Search PubMed⌕ Search

PubMed · 16856359

Aircraft disinsection.

Abstract

Aircraft disinsection has been an international practice since the 1920s, the purpose of which is to protect public health, the environment, agriculture, and livestock by the eradication of disease vectors. Although most nations of the world have discontinued this practice, about 20 continue with this requirement. Aircraft disinsection is sanctioned by international law with the World Health Organization (WHO) publishing general procedural guidelines in the International Health Regulations (IHR). There are currently four acceptable procedures: blocks away, top of descent, on arrival, and residual. A 2% pyrethrum solution, a naturally occurring substance found in the chrysanthemum flower, or several synthetic pyrethroids, are the recommended agents because they are extremely effective insecticides which pose minimal health risks. Although the use of insecticides for aircraft disinsection is controversial, national policies compelling this requirement must be respected. This paper will explore the background of aircraft disinsection, the procedures, the types of agents, and the toxicity. If aircraft disinsection is regulatory policy, it should be done in accordance with WHO procedures. Residual application is probably the most efficacious method. The use of air curtains or plastic strips should be explored as an alternative to the use of chemicals.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Russell B Rayman. 2006. Aircraft disinsection.. https://pubmed.ncbi.nlm.nih.gov/16856359/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

"Higher, always higher": technology, the military and aviation medicine during the age of the two world wars.

The history of flight has been strongly influenced by the interplay between physiology and technology. The human body defined the relationship between man and machine--it had to be protected from the cold, bad weather, high altitude, speed and bullets. Technological innovations offered a way to improve on aeroplane safety, and enabled pilots to exceed the limits imposed by physiological constraints. In particular, reconnaissance and bombing missions during World War II, which demanded flight at high altitudes, stimulated intensive scientific research and technological development. This research led to the construction of artificial environments for pilots and ultimately gave rise to space medicine.

Aerospace Medicine↗