Department of Pathology, Anatomy, and Laboratory Medicine (PALM), West Virginia University School of Medicine, Morgantown, WV, USA.
Morphologie. 2022 Feb;106(352):28-36. doi: 10.1016/j.morpho.2021.02.009. Epub 2021 Mar 25.
The expense of creating exhaust ventilation in a gross anatomy laboratory can be an impediment to gross anatomical education, especially in locations with little availability of funds (e.g., developing countries). Thus, the need for inexpensive yet effective exhaust ventilation is important for gross anatomical education. This study details the creation of a downdraft ventilation table that cost less than 200 USD to build, was built with commonly available materials (i.e., lumber, tarps, rebar, corrugated steel, staples, and screws), was built by one person with little difficulty in a matter of hours, was relatively light weight (75.2kg fully-assembled), and was easy to transport. Further, the table was structurally sound and handled a load of at least 331kg without damage. The table was affixed to a simple local exhaust ventilation system that cost ∼300 USD and generated an exhaust flow of 3099m/h from the table. The table was capable of removing all airborne formaldehyde (0.00ppm) despite a pool of 100% formalin placed 20.3cm above the table. Furthermore, the height of the table could easily be adapted for handicapped accessibility and for individuals who are shorter or taller than average. The downdraft system also has applications beyond the gross anatomy laboratory (e.g., exhaust ventilation for embalming, manufacturing, and clinical/surgical aerosol-generating procedures). This report represents a proof-of-concept: a downdraft table that costs less than 200 USD can be built easily and paired effectively with an inexpensive local exhaust ventilation system at a total expense of approximately 500 USD. This report marks an improvement in gross anatomy laboratory safety and accessibility.
创建解剖实验室通风系统的费用可能会阻碍解剖学教育的开展,尤其是在资金有限的地区(例如发展中国家)。因此,对于解剖学教育而言,需要一种廉价且有效的通风系统。本研究详细介绍了一种下沉气流通风桌的制作过程,其成本不到 200 美元,使用常见材料(即木材、防水布、钢筋、波纹钢板、订书钉和螺丝)建造,由一个人在数小时内轻松完成,重量相对较轻(组装后为 75.2 公斤),易于运输。此外,该桌子结构坚固,可承受至少 331 公斤的重量而不会损坏。该桌子连接到一个简单的局部排气通风系统,成本约为 300 美元,可从桌子上产生 3099m/h 的排气流量。尽管桌子上方 20.3 厘米处有一池 100%甲醛溶液,但该桌子仍能有效去除所有空气中的甲醛(0.00ppm)。此外,桌子的高度可以轻松适应残疾人通道以及身材较矮或较高的人员。下沉气流系统还有超出解剖实验室的应用(例如,用于防腐、制造和临床/手术气溶胶产生过程的排气通风)。本报告代表了一个概念验证:一个成本不到 200 美元的下沉气流桌可以轻松制作,并与一个廉价的局部排气通风系统有效搭配,总成本约为 500 美元。本报告标志着解剖实验室安全性和可达性的提高。