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使用弹性模型和心脏磁共振成像的无创压力-容积环:在瞬态预负荷下的猪模型验证

Non-invasive pressure-volume loops using the elastance model and CMR: a porcine validation at transient pre-loads.

作者信息

Seemann Felicia, Heiberg Einar, Bruce Christopher G, Khan Jaffar M, Potersnak Amanda, Ramasawmy Rajiv, Carlsson Marcus, Arheden Håkan, Lederman Robert J, Campbell-Washburn Adrienne E

机构信息

Cardiovascular Branch, Division of Intramural Research, National Heart, Lung, and Blood Institute, National Institutes of Health, 10 Center Drive, Building 10 Rm B1D219, Bethesda, MD 20892, USA.

Department of Clinical Sciences Lund, Clinical Physiology, Skane University Hospital, Lund University, Entrégatan 7, 221 85 Lund, Sweden.

出版信息

Eur Heart J Imaging Methods Pract. 2024 Mar 5;2(1):qyae016. doi: 10.1093/ehjimp/qyae016. eCollection 2024 Jan.

Abstract

AIMS

Pressure-volume (PV) loops have utility in the evaluation of cardiac pathophysiology but require invasive measurements. Recently, a time-varying elastance model to derive PV loops non-invasively was proposed, using left ventricular (LV) volume by cardiovascular magnetic resonance (CMR) and brachial cuff pressure as inputs. Validation was performed using CMR and pressure measurements acquired on the same day, but not simultaneously, and without varying pre-loads. This study validates the non-invasive elastance model used to estimate PV loops at varying pre-loads, compared with simultaneous measurements of invasive pressure and volume from real-time CMR, acquired concurrent to an inferior vena cava (IVC) occlusion.

METHODS AND RESULTS

We performed dynamic PV loop experiments under CMR guidance in 15 pigs ( = 7 naïve, = 8 with ischaemic cardiomyopathy). Pre-load was altered by IVC occlusion, while simultaneously acquiring invasive LV pressures and volumes from real-time CMR. Pairing pressure and volume signals yielded invasive PV loops, and model-based PV loops were derived using real-time LV volumes. Haemodynamic parameters derived from invasive and model-based PV loops were compared. Across 15 pigs, 297 PV loops were recorded. Intra-class correlation coefficient (ICC) agreement was excellent between model-based and invasive parameters: stroke work (bias = 0.007 ± 0.03 J, ICC = 0.98), potential energy (bias = 0.02 ± 0.03 J, ICC = 0.99), ventricular energy efficiency (bias = -0.7 ± 2.7%, ICC = 0.98), contractility (bias = 0.04 ± 0.1 mmHg/mL, ICC = 0.97), and ventriculoarterial coupling (bias = 0.07 ± 0.15, ICC = 0.99). All haemodynamic parameters differed between naïve and cardiomyopathy animals ( < 0.05). The invasive vs. model-based PV loop dice similarity coefficient was 0.88 ± 0.04.

CONCLUSION

An elastance model-based estimation of PV loops and associated haemodynamic parameters provided accurate measurements at transient loading conditions compared with invasive PV loops.

摘要

目的

压力-容积(PV)环在评估心脏病理生理学方面具有实用价值,但需要进行侵入性测量。最近,有人提出了一种时变弹性模型,用于通过心血管磁共振成像(CMR)获得的左心室(LV)容积和肱动脉袖带压力作为输入,非侵入性地推导PV环。使用同一天但非同时采集的CMR和压力测量值进行了验证,且未改变前负荷。本研究将用于估计不同前负荷下PV环的非侵入性弹性模型与实时CMR同步测量的侵入性压力和容积进行比较,该实时CMR测量是在腔静脉(IVC)闭塞时同时进行的。

方法和结果

我们在CMR引导下对15头猪(7头为未患病猪,8头为缺血性心肌病猪)进行了动态PV环实验。通过IVC闭塞改变前负荷,同时从实时CMR获取侵入性LV压力和容积。将压力和容积信号配对得到侵入性PV环,并使用实时LV容积推导基于模型的PV环。比较了从侵入性和基于模型的PV环得出的血流动力学参数。在15头猪中,共记录了297个PV环。基于模型的参数与侵入性参数之间的组内相关系数(ICC)一致性极佳:每搏功(偏差 = 0.007±0.03 J,ICC = 0.98)、势能(偏差 = 0.02±0.03 J,ICC = 0.99)、心室能量效率(偏差 = -0.7±2.7%,ICC = 0.98)、收缩性(偏差 = 0.04±0.1 mmHg/mL,ICC = 0.97)和心室动脉耦合(偏差 = 0.07±0.15,ICC = 0.99)。未患病猪和心肌病猪之间的所有血流动力学参数均存在差异(P<0.05)。侵入性PV环与基于模型的PV环的骰子相似系数为0.88±0.04。

结论

与侵入性PV环相比,基于弹性模型对PV环和相关血流动力学参数的估计在瞬态负荷条件下提供了准确的测量结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0ce2/11195766/ba9651924a1e/qyae016_ga.jpg

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