Department of Clinical Sciences and Advanced Medicine, School of Veterinary Medicine, University of Pennsylvania, 3900 Delancey St, Philadelphia PA, 19104, USA.
Department of Clinical Sciences and Advanced Medicine, School of Veterinary Medicine, University of Pennsylvania, 3900 Delancey St, Philadelphia PA, 19104, USA; Center for Clinical Epidemiology and Biostatistics, Perelman School of Medicine, University of Pennsylvania, 3400 Civic Center Blvd, Philadelphia PA, 19104, USA.
J Vet Cardiol. 2020 Aug;30:100-112. doi: 10.1016/j.jvc.2020.06.004. Epub 2020 Jul 4.
Cardiac structure and function in dogs are commonly assessed using echocardiography. A variety of linear, area, and flow-based measurements can be used to calculate left ventricular (LV) total stroke volume (TSV) and forward stroke volume (FSV), but the reproducibility of many of these measurements has not been fully studied. We hypothesized that survey of echocardiographic variables would identify those with high reproducibility and inform future investigation of different methods to measure LV TSV and FSV.
The reproducibility of 25 geometric and flow-based echocardiographic measurements was prospectively evaluated in 23 healthy dogs by two experienced observers. Reproducibility (i.e., interobserver agreement) was described using intraclass correlation coefficients. The reproducibility of various methods to calculate LV TSV and FSV was explored.
Reproducibility was generally good to excellent. Variables of LV width, length, and area and aortic and sinotubular junction diameter and velocity time integral were among measures with the highest reproducibility. Measurements of mitral annular diameter and mitral inflow velocity time integral possessed lower reproducibility. Calculation of LV TSV using measurements involved in the cube and bullet formulas demonstrated higher reproducibility than the Simpson's method of disks or mitral inflow methods. Calculation of LV FSV using LV outflow tract and aortic diameters from the right parasternal view generally demonstrated higher reproducibility compared with the left-sided view.
The reproducibility of many simple geometric and flow-based echocardiographic measurements is high. Comparison of the reliability of different measurement informs future investigation of echocardiographic methods to determine LV TSV and FSV in dogs.
犬的心脏结构和功能通常通过超声心动图进行评估。可以使用各种线性、面积和流量测量来计算左心室(LV)总搏出量(TSV)和前向搏出量(FSV),但这些测量中的许多的重复性尚未得到充分研究。我们假设,对超声心动图变量的调查将确定那些具有高重复性的变量,并为未来研究不同方法测量 LV TSV 和 FSV 提供信息。
通过两名有经验的观察者对 23 只健康犬进行了 25 种几何和流量的超声心动图测量的前瞻性重复性评估。使用组内相关系数描述重复性(即观察者间一致性)。探索了各种方法测量 LV TSV 和 FSV 的重复性。
重复性通常为好到极好。LV 宽度、长度和面积以及主动脉和窦管交界直径和速度时间积分等变量是具有最高重复性的测量之一。二尖瓣环直径和二尖瓣流入速度时间积分的测量重复性较低。使用方块和子弹公式中包含的测量值计算 LV TSV 的重复性高于 Simpson 磁盘法或二尖瓣流入法。使用右胸骨旁切面的 LV 流出道和主动脉直径计算 LV FSV 的重复性通常高于左胸骨旁切面。
许多简单的几何和流量的超声心动图测量的重复性较高。比较不同测量方法的可靠性,为未来研究确定犬的 LV TSV 和 FSV 的超声心动图方法提供信息。