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Constructing a Transparent Air Chamber for an Innovative Ventilation System in an Operating Room

机译:在手术室中构建用于创新通风系统的透明空气室

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While surgical techniques have been improving during last decades to the benefit of patientsa?? safety, infections are still recorded. It is in part due to airborne particles entering the wound during surgery, as a result of the disturbance of the unidirectional flow of clean air (LAF) by the presence of a surgical luminaire system. To prevent this negative interaction, an integrated system of light and ventilation has been designed. However, this system is still conceptual and a mechanical design is needed to prototype the system. Compliance with the European standard on surgical luminaires and the Heating, Ventilation and Air-Conditioning (HVAC) guidelines for operating rooms (OR) have to be checked for this prototype. We thus perform a structural analysis of the air chamber using Autodesk Inventor and SCIA Engineer considering different partitioning scenarios. The impact of each configuration is then assessed by considering the optical performance in the optical simulation TracePro. By comparing shifts in the results to a reference scenario an optimized configuration can be chosen. By consequence, a good balance between optical performance and mechanical strength is determined and leads to an optimized supporting solution. This mechanical design further enables us to build the integrated concept that aims to suppress the negative interaction between light and ventilation in the operating theater.
机译:在过去的几十年中,尽管外科手术技术一直在进步,以使患者受益?安全,仍然记录感染。这部分是由于手术照明系统的存在对清洁空气的单向流动(LAF)的干扰所致,是由于在手术过程中空气中的颗粒进入了伤口。为了防止这种负面影响,已经设计了一个集成的照明和通风系统。但是,该系统仍是概念性的,需要机械设计来制作系统原型。对于该原型,必须检查其是否符合手术照明设备的欧洲标准以及手术室(OR)的加热,通风和空调(HVAC)准则。因此,考虑到不同的分区方案,我们使用Autodesk Inventor和SCIA工程师对气室进行了结构分析。然后,通过考虑光学仿真TracePro中的光学性能来评估每种配置的影响。通过将结果的变化与参考方案进行比较,可以选择优化的配置。结果,确定了光学性能和机械强度之间的良好平衡,并导致了最佳的支撑解决方案。这种机械设计进一步使我们能够构建旨在抑制手术室中的光与通风之间的负面相互作用的集成概念。

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