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首页> 外文期刊>The Journal of Experimental Biology >Using ultrasound to understand vascular and mantle contributions to venous return in the cephalopod Sepia officinalis L.
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Using ultrasound to understand vascular and mantle contributions to venous return in the cephalopod Sepia officinalis L.

机译:使用超声了解头足类乌贼墨中血管和套膜对静脉回流的贡献。

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Using ultrasound imaging, we investigated the roles of the potentially contractile veins and of the mantle (the powerful body wall that moves water over the gills, and also encloses the large veins and the hearts) in returning the blood of cuttlefish to its hearts. Ultrasound provided the first non-invasive observations of vascular function in an unanaesthetized, free-moving cephalopod. The large veins (anterior vena cava, lateral venae cavae and efferent branchial vessels) contracted in live, intact cuttlefish (Sepia officinalis L.). The anterior vena cava contracted at the same rate as the mantle, but it often expanded during mantle contraction. Furthermore, the anterior vena cava contracted peristaltically in vivo, suggesting that it actively aids venous return. The lateral venae cavae and efferent branchial vessels contracted at the same rate as the branchial and systemic hearts, but at a different rate from the mantle. A peristaltic wave appeared to travel along the lateral venae cavae to the branchial hearts, potentially aiding venous return. We found a muscular valve between the anterior and lateral venae cavae, which ensured that blood flowed only one way between these unsynchronized vessels. The mantle appears to have an unclear connection with cardiovascular function. We conclude that, when cuttlefish are at rest, the mantle does not compress any of the large veins that we imaged (including the anterior vena cava), and that peristaltic contractions of the large veins might be important in returning cephalopod blood to the hearts.
机译:使用超声成像,我们研究了可能收缩的静脉和地幔(强大的体壁,将水移动到g上方,并且还包裹着大静脉和心脏)在将墨鱼的血液回流到其心脏中的作用。超声是在未麻醉的,自由移动的头足类动物中首次对血管功能进行非侵入性观察。大静脉(前腔静脉,外侧静脉腔静脉和传出的分支血管)在完整的活乌贼(Sepia officinalis L.)中收缩。前腔静脉的收缩速度与地幔的收缩速度相同,但通常在地幔收缩期间会扩张。此外,前腔静脉在体内蠕动收缩,表明它积极地帮助静脉回流。静脉侧静脉和分支小血管收缩的速率与分支和全身心脏的收缩速率相同,但与套膜的收缩速率不同。蠕动波似乎沿着外侧静脉向分支心脏传播,可能有助于静脉回流。我们在前静脉腔和侧静脉腔之间发现了一个肌肉瓣膜,从而确保血液仅在这些不同步血管之间流动。地幔似乎与心血管功能之间的联系不清楚。我们得出的结论是,当墨鱼静止时,地幔不会压缩我们成像的任何大静脉(包括前腔静脉),并且大静脉的蠕动收缩可能对将头足类血液回流到心脏很重要。

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