By Z. Szelényi, M. Székely
Advances in Physiological Sciences, quantity 32: Contributions to Thermal body structure is a suite of papers that information the advances within the figuring out of the thermal elements of body structure.
The first a part of the identify offers articles approximately primary anxious regulate of physique temperature, whereas the second one half covers papers approximately fever. subsequent, the choice offers with mind cooling, in addition to thermoregulation and sleep. The 5th half covers phylogenic points of temperature legislation, whereas the 6th half tackles acclimation. subsequent, the choice talks approximately age-related distinction in temperature rules and the peripheral effector mechanisms. The textual content additionally covers the brown adipose tissue and the relevance of workout in regulating physique temperature.
The e-book could be of serious curiosity to scholars, researchers, and practitioners of drugs and biology.
Read or Download Contributions to Thermal Physiology. Satellite Symposium of the 28th International Congress of Physiological Sciences, Pécs, Hungary, 1980 PDF
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Additional info for Contributions to Thermal Physiology. Satellite Symposium of the 28th International Congress of Physiological Sciences, Pécs, Hungary, 1980
001 optic region cannot be simply viewed as dependent on the dif ferent thermal loads affecting thermoregulatory mechanisms. In fact, control and recovery conditions have the same T a . Moreover, the transient thermal load due to the increase of T a from -10 °C during exposure to 22 °C during recovery should not affect the data, as the first sacrifice of animals occurred two hours after this T a change. On the basis of the interaction between thermoregulatory and sleep processes (cf. Heller and Glotzbach 1977; Parmeggiani 1977), cAMP concentrations observed in the preoptic region under different experimental conditions may be assumed to depend on CNS activity levels related not only to thermoregula tor-y adjustments, but also to wakefulness - sleep processes.
7%) were cold-sen sitive. The remaining units did not respond to temperature. 7%, 8 of 290) in the rat desensitized after growing up. 6%, 9 of 136)(Hori, 1980). These results, taken together, support the view that the disturbance of thermoregulation against heat in the capsaicindesensitized rat is brought about, at least in part, by im paired functions of PO/AH thermo-sensitive neurons. It is also suggested that the warm-detectors responsible for thermoregula tion in the rat, once desensitized with capsaicin at its neo natal period, are not newly formed or do not regain their function with growth thereafter.
Temperature selection. Fig. 1 clearly shows that control rats subjected to 5°C dif ferences in Ta chose Ta Control nearer the thermoneutral (5) one (28-30°C) in both cold 100 and warm environment. Sig /(6) 80 V nificant change in Tr en sued only if they had to 60 choose between the two warm 40 Ta-s. c. given capsaicin 10min periods did not differ significant ly from those of the con 42 trols and all of them show 40 ed signs of piloerection. 38 36· f t i t 110-15115-201 130-35135-401 · ▲ O Δ II I t Jj t t 110-15115-201 13Q-35I35-40I · A O Δ Pig.