Lehto V P, Laitinen L A
Aviat Space Environ Med. 1979 Aug;50(8):803-7.
Scanning and transmission electron-microscopy have been applied for study of the ultrastructural features of the blood-bubble interface in the vasculature of explosively-decompressed rats. In scanning electron-microscopy, the surface facing the bubble appeared smooth, with slight undulation and frequent roundish protrusions. In cross sections of the material between the bubbles, there could be observed a continuous surface layer facing the bubble, a loosely-bound meshwork of fibrous material, and extreme congestion of erythrocytes. In transmission electron-microscopy there were found alignment of platelets along the interface, and a thin (10-20 nm) layer of osmiophilic material, in accordance with earlier ultrastructural studies. The platelets were often rounded. It is concluded that the initial phase of the blood-bubble interaction is the deposition of a plasma protein coat, followed by the attachment platelets, possibly related to activation of the coagulation system.
扫描电子显微镜和透射电子显微镜已被用于研究爆炸减压大鼠血管系统中血泡界面的超微结构特征。在扫描电子显微镜下,面向气泡的表面看起来光滑,有轻微起伏和频繁的圆形突起。在气泡之间的材料横截面上,可以观察到面向气泡的连续表面层、纤维材料的松散网状结构以及红细胞的极度充血。在透射电子显微镜下,与早期超微结构研究一致,发现血小板沿界面排列,还有一层薄(10 - 20纳米)的嗜锇物质。血小板通常呈圆形。得出的结论是,血泡相互作用的初始阶段是血浆蛋白包膜的沉积,随后是血小板的附着,这可能与凝血系统的激活有关。