Bull B S, Brailsford J D
Blood. 1976 Nov;48(5):663-7.
Red cells arrested by fine fibers and subjected to drag forces in a moving stream of fluid can be stressed beyond the point of rupture. The technique, which is basically an in vitro analogue of the microangiopathic hemolytic state, thus permits a study of red cell behavior over the entire range of stress that the membrane can withstand. Measurements made by this approach show an exponential relationship between the velocity of fluid flow and the resultant membrane deformation. Such exponential membrane deformation is consistent with the morphology of red cell fragments and appears to explain their mechanism of formation.
被细纤维捕获并在流动的流体中受到拖曳力作用的红细胞,可能会承受超过破裂点的应力。该技术本质上是微血管病性溶血状态的体外模拟,因此可以研究红细胞在膜所能承受的整个应力范围内的行为。通过这种方法进行的测量表明,流体流速与由此产生的膜变形之间存在指数关系。这种指数型膜变形与红细胞碎片的形态一致,似乎可以解释它们的形成机制。