Zieliński Krzysztof, Gólczewski Tomasz, Kozarski Maciej, Darowski Marek
Nalecz Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, 02-109 Warsaw, Poland.
Membranes (Basel). 2022 May 25;12(6):548. doi: 10.3390/membranes12060548.
Recently, 'medicine in silico' has been strongly encouraged due to ethical and legal limitations related to animal experiments and investigations conducted on patients. Computer models, particularly the very complex ones (virtual patients-VP), can be used in medical education and biomedical research as well as in clinical applications. Simpler patient-specific models may aid medical procedures. However, computer models are unfit for medical devices testing. Hybrid (i.e., numerical-physical) models do not have this disadvantage. In this review, the chosen approach to the cardiovascular system and/or respiratory system modeling was discussed with particular emphasis given to the hybrid cardiopulmonary simulator (the artificial patient), that was elaborated by the authors. The VP is useful in the education of forced spirometry, investigations of cardiopulmonary interactions (including gas exchange) and its influence on pulmonary resistance during artificial ventilation, and explanation of phenomena observed during thoracentesis. The artificial patient is useful, inter alia, in staff training and education, investigations of cardiorespiratory support and the testing of several medical devices, such as ventricular assist devices and a membrane-based artificial heart.
最近,由于与动物实验和对患者进行的调查相关的伦理和法律限制,“计算机模拟医学”受到了大力鼓励。计算机模型,尤其是非常复杂的模型(虚拟患者-VP),可用于医学教育、生物医学研究以及临床应用。更简单的特定患者模型可能有助于医疗程序。然而,计算机模型不适用于医疗设备测试。混合(即数值-物理)模型没有这个缺点。在这篇综述中,讨论了针对心血管系统和/或呼吸系统建模所采用的方法,特别强调了作者所阐述的混合心肺模拟器(人工患者)。虚拟患者在用力肺活量的教育、心肺相互作用(包括气体交换)的研究及其在人工通气期间对肺阻力的影响,以及胸腔穿刺术期间观察到的现象的解释方面很有用。人工患者尤其在人员培训和教育、心肺支持的研究以及几种医疗设备(如心室辅助装置和基于膜的人工心脏)的测试中很有用。