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The conus arteriosus of the adult gilthead seabream (Sparus auratus).

机译:成年的金头鲷(Sparus auratus)的圆锥动脉。

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This paper reports on the presence of the conus arteriosus in the heart of the adult gilthead seabream, Sparus auratus (Perciformes, Teleostei). The junctional region between the single ventricle and the bulbus arteriosus has been studied by conventional light microscopy, and by scanning and transmission electron microscopy. In addition, fluorescent phalloidin and antibodies against the muscle myosin heavy chains, laminin and collagen type IV have been used. The conus arteriosus is a distinct muscular segment interposed between the ventricle and the bulbus arteriosus. It is clearly different from the bulbus arteriosus due to its myocardial nature. It can also be distinguished from the ventricular myocardium because: (1) it has a conus shape; (2) it is formed by compact, well-vascularized myocardium; (3) it is surrounded on its inner and outer faces by fibrous layers rich in collagen and elastin; (4) it constitutes the anatomical support of the so-termed conus valves; (5) it shows intense staining for laminin and type-IV collagen; and (6) the myocardial cells located close to the inner fibrous layer are helicoidally arranged. By contrast, the ventricular myocardium is highly trabecular, lacks a compacta, shows no vessels, and presents barely detectable amounts of laminin and collagen type IV. The presence of a distinct conus arteriosus in the heart of an evolutionary advanced teleost species indicates that the conus is not a vestigial segment from the evolutionary or embryological points of view. The characteristic spatial arrangement of the conus myocytes strongly suggests that the conus is implicated in the mechanical performance of the conus valves.
机译:本文报道了成年的金头鲷(Sparus auratus)(Perciformes,Teleostei)的心脏中存在圆锥动脉。通过常规的光学显微镜,以及通过扫描和透射电子显微镜,已经研究了单心室和动脉球囊之间的连接区域。另外,已经使用了荧光鬼笔环肽和针对肌肉肌球蛋白重链,层粘连蛋白和IV型胶原的抗体。圆锥动脉是介于脑室和圆锥动脉之间的明显的肌肉段。由于其心肌性质,它明显不同于动脉球囊。它也可以与心室心肌区分开来,因为:(1)它具有圆锥形状; (2)它是由紧密的血管良好的心肌形成的; (3)它的内外表面被富含胶原蛋白和弹性蛋白的纤维层包围; (4)它构成所谓的圆锥形瓣膜的解剖学支撑; (5)对层粘连蛋白和IV型胶原蛋白染色强烈; (6)位于内侧纤维层附近的心肌细胞呈螺旋状排列。相比之下,心室心肌是高度小梁的,缺乏致密性,没有血管,并且几乎检测不到层粘连蛋白和IV型胶原。在进化的硬骨鱼类的心脏中存在明显的圆锥动脉,这表明圆锥从进化或胚胎学的角度来看不是残留的部分。圆锥肌细胞的特征性空间排列强烈表明,圆锥与圆锥瓣膜的机械性能有关。

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