Manifestation of radiation effects in cold environment: data review and modeling

被引:10
作者
Sazykina, T. G. [1 ]
Kryshev, A. I. [1 ]
机构
[1] Res & Prod Assoc Typhoon, Obninsk 249038, Kaluga Region, Russia
关键词
CITELLUS TRIDECEMLINEATUS; IONIZING-RADIATION; NOVAYA-ZEMLYA; FISH; TEMPERATURE; EXPOSURE; THERMOREGULATION; TERRESTRIAL; POPULATION; RECOVERY;
D O I
10.1007/s00411-010-0336-7
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
The peculiarities of radiation response in animals at low environmental temperatures are analyzed in the context of radiation safety of the Arctic/Northern wildlife. The paper includes a data review on radiation effects in cold environments based on international and Russian publications since 1948, which forms a supplement to the EPIC and FREDERICA data collections. In homoiothermic and heterothermic animals, imbalances in thermoregulation caused by ionizing radiation are discussed, which increase energy loss of animals, and decrease their fitness to the Arctic/Northern climate. In poikilothermic animals, both radiation damage and recovery are temperature dependant, their rates being slow in the cold environment. At low temperatures, radiation damage of biological tissues is conserved in hidden form; when the temperature of poikilothermic animal rises to a normal level, radiation injury is developed rapidly similar to acute dose response. Additionally, a mathematical model is described, demonstrating the combined effects of chronic radiation exposures and seasonal temperature variations on a fish population. Computer simulations show that at the same level of irradiation, the overall radiation damage to Arctic/Northern poikilothermic fish is higher than that to the fish from warm climate. Considering the peculiarities of radiation effects in the cold climate, the Arctic/Northern fauna might be expected to be more vulnerable to chronic radiation stress compared to temperate fauna. In the case of acute radiation exposure during winter periods, hibernation of heterothermic and cooling of poikilothermic animals may provide temporary protection from acute radiation effects.
引用
收藏
页码:105 / 114
页数:10
相关论文
共 51 条
[1]  
Andersson P., 2008, Numerical Benchmarks for Protecting Biota against Radiation in the Environment: Proposed Levels and Underlying Reasoning
[2]  
[Anonymous], 1998, NEUROPSYCHIATRIC EFF
[3]  
[Anonymous], 1982, ION RAD SOURC BIOL E
[4]  
[Anonymous], RADIOPROTECTION S1
[5]  
Bacq Z.M., 1966, FUNDAMENTALS RADIOBI
[6]   EFFECT OF BODY TEMPERATURE AND POSTIRRADIATION COLD EXPOSURE ON RADIATION RESPONSE OF HIBERNATOR CITELLUS TRIDECEMLINEATUS [J].
BARR, RE ;
MUSACCHI.XJ .
RADIATION RESEARCH, 1969, 38 (02) :437-&
[7]  
Blatteis CM., 1998, Physiology and pathophysiology of temperature regulation
[8]   EFFECT OF TEMPERATURE ON DOSE RESPONSE OF GAMBUSIA AFFINIS AFFINIS FROM 2 NATURAL POPULATIONS [J].
BLAYLOCK, BG ;
MITCHELL, TJ .
RADIATION RESEARCH, 1969, 40 (03) :503-&
[9]  
Blix AS, 2005, ARCTIC ANIMALS THEIR, P296
[10]   METABOLIC AND THERMOREGULATORY EFFECTS OF ACUTE CO-60 RADIATION IN MYOMORPH RODENTS [J].
BRAHAM, HW ;
SACHER, GA .
RADIATION RESEARCH, 1978, 75 (01) :108-120