Departing from standard practices: Strategic application of value engineering in the anatomy laboratory to enhance formaldehyde extraction using high-impact, low-cost, and low-maintenance solutions.

IF 5.2 2区 教育学 Q1 EDUCATION, SCIENTIFIC DISCIPLINES
Jürgen Russ, Niels Hammer
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Abstract

This study describes the process of developing a high-impact, low-cost, and low-maintenance air ventilation system for anatomy facilities. It employed the strategic application of Value Engineering (VE), assuring that the air ventilation system meets contemporary threshold limit values (TLVs) for formaldehyde in the working zone of dissection tables. A creative-innovative construction methodology was used, combining the Theory of Inventive Problem Solving (TRIZ/TIPS) and VE for an anatomy laboratory air ventilation concept. The TRIZ/TIPS aimed to resolve conflicts that impeded progress toward higher ideality, while VE aimed to develop alternative approaches to fulfill required functions at a minimal cost. The findings were first trialed in a mockup while dissecting human tissues embalmed with two protocols. The experimental results were validated by computational fluid dynamics simulations, and then followed by a pilot and commissioning phase once the physical installation of the dissection laboratory concluded. The findings demonstrate the superiority of the combined TRIZ/TIPS and VE approach in terms of air distribution and efficient formaldehyde extraction within the breathing zone. A formaldehyde exposition below 0.1 ppm, lowered air exchange rates, and system usability proved that the given third-generation ventilation system complies with contemporary TLVs and potential changes in user requirements. The third-generation ventilation system offers a cost-effective, high-impact, and low-maintenance solution for state-of-the-art air ventilation systems in the anatomy dissection laboratory. The underlying design approach ensured that formaldehyde levels in the laboratory meet the TLV and indoor air guideline values for formaldehyde exposure, at which current knowledge indicates no increased risk of cancer.

偏离标准实践:价值工程在解剖实验室的战略应用,以提高甲醛提取使用高影响,低成本,低维护的解决方案。
本研究描述了为解剖学设施开发一种高影响、低成本、低维护的空气通风系统的过程。它采用了价值工程(VE)的策略应用,确保空气通风系统满足解剖工作台工作区域甲醛的当代阈值限值(TLVs)。建筑师采用了一种创造性的建筑方法,将创造性问题解决理论(TRIZ/TIPS)和VE结合起来,设计了解剖实验室的通风概念。TRIZ/TIPS旨在解决阻碍实现更高理想的冲突,而VE旨在开发以最小成本实现所需功能的替代方法。这些发现首先在一个模型中进行了试验,同时解剖了用两种方法防腐的人体组织。实验结果通过计算流体动力学模拟进行验证,然后在解剖实验室的物理安装完成后进行试验和调试阶段。研究结果表明,TRIZ/TIPS和VE组合方法在呼吸区空气分布和有效甲醛提取方面具有优势。甲醛暴露低于0.1 ppm,空气交换率降低,系统可用性证明了给定的第三代通风系统符合当代tlv和用户需求的潜在变化。第三代通风系统为解剖解剖实验室中最先进的空气通风系统提供了经济高效,高影响和低维护的解决方案。基本的设计方法确保实验室中的甲醛水平符合TLV和室内空气甲醛暴露指南值,目前的知识表明,在这个标准下,癌症风险不会增加。
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来源期刊
Anatomical Sciences Education
Anatomical Sciences Education Anatomy/education-
CiteScore
10.30
自引率
39.70%
发文量
91
期刊介绍: Anatomical Sciences Education, affiliated with the American Association for Anatomy, serves as an international platform for sharing ideas, innovations, and research related to education in anatomical sciences. Covering gross anatomy, embryology, histology, and neurosciences, the journal addresses education at various levels, including undergraduate, graduate, post-graduate, allied health, medical (both allopathic and osteopathic), and dental. It fosters collaboration and discussion in the field of anatomical sciences education.
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