PubMed Health⌕ Search

PubMed · 16030059

Forbush decrease effects on radiation dose received on-board aeroplanes.

Abstract

Doses received on-board aeroplanes during deep Forbush decreases (FDs) have been recently measured and published. Using an operational model of dose calculation, the effects on aviation dose of the FDs observed from 1981 to 2003 using neutron monitors are studied and a simplified method to estimate dose variations from galactic cosmic ray variations during FDs is derived.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

P Lantos. 2005-07-19. Forbush decrease effects on radiation dose received on-board aeroplanes.. https://doi.org/10.1093/rpd%2Fnci302

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

KEEP EXPLORING

Related citations

[Which cardiac patients may be allowed to travel by air?].

During airline flights, cardiological patients in particular are put at stress by the decrease in pressure in the passenger cabin and the associated decrease in oxygen partial pressure in the blood. Possible risks are, in particular, rhythm disorders, myocardial ischemic states or an excessive increase in pulmonary artery pressure. Flight travel may be permitted at the earliest two weeks after a myocardial infarction or coronary event. It should be forbidden in patients with decompensated cardiac failure, instable angina pectoris, severe pulmonary arterial or arterial hypertension, uncontrolled arrhythmias and surgery on the heart within a period of 2 weeks prior to the intended flight.

Aerospace Medicine↗

Cosmic radiation increases the risk of nuclear cataract in airline pilots: a population-based case-control study.

BACKGROUND: Aviation involves exposure to ionizing radiation of cosmic origin. The association between lesions of the ocular lens and ionizing radiation is well-known. OBJECTIVE: To investigate whether employment as a commercial airline pilot and the resulting exposure to cosmic radiation is associated with lens opacification. METHODS: This is a population-based case-control study of 445 men. Lens opacification was classified into 4 types using the World Health Organization simplified grading system. These 4 types, serving as cases, included 71 persons with nuclear cataracts, 102 with cortical lens opacification, 69 with central optical zone involvement, and 32 with posterior subcapsular lens opacification. Control subjects are those with a different type of lens opacification or without lens opacification. Exposure was assessed based on employment time as pilots, annual number of hours flown on each aircraft type, time tables, flight profiles, and individual cumulative radiation doses (in millisieverts) calculated by a software program. Odds ratios were calculated using logistic regression. RESULTS: The odds ratio for nuclear cataract risk among cases and controls was 3.02 (95% confidence interval, 1.44-6.35) for pilots compared with nonpilots, adjusted for age, smoking status, and sunbathing habits. The odds ratio for nuclear cataract associated with estimation of cumulative radiation dose (in millisieverts) to the age of 40 years was 1.06 (95% confidence interval, 1.02-1.10), adjusted for age, smoking status, and sunbathing habits. CONCLUSION: The association between the cosmic radiation exposure of pilots and the risk of nuclear cataracts, adjusted for age, smoking status, and sunbathing habits, indicates that cosmic radiation may be a causative factor in nuclear cataracts among commercial airline pilots.

Aerospace Medicine↗