Huntsman L L, Rondinone J F, Martyn D A
Am J Physiol. 1983 May;244(5):H701-7. doi: 10.1152/ajpheart.1983.244.5.H701.
Using a new technique that measures the length of a segment in the central region of isolated papillaries, we have determined the force-segment length relation for ferret papillary muscles at 27 degrees C. The muscles contracted under muscle length isometric (auxotonic) and segment isometric conditions in physiological solutions containing 9.0, 4.5, 2.25, and 1.125 mM Ca2+. Force-segment length relations obtained from auxotonic and segment isometric contractions were identical in a given Ca2+ concentration. Calcium variations, however, changed the position, shape, and segment length intercept of the force-segment length relation. Force, at a given segment length, increased with increasing Ca2+ up to 9.0 mM Ca2+. The force-segment length relation changed shape from linear, in 4.5 mM Ca2+, to concave in 1.125 mM Ca2+. The segment length intercept was found by extrapolation to be 68, 69, and 74% SLmax in 4.5, 2.25, and 1.125 mM Ca2+, respectively. Two passive force corrections were used to calculate the developed force-segment length relations. Assuming passive force to be related primarily to segment length yields curves that change shape with Ca2+ concentration, suggesting length-dependent activation. On the other hand, assuming passive force to be related to muscle length results in curves for different Ca2+ concentrations that are nearly vertically shifted versions of each other, suggesting the influence of internal loads.
我们采用一种测量离体乳头肌中央区域节段长度的新技术,测定了27摄氏度下雪貂乳头肌的力-节段长度关系。在含有9.0、4.5、2.25和1.125 mM钙离子的生理溶液中,肌肉在肌肉长度等长(辅助等张)和节段等长条件下收缩。在给定的钙离子浓度下,从辅助等张收缩和节段等长收缩获得的力-节段长度关系是相同的。然而,钙离子浓度的变化改变了力-节段长度关系的位置、形状和节段长度截距。在给定的节段长度下,力随着钙离子浓度增加到9.0 mM而增加。力-节段长度关系的形状从4.5 mM钙离子时的线性变为1.125 mM钙离子时的凹形。通过外推法发现,在4.5、2.25和1.125 mM钙离子条件下,节段长度截距分别为最大节段长度(SLmax)的68%、69%和74%。使用两种被动张力校正来计算力-节段长度关系。假设被动张力主要与节段长度相关,得到的曲线形状会随钙离子浓度变化,这表明存在长度依赖性激活。另一方面,假设被动张力与肌肉长度相关,则不同钙离子浓度下的曲线几乎是彼此垂直移动的版本,这表明存在内部负荷的影响。