The dynamic constants of human muscle

The dynamic constants of human muscle
复制标题

人体肌肉的动态常数

DOI:
10.1098/rspb.1940.0010
复制
发表时间:
1940
期刊:
Proceedings of the Royal Society of London. Series B - Biological Sciences
影响因子:
--
通讯作者:
A. Hill
A. Hill
中科院分区:
--
文献类型:
--
作者:
A. Hill

文献摘要

被引文献

相似文献

在最近的一篇论文(Hill 1938)中,一个孤立的肌肉在一个恒定的力作用下的缩短服从特征方程(P + a)(v + B)= a常数=(P0 + a)B,其中P是力,v是缩短速度,P0是完全等长张力,a和B是常数。在青蛙肌肉中,a/P0约为4,B(0 ℃)约为每秒肌肉长度的三分之一,温度系数约为2/10 ℃。该理论被应用于(Hill 1936 b)研究青蛙肌肉在不同速度下缩短的机械效率(功/总能量)。
In a recent paper (Hill 1938) the shortening of an isolated muscle against a constant force was shown to obey the characteristic equation (P + a) (v + b) = a constant = (P0 + a) b, Where P is force, v is velocity of shortening, P0 is the full isometric tension and a and b are constants. In frog’s muscle a/P0 was found to be about 4, and b (at 0°C) about one-third of the muscle length per second with a temperature coefficient of about 2 Per 10° C. The theory was applied (Hill 1936b) in a study of the mechanical efficiency (work/total energy) of frog’s muscle shortening at various speeds.