Key result
Noninvasive estimation of left ventricular pressure using a dynamic pump model accurately determined mean and minimum pressure in a porcine ex vivo beating heart model.
Why the study?
Does a dynamic pump model accurately estimate left ventricular pressure using an LVAD as a sensor in an ex vivo porcine heart model?
Does a dynamic pump model accurately estimate left ventricular pressure using an LVAD as a sensor in an ex vivo porcine heart model?
An LVAD can be used as a pressure sensor to accurately estimate left ventricular pressure noninvasively, potentially aiding in monitoring native ventricular function.
May enable noninvasive LV pressure monitoring in LVAD patients; leaves open clinical translation pending human studies.
INTRODUCTION: In long-term ventricular support of patients with LVADs, left ventricular pressure (p(lv)) is relevant for indicating the unloading level of the heart. Monitoring of p(lv) over time might give more insight into the increase or decrease in native ventricular function. In this study, we aim to assess dynamic p(lv) noninvasively, using the LVAD as a pressure sensor. METHODS: Pressure head (dp(lvad)) was estimated from pump flow with a dynamic pump model (1). Estimated dp(lvad) and measured aortic pressure were used to calculate left ventricular pressure. Moreover, parameters dp/dtmax and mean, minimum, and maximum p(lv) were derived.The method was validated with a porcine ex vivo beating heart model by measurements conducted in 4 hearts supported with a Micromed DeBakey VAD and 3 hearts with a Heartmate II VAD. During each measurement, aortic and left ventricular pressure, pump flow, and pressure head were recorded for 30 s with a sampling frequency of 1 kHz. RESULTS: The estimation of left ventricular pressure appeared to be accurate for both pumps. The parameters mean and minimum pressure were estimated with high accuracy. The degree of accuracy of the estimated p(lv) was proportional to the degree of accuracy of the dynamic pump model. CONCLUSIONS: We proved that the LVAD model described in this paper can be used as a pressure indicator to determine LV pressure at any time based on noninvasive measurements of pump flow, aortic pressure, and the properties of the outlet graft.
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Pennings et al. (2015) studied LVAD support (n=7). Noninvasive estimation of left ventricular pressure using a dynamic pump model vs. Direct measurement was evaluated on Accuracy of estimated left ventricular pressure. Noninvasive estimation of left ventricular pressure using a dynamic pump model accurately determined mean and minimum pressure in a porcine ex vivo beating heart model.
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