Sunagawa Kenji
Center for Disruptive Cardiovascular Medicine, Kyushu University, 3-1-1 Maidashi, Higashiku, Fukuoka, 8128582, Japan.
J Physiol Sci. 2017 Jul;67(4):447-458. doi: 10.1007/s12576-017-0533-0. Epub 2017 Mar 27.
Guyton's most significant contributions are the exploration into the development of venous return and circulatory equilibrium. Recently, several physiologists challenged the validity of venous return as a function of venous pressure. Guyton's experiment in effect controlled venous pressure by changing cardiac output. Thus, critics claimed that cardiac output is the determinant of venous return. This claim is true, but in the presence of constant stressed volume, venous return and venous pressure have a fixed reciprocal relationship. Thus, it is meaningless to argue which one is the independent variable. We fully support Guyton's venous return and in particular circulatory equilibrium. Guyton's framework should be taught at medical schools worldwide.
盖顿最重要的贡献是对静脉回流和循环平衡发展的探索。最近,几位生理学家对静脉回流作为静脉压力函数的有效性提出了质疑。盖顿的实验实际上是通过改变心输出量来控制静脉压力的。因此,批评者声称心输出量是静脉回流的决定因素。这种说法是正确的,但在应激容量恒定的情况下,静脉回流和静脉压力具有固定的反比关系。因此,争论哪一个是自变量是没有意义的。我们完全支持盖顿的静脉回流理论,尤其是循环平衡理论。盖顿的理论框架应该在全球的医学院校进行教授。