Shinoda Koh, Oba Jun
Division of Functional Neuroanatomy, Department of Neuroscience, Yamaguchi University Graduate School of Medicine, 1-1-1 Minami-Kogushi, Ube, Yamaguchi 755-8505.
Kaibogaku Zasshi. 2010 Mar;85(1):5-15.
In compliance with health and safety management guidelines against harmful formaldehyde (FA) levels in the gross anatomy laboratory, we newly developed a dissection-table-connected local ventilation system in 2006. The system was composed of (1) a simple plenum-chambered dissection table with low-cost filters, (2) a transparent vinyl flexible duct for easy mounting and removal, which connects the table and the exhaust pipe laid above the ceiling, and (3) an intake creating a downward-flow of air, which was installed on the ceiling just above each table. The dissection table was also designed as a separate-component system, of which the upper plate and marginal suction inlets can be taken apart for cleaning after dissection, and equipped with opening/closing side-windows for picking up materials dropped during dissection and a container underneath the table to receive exudate from the cadaver through a waste-fluid pipe. The local ventilation system dramatically reduced FA levels to 0.01-0.03 ppm in the gross anatomy laboratory room, resulting in no discomforting FA smell and irritating sensation while preserving the student's view of room and line of flow as well as solving the problems of high maintenance cost, sanitation issues inside the table, and working-inconvenience during dissection practice. Switching ventilation methods or power-modes, the current local ventilation system was demonstrated to be more than ten times efficient in FA reduction compared to the whole-room ventilation system and suggested that 11 m3/min/table in exhaust volume should decrease FA levels in both A- and B-measurements to less than 0.1 ppm in 1000 m3 space containing thirty-one 3.5%-FA-fixed cadavers.
为了符合大体解剖实验室中针对有害甲醛(FA)水平的健康与安全管理指南,我们于2006年新开发了一种与解剖台相连的局部通风系统。该系统由以下部分组成:(1)带有低成本过滤器的简单增压室解剖台;(2)用于轻松安装和拆卸的透明乙烯基柔性管道,它将解剖台与天花板上方铺设的排气管相连;(3)安装在每张解剖台正上方天花板上的进气口,可形成向下的气流。解剖台还设计为一个独立组件系统,其上层板和边缘吸入口在解剖后可拆开进行清洁,并配备有用于捡起解剖过程中掉落材料的可开关侧窗以及解剖台下方的容器,用于通过废液管接收尸体渗出液。该局部通风系统将大体解剖实验室房间内的FA水平大幅降低至0.01 - 0.03 ppm,既没有令人不适的FA气味和刺激感,又保留了学生对房间和气流的视野,同时解决了高维护成本、解剖台内部的卫生问题以及解剖实践中的操作不便等问题。与全室通风系统相比,切换通风方法或电源模式后,当前的局部通风系统在降低FA方面的效率提高了十多倍,并表明在包含31具3.5%甲醛固定尸体的1000立方米空间中,每台解剖台11立方米/分钟的排气量应可将A测量和B测量中的FA水平降低至0.1 ppm以下。