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Utilizing Percutaneous Ventricular Assist Devices in Acute Myocardial Infarction Complicated by Cardiogenic Shock
Published on: June 12, 2021
Effect of Pulsatile and Nonpulsatile Assist on Heart and Kidney Microcirculation with Cardiogenic Shock
Kin-Ichi Nakata1, Motomi Shiono1, Yukihiko Orime1
1The Second Department of Surgery, Nihon University School of Medicine, Tokyo, JapanCo-laboratory, Nihon University School of Medicine, Tokyo, Japan.
Insights
Pulsatile circulatory support improved heart and kidney microcirculation after cardiogenic shock more effectively than nonpulsatile support. This suggests pulsatile assist is superior for maintaining organ function during critical circulatory events.
Area of Science:
- Cardiovascular Research
- Medical Device Technology
- Organ Perfusion Studies
Background:
- Cardiogenic shock significantly impairs microcirculation in vital organs like the heart and kidneys.
- Assisted circulation aims to restore blood flow but the efficacy of pulsatile versus nonpulsatile support remains a key question.
Purpose of the Study:
- To compare the effectiveness of pulsatile and nonpulsatile circulatory assist devices in maintaining cardiac and renal microcirculation following acute myocardial infarction and induced cardiogenic shock.
- To evaluate the impact of different assist modes on tissue blood flow in the heart and kidneys.
Main Methods:
- A swine model was used, inducing acute myocardial infarction and subsequent cardiogenic shock.
- Animals were divided into three groups: control (no assist), nonpulsatile pump assist, and pulsatile pump assist.
- Measurements included left coronary artery flow, regional myocardial flows (endocardial and epicardial), and renal tissue blood flows (cortex and medulla).
Main Results:
- Both pulsatile and nonpulsatile assist restored left coronary artery and myocardial tissue blood flows to control levels after cardiogenic shock.
- Renal medulla and cortex blood flows decreased in cardiogenic shock and did not recover with nonpulsatile assist.
- Pulsatile assist showed improvement in renal cortex blood flow, unlike nonpulsatile assist, suggesting better organ perfusion.
Conclusions:
- Pulsatile circulatory assist demonstrates superior efficacy over nonpulsatile assist in preserving microcirculation in key organs after cardiogenic shock.
- Pulsatile support may be crucial for preventing major organ function deterioration in patients experiencing critical circulatory compromise.
Abstract:
To estimate microcirculation of the heart and kidney in pulsatile and nonpulsatile-assisted circulation, a comparison study was done using a swine model. Acute myocardial infarction was made by ligation of the left coronary artery branches. After cardiogenic shock, animals were divided into 3 groups as follows: Group C (n = 6), no assist provided; Group NP (n = 6), assisted by a nonpulsatile pump (Bio-Medicus BP-80); Group P (n = 6), supported by a pulsatile pump (Nippon Zeon). Left coronary artery flow, endocardial and epicardial regional flows, and renal cortex and medulla tissue blood flows were measured. Left coronary artery flow and endocardial and epicardial tissue blood flows decreased in cardiogenic shock, and they recovered to the control level soon after support in both Group N and Group P. Renal medulla and cortex tissue blood flows decreased in cardiogenic shock, and these flows did not recover in either Group N or P. However, cortex blood flow in Group P did improve, but it did not improve in Group N. These results suggested that pulsatile assist was more effective than nonpulsatile assist for microcirculation after cardiogenic shock to avoid deterioration of major organ functions.
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