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大鼠前脑儿茶酚胺终末场去神经支配后运动和探究性探索减少。

Decreased locomotor and investigatory exploration after denervation of catecholamine terminal fields in the forebrain of rats.

作者信息

Dubois A B, Ogilvy C S

出版信息

J Exp Biol. 1978 Dec;77:225-41. doi: 10.1242/jeb.77.1.225.

Abstract
  1. Pressures on the right and left sides of the tails of swimming bluefish were measured and found to have a range of +5.9 to -5.9 cm H2O. The pressures were resolved into their forward and lateral vectorial components of force to allow calculation of forward and lateral force and power at speeds ranging from 0.26 to 0.87 m/s. 2. The peak to peak changes in force of acceleration of the body, measured with a forward accelerometer averaged 209 g or 2.05 N at 0.48 m/s, and were compared with the maximum to minimum excursions of forward tail force averaging 201 g or 1.97 N at the same speed. The mean difference was 8 g, S.D. of the mean difference +/-29, SE. of mean difference +/-10 g. 3. Mean tail thrust was calculated as the time average of tail force in the forward direction. It averaged 65 g , or 0.64 N, at 0.48 m/s. The mean forward power was 0.34 N m/s at 0.48 m/s. The drag of the gauges and wires accounted for 10% of this figure. 4. The mean lateral power of the tail was 1.28 N m/s at a mean speed of 0.48 m/s. 5. The propulsive efficiency of the tail, calculated as the ratio of forward power to forward plus lateral power, was found to be 0.20 S.D.+/-0.04, S.E.+/-0.01 and was not related to speed. This suggests that 80% of the mechanical power of the tail was wasted. Turbulence in the water may have contributed to this large drag and low tail efficiency.
摘要
  1. 对游动的蓝鱼鱼尾左右两侧的压力进行了测量,发现压力范围为+5.9至-5.9厘米水柱。将压力分解为向前和横向的矢量力分量,以便计算速度范围为0.26至0.87米/秒时的向前和横向力及功率。2. 用前向加速度计测量的身体加速度力的峰峰值变化,在0.48米/秒时平均为209克或2.05牛,并与同一速度下向前鱼尾力的最大到最小偏移量进行比较,平均为201克或1.97牛。平均差异为8克,平均差异的标准差为±29,平均差异的标准误为±10克。3. 平均尾推力计算为向前方向鱼尾力的时间平均值。在0.48米/秒时平均为65克,即0.64牛。在0.48米/秒时平均向前功率为0.34牛·米/秒。测量仪器和电线的阻力占该数值的10%。4. 在平均速度0.48米/秒时,鱼尾的平均横向功率为1.28牛·米/秒。5. 鱼尾的推进效率计算为向前功率与向前加横向功率之比,结果为0.20,标准差为±0.04,标准误为±0.01,且与速度无关。这表明鱼尾80%的机械功率被浪费了。水中的湍流可能导致了这种大阻力和低鱼尾效率。

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