A framework for flow time measured by Doppler ultrasound.

IF 3.4 Q2 Medicine Ultrasound Journal Pub Date : 2025-01-21 DOI:10.1186/s13089-025-00414-8
Jon-Emile S Kenny
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Abstract

The duration of mechanical systole-also termed the flow time (FT) or left ventricular ejection time (LVET)-is measured by Doppler ultrasound and increasingly used as a stroke volume (SV) surrogate to guide patient care. Nevertheless, confusion exists as to the determinants of FT and a critical evaluation of this measure is needed. Using Doppler ultrasound of the left ventricular outflow tract velocity time integral (LVOT VTI) as well as strain and strain rate echocardiography as grounding principles, this brief commentary offers a model for the independent influences of FT. This framework establishes that systolic duration is directly proportional to the distance traversed by a single cardiac myocyte and indirectly proportional to its shortening velocity. Grossly, this translates to a direct relationship between FT and the LVOT VTI (i.e., SV) and an indirect relationship with mean ejection velocity. Thus, changes in the systolic time can infer SV change, so long as other cardiac parameters are considered.

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多普勒超声测量血流时间的框架。
机械收缩持续时间,也称为血流时间(FT)或左心室射血时间(LVET),是由多普勒超声测量的,并越来越多地用作中风量(SV)的替代指标来指导患者护理。然而,对于FT的决定因素存在混淆,需要对这一措施进行批判性评估。使用多普勒超声左心室流出道速度时间积分(LVOT VTI)以及应变和应变率超声心动图作为基础原则,本简短的评论提供了FT独立影响的模型。该框架建立了收缩持续时间与单个心肌细胞穿过的距离成正比,并间接与其缩短速度成正比。总的来说,这转化为FT与LVOT VTI(即SV)之间的直接关系,以及与平均弹射速度的间接关系。因此,只要考虑其他心脏参数,收缩时间的变化可以推断SV的变化。
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来源期刊
Ultrasound Journal
Ultrasound Journal Health Professions-Radiological and Ultrasound Technology
CiteScore
6.80
自引率
2.90%
发文量
45
审稿时长
22 weeks
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