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The kinematics of multifunctionality: comparisons of biting and swallowing in Aplysia californica

机译:多功能运动学:加州海ly咬和吞咽的比较

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摘要

What are the mechanisms of multifunctionality, i.e. the use of the same peripheral structures for multiple behaviors? We studied this question using the multifunctional feeding apparatus of the marine mollusk Aplysia californica, in which the same muscles mediate biting (an attempt to grasp food) and swallowing (ingestion of food). Biting and swallowing responses were compared using magnetic resonance imaging of intact, behaving animals and a three-dimensional kinematic model. Biting is associated with larger amplitude protractions of the grasper (radula/odontophore) than swallowing, and smaller retractions. Larger biting protractions than in swallowing appear to be due to a more anterior position of the grasper as the behavior begins, a larger amplitude contraction of protractor muscle I2, and contraction of the posterior portion of the I1/I3/jaw complex. The posterior I1/I3/jaw complex may be context-dependent, i.e. its mechanical context changes the direction of the force it exerts. Thus, the posterior of I1/I3 may aid protraction near the peak of biting, whereas the entire I1/I3/jaw complex acts as a retractor during swallowing. In addition, larger amplitude closure of the grasper during swallowing allows an animal to exert more force as it ingests food. These results demonstrate that differential deployment of the periphery can mediate multifunctionality.
机译:多功能的机制是什么,即对多种行为使用相同的外围结构?我们使用海洋软体动物海ApAversia californica的多功能饲喂设备研究了这个问题,在该设备中,相同的肌肉介导了咬(试图抓住食物)和吞咽(食物摄入)。使用完整的行为动物的磁共振成像和三维运动学模型比较咬和吞咽反应。咬合与抓地器的较大幅度突伸(锯齿状/齿状突)相比可吞咽和较小的缩回相关。与吞咽相比,较大的咬合拉长似乎是由于行为开始时抓紧器的位置更靠前,量角肌I2的幅度收缩较大以及I1 / I3 /下颌复合体的后部收缩。后I1 / I3 /下颌复合体可能与上下文有关,即其机械上下文会改变其施加力的方向。因此,I1 / I3的后部可能有助于在咬合的峰值附近伸出,而整个I1 / I3 /下颌复合体在吞咽过程中起牵开器的作用。另外,吞咽期间抓握器的较大幅度闭合可使动物在摄取食物时施加更大的力。这些结果表明外围的不同部署可以介导多功能。

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