Schaber Clemens F, Barth Friedrich G
Functional Morphology and Biomechanics, Zoological Institute, Kiel University, Am Botanischen Garten 1-9, 24118, Kiel, Germany,
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2015 Feb;201(2):235-48. doi: 10.1007/s00359-014-0965-4. Epub 2014 Nov 15.
Adding to previous efforts towards a better understanding of the remarkable diversity of spider mechanosensitive hair sensilla, this study examines hairs of Cupiennius salei most likely serving a proprioreceptive function. At the tibia-metatarsus joint of all walking legs, there are two opposing groups of hairs ventrally on the tibia (20 hairs) and metatarsus (75 hairs), respectively. These hairs deflect each other when the joint flexes during locomotion, reversibly interlocking by microtrichs on their hair shafts. The torque resisting the hair deflection into the direction of natural stimulation is smaller by up to two powers of ten than that for the other directions. The torsional restoring constant S of the hair suspension is about 10(-10) Nm rad(-1) in the preferred direction, up to a hair deflection angle of 30° (mean of natural deflection angles). Joint movements were imposed in ranges and at rates measured in walking spiders and sensory action potentials recorded. Within the natural step frequencies (0.3-3 Hz) the rate of action potentials follows the velocity of hair deflection. All findings point to the morphological, mechanical, and physiological adaptedness of the joint hair sensilla to their proprioreceptive stimulation during locomotion.
在之前为更好地理解蜘蛛机械敏感毛感受器的显著多样性所做努力的基础上,本研究考察了最有可能具有本体感受功能的莱氏栉足蛛的毛发。在所有步足的胫跗关节处,胫节腹侧(20根毛发)和跗节腹侧(75根毛发)分别有两组相对的毛发。在运动过程中,当关节弯曲时,这些毛发相互偏转,通过其毛干上的微毛可逆地联锁。抵抗毛发向自然刺激方向偏转的扭矩比其他方向小多达两个数量级。在首选方向上,毛发悬置的扭转恢复常数S约为10^(-10) Nm rad^(-1),直至毛发偏转角达到30°(自然偏转角的平均值)。以行走蜘蛛测量的范围和速率施加关节运动,并记录感觉动作电位。在自然步频(0.3 - 3 Hz)范围内,动作电位的频率跟随毛发偏转的速度。所有发现都表明关节毛发感受器在形态、机械和生理上对其在运动过程中的本体感受刺激具有适应性。