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首页> 外文期刊>The Journal of Experimental Biology >DIGGING IN SAND CRABS (DECAPODA, ANOMURA, HIPPOIDEA) - INTERLEG COORDINATION
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DIGGING IN SAND CRABS (DECAPODA, ANOMURA, HIPPOIDEA) - INTERLEG COORDINATION

机译:在沙蟹(十足动物,阿努莫拉动物,海马动物)中挖掘-交错协调

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Sand crabs (Decapoda, Anomura, Hippoidea) are highly specialised for digging into sand using their thoracic legs, Using video-recording and electromyography, we examined the digging leg movements of three species of sand crabs belonging to two families: Blepharipoda occidentalis (Albuneidae), Lepidopa californica (Albuneidae) and Emerita analoga (Hippidae), The digging patterns of all three species are similar, The ipsilateral legs 2 and 3 are tightly coupled and shovel sand forward from underneath the animal, whereas the movements of leg 4 are more variable, apparently stirring up sand and providing the purchase for rearward descent into the sand, The digging patterns of B. occidentalis and L. californica resemble each other more than either resembles that of E. analoga, In the albuneids, leg 4 cycles at the same frequency as legs 2 and 3, and both albuneid species switch gait from bilateral alternation to synchrony midway through digging, In E. analoga, right and left legs 2 and 3 always alternate, Legs 4 can cycle at about twice the frequency of legs 2 and 3, and they tend to move in bilateral synchrony during high-frequency leg movements (e.g. at the start of digging); their bilateral coupling becomes variable during low-frequency movements, Sand crab digging may have originated as a modified form of walking, but this behavioural innovation subsequently diverged in the sand crab superfamily. [References: 59]
机译:沙蟹(Decapoda,Anomura,Hippoidea)非常擅长使用胸腿挖沙子,通过视频记录和肌电图检查了属于两个科的三种沙蟹的挖腿运动:Blepharipoda occidentalis(Albuneidae) ,加州鳞翅目(Alpiduneidae)和类似物Emerita类似物(Hippidae),这三个物种的挖掘方式都相似,同侧的第2和第3脚紧密耦合,并从动物下方向前铲沙,而第4脚的运动变化更大,显然是搅动沙子,并为以后下降的沙子提供了购买的机会。B. occidentalis和L. californica的挖掘方式彼此相似,而不像E. Analoga相似。在第2条和第3条腿上出现频率较高,并且两种类臭虫物种的步态都从挖掘的双侧交替切换到同步,在大肠埃希菌中,右腿和左腿2和3 al方式交替时,腿4的循环频率大约是腿2和3的两倍,并且在高频腿运动过程中它们倾向于双向同步运动(例如在开始挖掘时);在低频运动中,它们的双侧耦合变得可变,沙蟹的挖掘可能起源于步行的一种改良形式,但这种行为创新随后在沙蟹超家族中出现了分歧。 [参考:59]

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