Hada Y, Takenaka K, Ishimitsu T, Yamaguchi T, Amano K, Takahashi H, Takikawa R, Sakamoto T
J Am Coll Cardiol. 1983 Sep;2(3):445-51. doi: 10.1016/s0735-1097(83)80270-8.
To investigate the genesis of the initial low frequency component of the first heart sound that precedes the high frequency vibrations associated with closure of the atrioventricular valves, echophonocardiograms of 36 persons were recorded. These included 10 normal subjects and 26 patients with various types of heart disease including mitral valve replacement. Electrocardiograms demonstrated normal sinus rhythm in 23 subjects, atrial fibrillation in 9, complete atrioventricular block in 2 and atrial flutter in 2. In the phonocardiogram, the low frequency component of the first heart sound followed the onset of the QRS complex and preceded the first high frequency component of this sound. The low frequency component occurred simultaneously with the beginning of the final fast closing movement of the mitral valve on the echocardiogram and was found both in normal rhythm and in arrhythmias. However, in arrhythmias its intensity varied on a beat to beat basis, being loudest after a short RR interval or when atrial systole occurred very close to the expected time of ventricular systole. In patients in whom apexcardiograms were recorded, the low frequency component was coincident with or very close to the onset of ventricular systole. It is concluded that the low frequency component of the first heart sound represents vibrations caused by contraction of the left ventricle and deceleration of antegrade blood flow across the mitral valve. Neither atrial contraction nor mitral valve tension is necessary for the production of this soft initial component.
为了研究第一心音中与房室瓣关闭相关的高频振动之前的初始低频成分的起源,记录了36人的心音超声心动图。其中包括10名正常受试者和26名患有各种心脏病(包括二尖瓣置换术)的患者。心电图显示23名受试者为正常窦性心律,9名房颤,2名完全性房室传导阻滞,2名房扑。在心音图中,第一心音的低频成分跟随QRS波群的起始,并先于此声音的第一个高频成分出现。低频成分与超声心动图上二尖瓣最终快速关闭运动的开始同时出现,在正常心律和心律失常中均有发现。然而,在心律失常中,其强度逐搏变化,在短RR间期后或心房收缩非常接近心室收缩预期时间时最强。在记录了心尖搏动图的患者中,低频成分与心室收缩的开始一致或非常接近。得出的结论是,第一心音的低频成分代表由左心室收缩和二尖瓣前向血流减速引起的振动。产生这种柔和的初始成分既不需要心房收缩也不需要二尖瓣张力。