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在不同温度下饲养的蟒蛇中温觉感受器的活性。

Activity of warm receptors in Boa constrictor raised at various temperatures.

作者信息

Hensel H, Schäfer K

出版信息

Pflugers Arch. 1981 Dec;392(2):95-8. doi: 10.1007/BF00581255.

DOI:10.1007/BF00581255
PMID:7322848
Abstract

Nine young specimens of Boa constrictor were raised for 4 years in a climatic chamber at an ambient temperature of 30 degrees C under artificial illumination. Seven boas were raised at 23 degrees C under the same conditions. At the end of the adaptation period, mean body weight of the warm adapted boas was 9.6 +/- 0.8 kg and that of the cold adapted ones 5.9 +/- 0.3 kg. Static and dynamic activities of single specific trigeminal warm fibers were recorded when applying static temperatures of 20, 23, 26, 29, 32, 35 and 38 degrees C and dynamic warming steps of 3 degrees C, the initial temperatures being 20, 23, 26, 29, 32 and 35 degrees C. Eighty-nine warm fibers were examined in the warm adapted and 62 fibers in the cold adapted group. The average static frequencies between 29 and 35 degrees C were higher in the warm adapted animals, the respective values for both groups at 32 degrees C being 16.5 and 12 s-1. The average peak frequencies for dynamic warming were 80 s-1 for both groups, but the temperature of the dynamic maximum was shifted from 32 degrees C in the warm adapted to 26 degrees C in the cold adapted boas. At 32 and 35 degrees C the average peak frequencies were higher in the warm adapted animals. The whole fiber population contained various groups with static maxima between 23 and 35 degrees C. Long-term adaptation modified mainly the static and dynamic discharge of the low-temperature fibers. The fiber group with a static maximum at 29 degrees C showed a crossing of the static and dynamic frequency-temperature curves. In the higher temperature range the warm adapted animals had a higher and in the lower temperature range a lower static and dynamic frequency.

摘要

九条幼年红尾蚺在气候箱中于30摄氏度的环境温度下、人工光照条件下饲养4年。七条红尾蚺在相同条件下于23摄氏度饲养。适应期结束时,温暖适应组红尾蚺的平均体重为9.6±0.8千克,寒冷适应组为5.9±0.3千克。当施加20、23、26、29、32、35和38摄氏度的静态温度以及3摄氏度的动态升温步长(初始温度为20、23、26、29、32和35摄氏度)时,记录单个特定三叉神经温暖纤维的静态和动态活动。温暖适应组检查了89条温暖纤维,寒冷适应组检查了62条纤维。在29至35摄氏度之间,温暖适应动物的平均静态频率更高,两组在32摄氏度时的相应值分别为16.5和12次/秒。两组动态升温的平均峰值频率均为80次/秒,但动态最大值的温度从温暖适应组的32摄氏度转移到寒冷适应组的26摄氏度。在32和35摄氏度时,温暖适应动物的平均峰值频率更高。整个纤维群体包含静态最大值在23至35摄氏度之间的不同组。长期适应主要改变了低温纤维的静态和动态放电。静态最大值在29摄氏度的纤维组显示静态和动态频率-温度曲线交叉。在较高温度范围内,温暖适应动物具有较高的静态和动态频率,而在较低温度范围内则较低。

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Activity of warm receptors in Boa constrictor raised at various temperatures.在不同温度下饲养的蟒蛇中温觉感受器的活性。
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本文引用的文献

1
Static an dynamic activity of cold receptors in cats after long-term exposure to various temperatures.长期暴露于不同温度后猫冷感受器的静态和动态活动
Pflugers Arch. 1982 Jan;392(3):291-4. doi: 10.1007/BF00584313.
2
The radiant heat receptor and other tissue receptors in the scales of the upper jaw of boa constrictor.蟒蛇上颌鳞片中的辐射热感受器及其他组织感受器。
Anat Embryol (Berl). 1974;145(3):299-319. doi: 10.1007/BF00519640.
3
Static and dynamic activity of warm receptors in Boa constrictor.红尾蚺中温觉感受器的静态和动态活动
Pflugers Arch. 1975;353(3):191-9. doi: 10.1007/BF00584283.