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Blood viscosity during coagulation at different shear rates

机译:不同剪切速率下凝血过程中的血液粘度

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摘要

During the coagulation process, blood changes from a liquid to a solid gel phase. These changes are reflected by changes in blood viscosity; however, blood viscosity at different shear rates (SR) has not been previously explored during the coagulation process. In this study, we investigated the viscosity changes of whole blood in 10 subjects with a normal coagulation profile, using a cone‐on‐plate viscosimeter. For each subject, three consecutive measurements were performed, at a SR of 20, 40, 80 sec−1. On the basis of the time‐dependent changes in blood viscosity, we identified the gel point (GP), the time‐to‐gel point (TGP), the maximum clot viscosity (MCV), and the clot lysis half‐time (CLH). The TGP significantly (P = 0.0023) shortened for increasing SR, and was significantly associated with the activated partial thromboplastin time at a SR of 20 sec−1 (P = 0.038) and 80 sec−1 (P = 0.019). The MCV was significantly lower at a SR of 80 sec−1 versus 40 sec−1 (P = 0.027) and the CLH significantly (P = 0.048) increased for increasing SR. These results demonstrate that measurement of blood viscosity during the coagulation process offers a number of potentially useful parameters. In particular, the association between the TGP and the activated partial thromboplastin time is an expression of the clotting time (intrinsic and common pathway), and its shortening for increasing SR may be interpreted the well‐known activating effects of SR on platelet activation and thrombin generation. Further studies focused on the TGP under conditions of hypo‐ or hypercoagulability are required to confirm its role in the clinical practice.
机译:在凝血过程中,血液从液态变成固态凝胶。这些变化通过血液粘度的变化反映出来。然而,在凝结过程中尚未探索过不同剪切速率(SR)的血液粘度。在这项研究中,我们使用锥板粘度计研究了具有正常凝血特性的10名受试者的全血粘度变化。对于每个受试者,以20、40、80 sec -1 的SR进行了三个连续的测量。根据血液粘度随时间的变化,我们确定了凝胶点(GP),凝胶时间(TGP),最大凝块粘度(MCV)和半凝块溶解时间(CLH) )。 TGP显着缩短(P = 0.0023),以增加SR,并且与SR分别为20 sec -1 (P = 0.038)和80 sec -的激活的部分凝血活酶时间显着相关1 (P = 0.019)。 SR为80 sec -1 时,MCV显着降低,而40 sec -1 时MCV显着降低(P = 0.027),CLH显着提高(P = 0.048) 。这些结果表明,在凝血过程中血液粘度的测量提供了许多潜在有用的参数。特别是,TGP和活化的部分凝血活酶时间之间的关联是凝血时间(内在途径和共同途径)的一种表达,其缩短SR的缩短可以解释为SR对血小板活化和凝血酶的众所周知的活化作用代。需要进一步研究在低凝或高凝条件下的TGP,以确认其在临床实践中的作用。

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