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Properties of the Optokinetic Motor Fibres in the Rock Lobster: Build-Up, Flipback, Afterdischarge and Memory, Shown by Their Firing Patterns

机译:岩石龙虾中的视音电机纤维的性能:射击模式显示的积聚,向上,后放电和记忆

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摘要

The properties of sets of motor fibres responding to both clockwise and anticlockwise rotation have been studied in the oculomotor nerve of the rock lobster. There are probably three, but perhaps four, units in each set.udNone of these fibres has statocyst input, but there is weak input onto the tonic fibres from the antennal joints such that the eye turns in the direction toward which the antenna points.udMany preparations show bilateral visual input onto all fibres but the degree of coupling between the eyes is very variable, and at times can be nearly totally absent.udDepending on the speed of rotation the fibres show a gradual build-up in frequency, during rotation in the preferred direction, interrupted by flipbacks. During the fast stage of the resulting nystagmic movements all agonistic fibres can be completely inhibited and all antagonistic ones can be activated, usually for a period of about 0.5 sec.udFibre activity is demonstrated which appears to underlie an ‘optokinetic memory’ of contrasting target position in the visual field. It consists of (a) very prolonged after-discharges for a stationary striped pattern (b) resumption of discharges at an appropriate frequency after dark periods up to 2 min, and (c) adjustment of such frequencies to changes in stripe position during the dark period.udThe fibres show habituation to repeated stripe movement but the response can be dishabituated by passive rotation of the animal.udThe largest visual responses were obtained to intermediate speeds of stripe rotation (about 2°/sec).
机译:已经在龙虾的动眼神经中研究了响应顺时针和逆时针旋转的一组运动纤维的特性。每组中可能有三个,但可能是四个单元。 ud这些纤维中没有一个具有滑囊输入,但是从触角关节到滋补纤维上的输入较弱,因此眼睛朝天线指向的方向转动。 ud许多准备工作表明,双侧视觉输入到所有纤维上,但眼睛之间的耦合程度非常可变,有时几乎完全不存在。 ud根据旋转速度,纤维在旋转过程中会逐渐形成频率沿首选方向旋转,并受到翻转的干扰。在产生的眼球震颤运动的快速阶段,所有激动性纤维都可以被完全抑制,所有拮抗性纤维可以被激活,通常持续约0.5秒钟。 ud证明了纤维活性似乎是对比靶标的“光动力学记忆”的基础在视野中的位置。它包括(a)长时间延长的固定条纹放电(b)在长达2分钟的黑暗时段后以适当的频率恢复放电,以及(c)调整这些频率以在黑暗期间改变条纹位置纤维显示出对条带重复运动的习惯,但是响应可能因动物的被动旋转而消失。 ud对条带旋转的中间速度(大约2°/秒)获得了最大的视觉响应。

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