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The influence of colonic temperature changes in anaesthetised rats on tail skin temperatures and repeated testing of tail-flick latencies.

机译:麻醉大鼠结肠温度的变化对尾巴皮肤温度的影响以及反复甩尾潜伏期的测试。

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Tail-flick (TF) response latencies were measured in pentobarbitone-anaesthetized rats and variations with time, body and tail temperatures and 5 tail stimuli positions analysed with a mixed model analysis of variance. Variation with time was not significant. Highly significant differences (P < 0.001) were found between tail-flick latencies (TFLs) for tail temperatures and stimulus position. The most proximal tail position showed significantly different relationships for TFL with time and body temperature from other positions. The method described allows multiple TFLs to be measured in 1 animal with the potential of reducing the total number of animals in an experiment. Tail stimuli positions from proximal to distal sites showed a variation in response from 4.3 sec (95% CI: 4.2, 4.4) to 6.7 sec (95% CI: 6.6, 6.9). Rat tail stimulus position should therefore be standardised to allow reproducible measures of TFL and body temperature maintained within normal limits. TFLs were found to be abnormal at body temperatures above 39 degrees C.
机译:在戊巴比妥麻醉的大鼠中测量甩尾(TF)反应潜伏期,并通过方差的混合模型分析来分析随时间,身体和尾巴温度以及5个尾巴刺激位置的变化。随时间变化不明显。发现尾巴温度和刺激位置的甩尾潜伏期(TFL)之间存在极显着差异(P <0.001)。最靠近尾巴的位置与其他位置相比,TFL与时间和体温之间的关系显着不同。所描述的方法允许在1只动物中测量多个TFL,从而有可能减少实验中动物的总数。从近端到远端部位的尾巴刺激位置显示响应从4.3秒(95%CI:4.2、4.4)变化到6.7秒(95%CI:6.6、6.9)。因此,应对大鼠尾巴的刺激位置进行标准化,以使可重复测量的TFL和体温保持在正常范围内。发现体温高于39摄氏度时TFL异常。

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