Reconstructing the subcephalic musculature in Pucapampella and Ichthyostega

IF 1.5 4区 医学 Q2 ANATOMY & MORPHOLOGY
Alexander N. Kuznetsov, Nadezhda V. Kryukova
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引用次数: 0

Abstract

We present new reconstructions of subcephalic musculature for the stem chondrichthyan Pucapampella, the tetrapodomorph fish Eusthenopteron, and the Devonian tetrapod Ichthyostega. These reconstructions are based on macroscopic dissections of the head muscles of an archaic shark Heptranchias and an archaic actinopterygian Polypterus, that are combined with functional considerations and a reappraisal of not widely known theoretical concepts from the past. The subcephalic, as well as the supracephalic, musculature is formed by four anterior myomeres. They are continuous with subsequent myomeres of the trunk, but are innervated by ventral nerve roots of the medulla oblongata and thus belong to the head. The fourth subcephalic myomere ends with its posterior myoseptum on the occiput in osteichthyans, but on the first vertebra in chondrichthyans. The original function of subcephalic and supracephalic muscles in basal gnathostomes supposedly was to hold together anterior and posterior parts of the neurocranium during interaction with prey, such as the backward-ripping prey dissection, hypothesized for Pucapampella. In sarcopterygian osteichthyans, subcephalic musculature is involved in active depression of the anterior part of the neurocranium; specialization of this mechanism resulted in a complete separation of m. subcephalicus from trunk myomeres in Latimeria. Fusion of anterior and posterior parts of the neurocranium has resulted in reduction of the subcephalic musculature in the majority of cartilaginous and bony fishes. However, hexanchid sharks retain three posterior subcephalic myomeres for backward-ripping prey dissection. Polypterus and Chauliodus have retained the subcephalic musculature, but its function has shifted to a depression of the whole neurocranium.

Abstract Image

重建Pucapampella和鱼石螈的头下肌肉组织
我们提出了新的重建头下肌肉组织的干软骨鱼Pucapampella,四足鱼类真鳍鱼,和泥盆纪四足鱼石螈。这些重建是基于对一种古代鲨鱼(Heptranchias)和一种古代鲨鱼(actinopterygian polyterus)头部肌肉的宏观解剖,结合功能考虑和对过去不广为人知的理论概念的重新评估。头下和头上的肌肉组织由四个前肌节组成。它们与干的肌节相连,但受延髓的腹侧神经根支配,因此属于头。第四个头下肌粒以后肌隔结束,在骨鱼目动物中止于枕部,在软骨鱼目动物中止于第一椎体。据推测,基底颌口的头下和头上肌肉的原始功能是在与猎物相互作用时将神经头盖骨的前后部分固定在一起,例如对Pucapampella假设的向后撕裂猎物解剖。在肉龙类骨鱼类中,头下肌肉组织参与神经颅骨前部的主动凹陷;这一机制的特化导致了拉丁美洲的头下棘球蚴与树干肌粒的完全分离。在大多数软骨和硬骨鱼类中,神经颅骨前后部分的融合导致了头下肌肉组织的减少。然而,六尾鲨保留三个后头下肌节用于向后撕裂猎物解剖。polyterus和Chauliodus保留了头下肌肉组织,但其功能已转移到整个神经颅骨的凹陷。
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来源期刊
Journal of Morphology
Journal of Morphology 医学-解剖学与形态学
CiteScore
2.80
自引率
6.70%
发文量
119
审稿时长
1 months
期刊介绍: The Journal of Morphology welcomes articles of original research in cytology, protozoology, embryology, and general morphology. Articles generally should not exceed 35 printed pages. Preliminary notices or articles of a purely descriptive morphological or taxonomic nature are not included. No paper which has already been published will be accepted, nor will simultaneous publications elsewhere be allowed. The Journal of Morphology publishes research in functional, comparative, evolutionary and developmental morphology from vertebrates and invertebrates. Human and veterinary anatomy or paleontology are considered when an explicit connection to neontological animal morphology is presented, and the paper contains relevant information for the community of animal morphologists. Based on our long tradition, we continue to seek publishing the best papers in animal morphology.
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