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高容积率超声心动图可在一次心跳中对人体全心的机电激活和心脏应变进行同步成像。

High volume-rate echocardiography for simultaneous imaging of electromechanical activation and cardiac strain of the whole heart in a single heartbeat in humans.

作者信息

Grondin Julien, Schleifer Hannah J, Weber Rachel, Lee Changhee, Tourni Melina, Konofagou Elisa E

机构信息

Department of Radiology, Columbia University, New York, NY, United States of America.

Department of Biomedical Engineering, Columbia University, New York, NY, United States of America.

出版信息

PLoS One. 2024 Dec 27;19(12):e0313410. doi: 10.1371/journal.pone.0313410. eCollection 2024.

Abstract

BACKGROUND

Imaging both electrical and mechanical cardiac function can better characterize cardiac disease and improve patient care. Currently, there is no noninvasive technique that can simultaneously image both electrical and mechanical function of the whole heart at the point of care. Here, our aim is to demonstrate that high volume-rate echocardiography can simultaneously map cardiac electromechanical activation and end-systolic cardiac strain of the whole heart in a single heartbeat.

METHOD

A 32x32 ultrasound matrix array connected to four synchronized ultrasound scanners were used for transthoracic high volume-rate imaging (840 volumes/s) in sixteen young volunteers (28.1±4.2 y.o.). An electromechanical activation map of the whole heart and volumetric end-systolic atrial and ventricular strain images were obtained.

RESULTS

The whole heart activation sequence was found to be consistent across volunteers and in agreement with previously reported normal electrical activation sequences. The mean electromechanical activation time was 72.6±15.2 ms in the atria, 132.4±19.7 ms in the ventricles and 154.5±19.6 ms in the whole heart. Volumetric right and left atrial as well as right and left ventricular strains were also consistent across all volunteers, with a mean end-systolic global longitudinal strain of 26.8±6.5% in the atria and -16.6±3.4% in the ventricles.

CONCLUSIONS

This initial feasibility study demonstrates that noninvasive high-volume rate imaging of the heart in a single heartbeat is feasible and can provide electromechanical activation and systolic strains simultaneously in all four cardiac chambers. This technique can be further developed and used at the point of care to assist for screening, diagnosis, therapy guidance and follow-up of heart disease patients.

摘要

背景

对心脏的电功能和机械功能进行成像能够更好地描述心脏疾病并改善患者护理。目前,尚无一种能够在床旁同时对整个心脏的电功能和机械功能进行成像的无创技术。在此,我们的目的是证明高容积率超声心动图能够在单次心跳中同时绘制整个心脏的机电激活和收缩末期心脏应变图。

方法

将一个连接到四台同步超声扫描仪的32×32超声矩阵阵列用于16名年轻志愿者(28.1±4.2岁)的经胸高容积率成像(840容积/秒)。获得了整个心脏的机电激活图以及容积性收缩末期心房和心室应变图像。

结果

发现所有志愿者的整个心脏激活序列一致,且与先前报道的正常电激活序列相符。心房的平均机电激活时间为72.6±15.2毫秒,心室为132.4±19.7毫秒,整个心脏为154.5±19.6毫秒。所有志愿者的容积性右心房和左心房以及右心室和左心室应变也一致,心房收缩末期整体纵向应变的平均值为26.8±6.5%,心室为-16.6±3.4%。

结论

这项初步可行性研究表明,单次心跳中对心脏进行无创高容积率成像可行,并且能够同时提供所有四个心腔的机电激活和收缩期应变。这项技术可进一步开发并用于床旁,以辅助心脏病患者的筛查、诊断、治疗指导和随访。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ec7/11676786/b1eb93dd91a3/pone.0313410.g001.jpg

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