Literature DB >> 20384187

[Reducing the levels of formaldehyde exposure during a gross anatomy dissection course with a local ventilation system].

Akio Kikuta1, Hiroshi Yamato, Naoki Kunugita, Tamiji Nakashima, Haruki Hayashi.   

Abstract

Reducing the levels of formaldehyde (FA) exposure in gross anatomy laboratories has been urgently required. We improved the environment of our gross anatomy laboratory by changing the existing general ventilation to local ventilation. We developed a local ventilation apparatus (grid-type of hood with downward suction) that can be attached to an ordinary dissection table. Furthermore, in order to make this local ventilation apparatus an enclosure hood, the upper plate of the dissection table was surrounded by flexible vertical flanges. The apparatus works as an effective enclosure hood without interfering with students' practice of dissection. We installed 26 local ventilation apparatuses and connected them to the ventilation duct. The ventilation ducts were installed above the ceiling or along the pillars not to interfere with students' vision and movements in the room. Adopting the local ventilation system reduced dramatically the students' and lecturers' exposure to formaldehyde. The geometric mean formaldehyde concentration was 0.066 ppm in the anatomy laboratory in 2005. Since 2005, the new system has enabled us to comply with safety and health regulations and providing a smell- and irritant-free dissection room with an excellent environment for anatomy study.

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Year:  2010        PMID: 20384187

Source DB:  PubMed          Journal:  Kaibogaku Zasshi        ISSN: 0022-7722


  5 in total

1.  Changes in subjective symptoms and allergy state among medical students exposed to low-level formaldehyde 6 months after completion of a gross anatomy dissection course.

Authors:  Mihoko Mori; Michiko Hoshiko; Kunio Hara; Tsuyoshi Saga; Kouichi Yamaki; Tatsuya Ishitake
Journal:  Environ Health Prev Med       Date:  2013-04-16       Impact factor: 3.674

2.  Local exhaust ventilation systems for the gross anatomy laboratory.

Authors:  Matthew J Zdilla
Journal:  Morphologie       Date:  2020-12-02

3.  Assessment of workplace air concentrations of formaldehyde during and before working hours in medical facilities.

Authors:  Ichiro Higashikubo; Hiroyuki Miyauchi; Satoru Yoshida; Shinsuke Tanaka; Mitsunori Matsuoka; Heihachiro Arito; Akihiro Araki; Hidesuke Shimizu; Haruhiko Sakurai
Journal:  Ind Health       Date:  2017-01-13       Impact factor: 2.179

4.  Changes in Work Practices for Safe Use of Formaldehyde in a University-Based Anatomy Teaching and Research Facility.

Authors:  Paul T J Scheepers; Martien H F Graumans; Gwendolyn Beckmann; Maurice van Dael; Rob B M Anzion; Maarten Melissen; Nicole Pinckaers; Luuk van Wel; Laurie M A de Werdt; Vera Gelsing; Albert van Linge
Journal:  Int J Environ Res Public Health       Date:  2018-09-19       Impact factor: 3.390

5.  Contact Sensitization to Formaldehyde in Veterinary Medicine - An Unexplored Field in Occupational Health.

Authors:  Maya G Lyapina; Vasil K Manov; Mariana P Cekova
Journal:  Indian J Occup Environ Med       Date:  2019 Jan-Apr
  5 in total

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