Gicana Karlo Romano B, Pinidmontree Chirutchaya, Kosalathip Kitchanan, Sirirut Siraphop, Komolvanich Siripen, Asawakarn Sariya, Sakcamduang Walasinee, Naiyanetr Phornphop, Tachampa Kittipong
The International Graduate Program of Veterinary Science and Technology, Faculty of Veterinary Science, Chulalongkorn University, Bangkok, Thailand.
Department of Veterinary Clinical Sciences, College of Veterinary Medicine, University of the Philippines Los Baños, Laguna, Philippines.
Vet World. 2022 Jul;15(7):1785-1797. doi: 10.14202/vetworld.2022.1785-1797. Epub 2022 Jul 25.
Cardiac time intervals (CTIs) can provide important information on the electrical and mechanical properties of the heart. We hypothesized that cardiac function can be described using the combined power of electrocardiography (ECG) and phonocardiography (PCG) signals. This study aimed to (1) validate a novel custom device in measuring CTI parameters; (2) compare CTI parameters with a commercially available device and standard transthoracic echocardiography (STE); and (3) compare calculated systolic performance index (SPI) and myocardial performance index (MPI) with Tei index from the STE.
This study determined CTIs based on simultaneous ECG and PCG recordings in 14 healthy Beagle dogs using the custom-built device. These CTI parameters were compared with a commercially available device (Eko DUO ECG + Digital Stethoscope; Eko DUO) and the STE. Agreement of CTI parameters between the custom device and the commercially available device or STE was evaluated. Calculated SPI and MPI based on Wigger's diagram were proposed, compared with SPI and Tei index, and correlated with STE parameters.
We found that the ECG and PCG parameters measured from the custom-built device did not differ from the commercially available device and the STE. By combining ECG and PCG signals, we established CTI parameters in healthy dogs including indices for systolic function (SPI: QS1/S1S2) and global cardiac function {F1 ([QS1+S2]/S1S2), F2 ([RS1+S2]/S1S2), and F3 (RS1 + [QS2-QT]/S1S2)}. The SPI, F2, and F3 were comparable with echocardiographic parameters describing systolic (Pre-ejection period/left ventricular ejection time [LVET]) and Tei index ([MCOdur-LVET]/LVET), respectively. Only SPI and F3 were correlated significantly with MCOdur and heart rate, respectively.
We have validated the use of the custom-built device to describe CTIs that are comparable to the commercially available device and STE in healthy Beagles. The proposed SPI and MPI derived from CTI parameters can be useful in clinical practice to describe the cardiac function, especially in areas where access to STE is constrained.
心脏时间间期(CTIs)能够提供有关心脏电活动和机械特性的重要信息。我们推测,可利用心电图(ECG)和心音图(PCG)信号的综合力量来描述心脏功能。本研究旨在:(1)验证一种用于测量CTI参数的新型定制设备;(2)将CTI参数与市售设备及标准经胸超声心动图(STE)进行比较;(3)将计算得出的收缩期性能指数(SPI)和心肌性能指数(MPI)与STE的Tei指数进行比较。
本研究使用定制设备,基于14只健康比格犬同步记录的ECG和PCG来确定CTIs。将这些CTI参数与市售设备(Eko DUO ECG + 数字听诊器;Eko DUO)及STE进行比较。评估定制设备与市售设备或STE之间CTI参数的一致性。提出基于Wigger图计算的SPI和MPI,与SPI和Tei指数进行比较,并与STE参数进行相关性分析。
我们发现,从定制设备测得的ECG和PCG参数与市售设备及STE并无差异。通过结合ECG和PCG信号,我们在健康犬中建立了CTI参数,包括收缩期功能指标(SPI:QS1/S1S2)和整体心脏功能指标{F1([QS1 + S2]/S1S2)、F2([RS1 + S2]/S1S2)以及F3(RS1 + [QS2 - QT]/S1S2)}。SPI、F2和F3分别与描述收缩期的超声心动图参数(射血前期/左心室射血时间[LVET])和Tei指数([MCOdur - LVET]/LVET)具有可比性。仅SPI和F3分别与MCOdur和心率显著相关。
我们已验证了定制设备用于描述CTIs的有效性,该设备在健康比格犬中与市售设备及STE具有可比性。从CTI参数得出的拟议SPI和MPI在临床实践中可能有助于描述心脏功能,尤其是在难以进行STE检查的地区。