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Kinematics of Stewart Platform Explains Three-Dimensional Movement of Honeybee’s Abdominal Structure

机译:Stewart平台的运动学解释了蜜蜂腹部结构的三维运动

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摘要

The Stewart platform is a typical parallel mechanism, used extensively in flight simulators with six degrees of freedom. It is rarely found in animals and has never been reported to regulate and control physiological activities. Now an equivalent Stewart platform structure is found in the honey bee (Hymenoptera: Apidae: Apis mellifera L.) abdomen to explain its three-dimensional movements. The stereoscope and scanning electron microscope are used to observe the internal structures of honeybees’ abdomens. Experimental observations show that the muscles and intersegmental membranes connect the terga with the sterna and guarantee the honey bee abdominal movements. From the perspective of mechanics, a Stewart platform is evolved from the lateral connection structure of the honey bee abdomen, and the intrasegmental muscles between the sternum and tergum function as actuators between planes of the Stewart platform. The extraordinary structure provides various advantages for a honey bee to complete a variety of physiological activities. This equivalent Stewart platform structure can also be used to illustrate the flexible abdominal movements of other insects with the segmental abdomen.
机译:Stewart平台是一种典型的并行机制,广泛用于具有六个自由度的飞行模拟器中。它很少在动物中发现,从未报道过调节和控制生理活动。现在,在蜜蜂腹部(膜翅目:Apididae:Apis mellifera L.)的腹部中发现了等效的Stewart平台结构,以解释其三维运动。立体镜和扫描电子显微镜用于观察蜜蜂腹部的内部结构。实验观察表明,肌肉和节间膜将Terga与胸骨相连,并保证蜜蜂的腹部运动。从力学的角度来看,Stewart平台是从蜜蜂腹部的侧向连接结构演变而来的,胸骨和Tergum之间的节段内肌肉充当Stewart平台的平面之间的促动器。非凡的结构为蜜蜂完成各种生理活动提供了多种优势。这种等效的Stewart平台结构还可以用于说明其他昆虫与节腹的灵活腹部运动。

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