Jansen-Park So-Hyun, Hsu Po-Lin, Müller Indra, Steinseifer Ulrich, Abel Dirk, Autschbach Rüdiger, Rossaint Rolf, Schmitz-Rode Thomas
Institute of Applied Medical Engineering, RWTH Aachen University, Aachen.
Artificial Organ Technology Laboratory, Biomufacturing Centre, School of Mechanical and Electric Engineering, Soochow University, Jiangsu.
Biomed Tech (Berl). 2017 Apr 1;62(2):139-148. doi: 10.1515/bmt-2016-0106.
Mock heart circulation loops (MHCLs) serve as in-vitro platforms to investigate the physiological interaction between circulatory systems and cardiovascular devices. A mock heart (MH) engineered with silicone walls and helical aramid fibers, to mimic the complex contraction of a natural heart, has been developed to advance the MHCL previously developed in our group. A mock aorta with an anatomical shape enables the evaluation of a cannulation method for ventricular assist devices (VADs) and investigation of the usage of clinical measurement systems like pressure-volume catheters. Ventricle and aorta molds were produced based on MRI data and cast with silicone. Aramid fibers were layered in the silicone ventricle to reproduce ventricle torsion. A rotating hollow shaft was connected to the apex enabling the rotation of the MH and the connection of a VAD. Silicone wall thickness, aramid fiber angle and fiber pitch were varied to generate different MH models. All MH models were placed in a tank filled with variable amounts of water and air simulating the compliance. In this work, physiological ventricular torsion angles (15°-26°) and physiological pressure-volume loops were achieved. This MHCL can serve as a comprehensive testing platform for cardiovascular devices, such as artificial heart valves and cannulation of VADs.
模拟心脏循环回路(MHCLs)作为体外平台,用于研究循环系统与心血管装置之间的生理相互作用。为了改进我们小组之前开发的MHCL,已经开发出一种用硅胶壁和螺旋芳纶纤维制造的模拟心脏(MH),以模拟天然心脏的复杂收缩。具有解剖形状的模拟主动脉能够评估心室辅助装置(VADs)的插管方法,并研究压力容积导管等临床测量系统的使用情况。基于MRI数据制作心室和主动脉模具,并用硅胶铸造。芳纶纤维分层置于硅胶心室中以再现心室扭转。一根旋转空心轴连接到心尖,使模拟心脏能够旋转并连接VAD。改变硅胶壁厚、芳纶纤维角度和纤维间距以生成不同的模拟心脏模型。所有模拟心脏模型都放置在一个装有不同量水和空气的水箱中,以模拟顺应性。在这项工作中,实现了生理心室扭转角度(15°-26°)和生理压力容积环。这种模拟心脏循环回路可以作为心血管装置的综合测试平台,如人工心脏瓣膜和VAD插管。