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Design modification and optimisation of the perfusion system of a tri-axial bioreactor for tissue engineering

机译:用于组织工程的三轴生物反应器灌注系统的设计修改和优化

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A systematic design of experiments (DOE) approach was used to optimize the perfusion process of a tri-axial bioreactor designed for translational tissue engineering exploiting mechanical stimuli and mechanotransduction. Four controllable design parameters affecting the perfusion process were identified in a cause-effect diagram as potential improvement opportunities. A screening process was used to separate out the factors that have the largest impact from the insignificant ones. DOE was employed to find the settings of the platen design, return tubing configuration and the elevation difference that minimise the load on the pump and variation in the perfusion process and improve the controllability of the perfusion pressures within the prescribed limits. DOE was very effective for gaining increased knowledge of the perfusion process and optimizing the process for improved functionality. It is hypothesized that the optimized perfusion system will result in improved biological performance and consistency.
机译:系统的实验设计(DOE)方法用于优化三轴生物反应器的灌注过程,该三轴生物反应器设计用于利用机械刺激和机械转导的翻译组织工程。在因果图中将影响灌注过程的四个可控设计参数确定为潜在的改进机会。筛选过程用于将影响最大的因素与无关紧要的因素区分开。使用DOE来找到压板设计,回油管配置和高程差的设置,以最小化泵上的负载和灌注过程中的变化,并在规定的极限内提高灌注压力的可控制性。 DOE对于增加对灌注过程的了解并优化过程以改善功能非常有效。假设优化的灌注系统将导致改善的生物学性能和一致性。

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