Scanning electron microscopy of Thebesian ostia (microdissection by ultrasonication: enzymatic digestion).

Scanning electron microscopy Pub Date : 1986-01-01
F A Rosinia, F N Low
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Abstract

Thebesian vasculature provides for communication between the coronary system and the chambers of the heart. Anatomic, embryologic, physiologic, and therapeutic investigations have involved this component of cardiac anatomy from the early 18th century to the present time. The scanning electron microscope (SEM) now affords an innovative approach to the study of the ostia of these veins as they open into the chambers of the heart. The surface of the intact endocardium is continuous, whether it is treated with boric acid or not, as long as it remains intact. Enzymatic microdissection of tissues with trypsin, hyaluronidase and pronase, followed by similar treatment with boric acid, reveals continuity of successive component layers of the endocardium extending into Thebesian substructure. Thebesian tributaries are easily visualized from the ostia but the deeper capillary network of the Thebesian system is not demonstrable by this approach. Valvular structures such as might prevent retroflow during the cardiac cycle are not present. Our observations with SEM support anatomic relationships indicated by previously published work.

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底比斯口的扫描电镜(超声显微解剖:酶消化)。
底比斯脉管系统提供了冠状动脉系统和心脏腔室之间的交流。从18世纪早期到现在,解剖学、胚胎学、生理学和治疗研究都涉及心脏解剖学的这一组成部分。扫描电子显微镜(SEM)现在提供了一种创新的方法来研究这些静脉的开口,因为它们进入心脏的腔室。完整的心内膜表面是连续的,无论是否用硼酸处理,只要保持完整即可。用胰蛋白酶、透明质酸酶和蛋白酶对组织进行酶微解剖,然后用硼酸进行类似处理,揭示心内膜连续组成层的连续性,延伸到底比斯亚结构。底比斯的支流可以很容易地从底比斯的孔口看到,但是底比斯系统更深层的毛细血管网络不能用这种方法显示出来。没有瓣膜结构,如在心脏周期中可能防止反流。我们的观察用扫描电镜支持解剖关系表明了以前发表的工作。
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