首页> 外文会议>Annual international conference of the IEEE engineering in medicine and biology society >ON MAGNETIC ORIENTATION OF RED BLOOD CELLS : BEHAVIORS IN WHOLE BLOOD AND SUSPENSION IN PLASMA
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ON MAGNETIC ORIENTATION OF RED BLOOD CELLS : BEHAVIORS IN WHOLE BLOOD AND SUSPENSION IN PLASMA

机译:关于红细胞的磁取向:全血和血浆中悬浮液的行为

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The magnetic orientations of human red blood cells (RBCs) were investigated under strong magnetic fields up to 8 T for whole blood and suspensions in phosphate buffer solution (PBS) and in plasma. The electrical resistivity of the buffer solution containing RBCs for 40 % of volume were decreased by applying magnetic fields parallel to the electric field. This phenomenon indicates that RBCs are redirected by a magnetic field. The electrical resistivity of anticoagulated whole blood was not changed by the application of magnetic fields up to 8 T. The optical transmission of suspension 0.02 % RBCs suspended in PBS was changed by the application of magnetic fields. On the other hand, the optical tansmissivity of the suspension in plasma was not changed. These results show that plasma proteins such as albumin, globulin and fibrinogen affect the magnetic orientation of RBCs in blood.
机译:在磷酸盐缓冲溶液(PBS)和血浆中的全血和悬浮液,在强磁场下研究人红细胞(RBC)的磁取向。通过施加与电场平行的磁场减小含有RBC的缓冲溶液的电阻率为40%的体积。这种现象表明RBC被磁场重定向。磁场高达8T的磁场施加抗凝全血的电阻率不会改变。通过施加磁场改变悬浮在PBS中的悬浮液0.02%RBC的光学透射。另一方面,血浆中悬浮液的光学促使不会改变。这些结果表明,血浆蛋白如白蛋白,球蛋白和纤维蛋白原会影响血液中RBC的磁取向。

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