计算机科学
标准化
故障排除
风险分析(工程)
可靠性(半导体)
可靠性工程
系统工程
医学物理学
医学
工程类
量子力学
操作系统
物理
功率(物理)
作者
Victor K. Tsui,Daniel L. Ewert
出处
期刊:Bioengineering
[Multidisciplinary Digital Publishing Institute]
日期:2025-08-07
卷期号:12 (8): 851-851
被引量:3
标识
DOI:10.3390/bioengineering12080851
摘要
Cardiovascular diseases remain a leading cause of mortality in the United States, driving the need for advanced cardiovascular devices and pharmaceuticals. Mock Circulatory Loops (MCLs) have emerged as essential tools for in vitro testing, replicating pulsatile pressure and flow to simulate various physiological and pathological conditions. While many studies focus on custom MCL designs tailored to specific applications, few have systematically reviewed their use in device testing, and none have assessed their broader utility across diverse biomedical domains. This comprehensive review categorizes MCL designs into three types: mechanical, computational, and hybrid. Applications are classified into four major areas: Cardiovascular Devices Testing, Clinical Training and Education, Hemodynamics and Blood Flow Studies, and Disease Modeling. Most existing MCLs are complex, highly specialized, and difficult to reproduce, highlighting the need for simplified, standardized, and programmable hybrid systems. Improved validation and waveform fidelity-particularly through incorporation of the dicrotic notch and other waveform parameters-are critical for advancing MCL reliability. Furthermore, integration of machine learning and artificial intelligence holds significant promise for enhancing waveform analysis, diagnostics, predictive modeling, and personalized care. In conclusion, the development of MCLs should prioritize standardization, simplification, and broader accessibility to expand their impact across biomedical research and clinical translation.
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