Selective brain cooling and its vascular basis in diving seals

被引:28
作者
Blix, Arnoldus Schytte [1 ]
Walloe, Lars [2 ]
Messelt, Edward B. [3 ]
Folkow, Lars P. [1 ]
机构
[1] Univ Tromso, Department Arctic Biol, N-9037 Tromso, Norway
[2] Univ Oslo, Inst Basic Med Sci, N-0317 Oslo, Norway
[3] Univ Oslo, Inst Oral Biol, N-0316 Oslo, Norway
关键词
hooded seal Cystophora cristata; harp seal Pagophilus groenlandicus; vascular heat exchange; arterio-venous shunt; rete; hypoxia; PAGOPHILUS-GROENLANDICUS; TEMPERATURE; BEHAVIOR; METABOLISM; GREENLAND; HYPOXIA; STOCK;
D O I
10.1242/jeb.040345
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Brain (T-brain), intra-aorta (T-aorta), latissimus dorsi muscle (T-m) and rectal temperature (T-r) were measured in harp (Pagophilus groenlandicus) and hooded (Cystophora cristata) seals during experimental dives in 4 degrees C water. The median brain cooling was about 1 degrees C during 15 min diving, but in some cases it was as much as 2.5 degrees C. Cooling rates were slow for the first couple of minutes, but increased significantly after about 5 min of diving. The onset of cooling sometimes occurred before the start of the dive, confirming that the cooling is under cortical control, like the rest of the diving responses. T-aorta also fell significantly, and was always lower than T-brain, while T-m was fairly stable during dives. Detailed studies of the vascular anatomy of front flippers revealed that brachial arterial blood can be routed either through flipper skin capillaries for nutritive purposes and return through sophisticated vascular heat exchangers to avoid heat loss to the environment, or, alternatively, through numerous arterio-venous shunts in the skin and return by way of large superficial veins, which then carry cold blood to the heart. In the latter situation the extent to which the brain is cooled is determined by the ratio of carotid to brachial arterial blood flow, and water temperature, and the cooling is selective in that only those organs that are circulated will be cooled. It is concluded that T-brain is actively down-regulated during diving, sometimes by as much as 2.5 degrees C, whereby cerebral oxygen requirements may be reduced by as much as 25% during extended dives.
引用
收藏
页码:2610 / 2616
页数:7
相关论文
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