首页> 外文期刊>The Journal of Experimental Biology >THE KINEMATICS OF SWALLOWING IN THE BUCCAL MASS OF APLYSIA CALIFORNICA
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THE KINEMATICS OF SWALLOWING IN THE BUCCAL MASS OF APLYSIA CALIFORNICA

机译:加利福尼亚念珠菌颊部吞咽的运动学

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摘要

Changes in the positions, shapes and movements of the feeding apparatus (buccal mass) of the marine mollusc Aplysia californica were studied in intact, transilluminated juveniles, The buccal mass assumes characteristic shapes as its internal structure, the radula/odontophore, moves anteriorly (protracts) or posteriorly (retracts), These shapes are especially distinctive when the radula/odontophore has protracted forwards fully, is close to its resting or neutral position, or has retracted backwards fully, We refer to the shapes that occur at full protraction, transition and full retraction as shape 1 (spherical), shape 2 (ovoid) and shape 3 (Gamma-shaped), respectively, We introduce this shape nomenclature in order to avoid confusion with the existing terms protraction and retraction, which we reserve exclusively to describe the direction of movement of the radula/odontophore. The observed shape changes do not agree with those predicted on the basis of in vitro observations of a feeding head preparation, but are similar to shapes observed in vitro in the snail Lymnaea stagnalis, The buccal mass also rotates approximately 10 degrees dorsally during retraction, pivoting on the attachment to the mouth, before the subsequent protraction and return of the buccal mass to the transition shape, This rotation may be due to activation of the extrinsic muscles of the buccal mass. Plots of the buccal mass shape parameters eccentricity versus ellipticity create a two-dimensional shape space, which accurately quantifies the subtle transitions of shape between the different phases of the feeding cycle, Quantitative differences are observed between pure swallows and swallows with tearing behavior, but the qualitative shapes are similar, Hysteresis in the shape space plots of most swallows provides evidence for the hypothesis that protraction and retraction each have distinct 'active' and 'return' phases. The observed kinematic pattern imposes constraints on the internal structures of the buccal mass and may be used to infer the shape and positions of the radula and odontophore. [References: 42]
机译:在完整,透照的幼鱼中研究了海洋软体动物海螺的进食器具(颊部肿块)的位置,形状和运动的变化。颊部肿块由于其内部结构(the状/齿状突)向前移动而呈特征性形状(延长) )或向后(缩回),当弓形齿/齿突完全向前伸出,接近其静止或中立位置或完全向后缩回时,这些形状尤为明显,我们指的是在完全伸出,过渡和完全缩回分别为形状1(球形),形状2(卵形)和形状3(伽玛形),我们引入此形状命名法是为了避免与现有术语“缩回”和“缩回”混淆,我们保留这些术语专门描述rad /齿状突的运动方向。观察到的形状变化与根据喂食头制备物的体外观察结果预测的形状变化不一致,但是与在蜗牛Lymnaea stagnalis中在体外观察到的形状相似。在回缩过程中,颊侧块体也沿背侧旋转约10度,旋转在口腔附着物上,在随后颊部块向前伸出和返回过渡形状之前,这种旋转可能是由于颊部块的外在肌肉的激活所致。颊部质量形状参数的偏心率与椭圆率的关系图创建了一个二维形状空间,该空间准确地量化了喂养周期不同阶段之间形状的细微过渡。观察到纯燕子和具有撕裂行为的燕子之间存在定量差异,但是定性形状相似,大多数燕子的形状空间图中的滞后现象为以下假设提供了证据:延长和缩回分别具有不同的“活动”和“返回”阶段。观察到的运动学模式对颊块的内部结构施加了约束,并且可以用于推断in和齿突的形状和位置。 [参考:42]

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