首页> 外文期刊>The Journal of Experimental Biology >Effect of temperature on leg kinematics in sprinting tarantulas (Aphonopelma hentzi): high speed may limit hydraulic joint actuation
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Effect of temperature on leg kinematics in sprinting tarantulas (Aphonopelma hentzi): high speed may limit hydraulic joint actuation

机译:温度对短跑狼蛛(Aphonopelma hentzi)腿部运动的影响:高速可能会限制液压关节的致动

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摘要

Tarantulas extend the femur-patella (proximal) and tibia-metatarsal (distal) joints of their legs hydraulically. Because these two hydraulically actuated joints are positioned in series, hemolymph flowwithin each leg is expected to mechanically couple the movement of the joints. In the current study, we tested two hypotheses: (1) at lower temperatures, movement of the two in-series hydraulic joints within a leg will be less coupled because of increased hemolymph viscosity slowing hemolymph flow; and (2) at higher temperatures, movement of the two in-series hydraulic joints will be less coupled because the higher stride frequencies limit the time available for hemolymph flow. We elicited maximal running speeds at four ecologically relevant temperatures (15, 24, 31 and 40 degrees C) in Texas Brown tarantulas (Aphonopelma hentzi). The spiders increased sprint speed 2.5-fold over the temperature range by changing their stride frequency but not stride length. The coefficient of determination for linear regression (R-2) of the proximal and distal joint angles was used as the measure of the degree of coupling between the two joints. This coupling coefficient between the proximal and distal joint angles, for both forelegs and hindlegs, was significantly lowest at the highest temperature at which the animals ran the fastest with the highest stride frequencies. The coordination of multiple, in-series hydraulically actuated joints may be limited by operating speed.
机译:狼蛛通过液压方式伸展腿部的股骨pat骨(近端)和胫骨-内侧(远端)关节。因为这两个液压致动关节是串联放置的,所以预期每条腿内的血淋巴流动会机械耦合关节的运动。在当前的研究中,我们测试了两个假设:(1)在较低的温度下,由于增加的淋巴液粘度降低了淋巴液的流动,一条腿内两个串联液压关节的运动耦合较少。 (2)在较高的温度下,两个串联的液压接头的运动耦合较少,因为较高的步幅频率限制了可用于血淋巴流动的时间。我们在德克萨斯州布朗狼蛛(Aphonopelma hentzi)的四个与生态相关的温度(15、24、31和40摄氏度)下获得了最大的运行速度。通过更改步幅频率而不改变步幅长度,蜘蛛可以在整个温度范围内将冲刺速度提高2.5倍。近端和远端关节角度的线性回归确定系数(R-2)用作两个关节之间耦合程度的度量。对于前腿和后腿,近端和远端关节角度之间的耦合系数在最高温度下显着最低,在最高温度下动物以最快的步幅跑得最快。多个串联的液压致动关节的配合可能会受到操作速度的限制。

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