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田原纯:现代心脏病学之父。

Sunao Tawara: a father of modern cardiology.

作者信息

Suma K

机构信息

International Society of Cardio-Thoracic Surgeons, 17-10, Nishikata 1-chome, Bunkyo-ku, Tokyo 113-0024, Japan.

出版信息

Pacing Clin Electrophysiol. 2001 Jan;24(1):88-96. doi: 10.1046/j.1460-9592.2001.00088.x.

Abstract

Knowledge of the conduction system of the heart was greatly advanced by Tawara's work carried out in Aschoff's laboratory in Marburg at the beginning of this century. In his monograph, The Conduction System of the Mammalian Heart, published in 1906, Tawara indicated that the treelike structure of specific muscle fibers comprising the atrioventricular node, His bundle, bundle branches, and Purkinje fibers served as the pathway for atrioventricular conduction of excitation in the mammalian heart. From his own anatomic and histological findings of the conduction system, he assumed precisely that the conduction velocity of excitation in the system, except in the atrioventricular node, would be fast and that contraction as the result of excitation would take place at the various sites of the ventricles almost simultaneously. According to Tawara, a long pathway to each contracting unit and a fast conduction velocity of excitation would be a prerequisite for the effective contraction of the ventricles. Tawara's findings and assumptions provided Einthoven the theoretical basis for interpreting the electrocardiogram, resulting in rapid popularization of electrocardiography. This century has witnessed the rapid progress of cardiology, including cardiac pacing and its related sciences. This progress has its roots in the discovery of the conduction system and the development of electrocardiography that took place almost in the same period at the beginning of this century. Tawara's pioneering work on the conduction system still serves as an invaluable reference for basic and clinical research.

摘要

本世纪初,田原在马尔堡的阿绍夫实验室开展的研究极大地推动了人们对心脏传导系统的认识。在1906年发表的专著《哺乳动物心脏的传导系统》中,田原指出,由房室结、希氏束、束支和浦肯野纤维组成的特殊肌纤维的树状结构,是哺乳动物心脏兴奋进行房室传导的途径。基于自己对传导系统的解剖学和组织学研究结果,他准确地推测,除房室结外,该系统中兴奋的传导速度会很快,并且兴奋引发的收缩将几乎同时在心室的各个部位发生。按照田原的说法,通向每个收缩单元的长传导路径以及兴奋的快速传导速度,是心室有效收缩的先决条件。田原的研究结果和推测为艾因托芬解释心电图提供了理论基础,使得心电图检查迅速普及。本世纪见证了心脏病学的飞速发展,包括心脏起搏及其相关学科。这一进展源于本世纪初几乎同时出现的传导系统的发现和心电图检查技术的发展。田原在传导系统方面的开创性工作,至今仍是基础研究和临床研究的宝贵参考。

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