| Literature DB >> 25226957 |
Baoming Chen1, Tianyi Song2, Tao Guo3, Haiyan Xiang4, Yanyong Liu4, Yufei Qin4, Zhengtao Cao4, Mengsun Yu4.
Abstract
Non-invasive pressure simulators that regenerate oscillometric waveforms promise an alternative to expensive clinical trials for validating oscillometric noninvasive blood pressure devices. However, existing simulators only provide oscillometric pressure in cuff and thus have a limited accuracy. It is promising to build a physical simulator that contains a synthetic arm with a built-in brachial artery and an affiliated hydraulic model of cardiovascular system. To guide the construction of this kind of simulator, this paper presents a computer model of cardiovascular system with a relatively simple structure, where the distribution of pressures and flows in aorta root and brachial artery can be simulated, and the produced waves are accordant with the physical data. This model can be used to provide the parameters and structure that will be needed to build the new simulator.Keywords: Computer model; brachial artery; cardiovascular system; non-invasive pressure simulator
Mesh:
Year: 2014 PMID: 25226957 DOI: 10.3233/BME-141070
Source DB: PubMed Journal: Biomed Mater Eng ISSN: 0959-2989 Impact factor: 1.300