Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation

In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pumps (IRBPs) using left ventricular end-diastolic pressure (PLVED) as the feedback variable. Simulations are conducted using a validated mathematical model. The controller emulates the response of the n...

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Main Authors: Mansouri, Mahdi, Salamonsen, Robert F., Lim, Einly, Akmeliawati, Rini, Lovell, Nigel H.
Format: Article
Language:English
Published: The Public Library of Science (PLoS) 2015
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Online Access:http://irep.iium.edu.my/42705/2/preload_based.pdf
http://irep.iium.edu.my/42705/
http://dx.doi.org/10.1371/journal.pone.0121413
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spelling my.iium.irep.427052017-11-08T07:30:52Z http://irep.iium.edu.my/42705/ Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation Mansouri, Mahdi Salamonsen, Robert F. Lim, Einly Akmeliawati, Rini Lovell, Nigel H. TJ212 Control engineering In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pumps (IRBPs) using left ventricular end-diastolic pressure (PLVED) as the feedback variable. Simulations are conducted using a validated mathematical model. The controller emulates the response of the natural left ventricle (LV) to changes in PLVED. We report the performance of the preload-based Starling-like controller in comparison with our recently designed pulsatility controller and constant speed operation. In handling the transition from a baseline state to test states, which include vigorous exercise, blood loss and a major reduction in the LV contractility (LVC), the preload controller outperformed pulsatility control and constant speed operation in all three test scenarios. In exercise, preload-control achieved an increase of 54% in mean pump flow () with minimum loading on the LV, while pulsatility control achieved only a 5% increase in flow and a decrease in mean pump speed. In a hemorrhage scenario, the preload control maintained the greatest safety margin against LV suction. PLVED for the preload controller was 4.9 mmHg, compared with 0.4 mmHg for the pulsatility controller and 0.2 mmHg for the constant speed mode. This was associated with an adequate mean arterial pressure (MAP) of 84 mmHg. In transition to low LVC, for preload control remained constant at 5.22 L/min with a PLVED of 8.0 mmHg. With regards to pulsatility control, fell to the nonviable level of 2.4 L/min with an associated PLVED of 16 mmHg and a MAP of 55 mmHg. Consequently, pulsatility control was deemed inferior to constant speed mode with a PLVED of 11 mmHg and a of 5.13 L/min in low LVC scenario. We conclude that pulsatility control imposes a danger to the patient in the severely reduced LVC scenario, which can be overcome by using a preload-based Starling-like control approach. The Public Library of Science (PLoS) 2015 Article REM application/pdf en http://irep.iium.edu.my/42705/2/preload_based.pdf Mansouri, Mahdi and Salamonsen, Robert F. and Lim, Einly and Akmeliawati, Rini and Lovell, Nigel H. (2015) Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation. PLoS ONE, 10 (4). e0121413. ISSN 1932-6203 http://dx.doi.org/10.1371/journal.pone.0121413 doi:10.1371/journal.pone.0121413
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic TJ212 Control engineering
spellingShingle TJ212 Control engineering
Mansouri, Mahdi
Salamonsen, Robert F.
Lim, Einly
Akmeliawati, Rini
Lovell, Nigel H.
Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation
description In this study, we evaluate a preload-based Starling-like controller for implantable rotary blood pumps (IRBPs) using left ventricular end-diastolic pressure (PLVED) as the feedback variable. Simulations are conducted using a validated mathematical model. The controller emulates the response of the natural left ventricle (LV) to changes in PLVED. We report the performance of the preload-based Starling-like controller in comparison with our recently designed pulsatility controller and constant speed operation. In handling the transition from a baseline state to test states, which include vigorous exercise, blood loss and a major reduction in the LV contractility (LVC), the preload controller outperformed pulsatility control and constant speed operation in all three test scenarios. In exercise, preload-control achieved an increase of 54% in mean pump flow () with minimum loading on the LV, while pulsatility control achieved only a 5% increase in flow and a decrease in mean pump speed. In a hemorrhage scenario, the preload control maintained the greatest safety margin against LV suction. PLVED for the preload controller was 4.9 mmHg, compared with 0.4 mmHg for the pulsatility controller and 0.2 mmHg for the constant speed mode. This was associated with an adequate mean arterial pressure (MAP) of 84 mmHg. In transition to low LVC, for preload control remained constant at 5.22 L/min with a PLVED of 8.0 mmHg. With regards to pulsatility control, fell to the nonviable level of 2.4 L/min with an associated PLVED of 16 mmHg and a MAP of 55 mmHg. Consequently, pulsatility control was deemed inferior to constant speed mode with a PLVED of 11 mmHg and a of 5.13 L/min in low LVC scenario. We conclude that pulsatility control imposes a danger to the patient in the severely reduced LVC scenario, which can be overcome by using a preload-based Starling-like control approach.
format Article
author Mansouri, Mahdi
Salamonsen, Robert F.
Lim, Einly
Akmeliawati, Rini
Lovell, Nigel H.
author_facet Mansouri, Mahdi
Salamonsen, Robert F.
Lim, Einly
Akmeliawati, Rini
Lovell, Nigel H.
author_sort Mansouri, Mahdi
title Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation
title_short Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation
title_full Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation
title_fullStr Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation
title_full_unstemmed Preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation
title_sort preload-based starling-like control for rotary blood pumps: numerical comparison with pulsatility control and constant speed operation
publisher The Public Library of Science (PLoS)
publishDate 2015
url http://irep.iium.edu.my/42705/2/preload_based.pdf
http://irep.iium.edu.my/42705/
http://dx.doi.org/10.1371/journal.pone.0121413
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