相当大的变异性。纤维应变没有显著的透壁变化(P = 0.57)。最大应变的主轴在心外膜上接近纤维方向(-15度),但在心内膜附近更接近跨纤维方向(-40度)。因此,舒张末期纤维长度在心外膜上最大,在心内膜上最小。