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准静态声镊血栓弹力描记法。

Quasi-static acoustic tweezing thromboelastometry.

机构信息

Department of Mechanical Engineering, Boston University, Boston, MA, USA.

Department of Biomedical Engineering, Tulane University, New Orleans, LA, USA.

出版信息

J Thromb Haemost. 2017 Jul;15(7):1453-1462. doi: 10.1111/jth.13724. Epub 2017 Jun 9.

Abstract

UNLABELLED

Essentials Blood coagulation measurement during contact with an artificial surface leads to unreliable data. Acoustic tweezing thromboelastometry is a novel non-contact method for coagulation monitoring. This method detects differences in the blood coagulation state within 10 min. Coagulation data were obtained using a much smaller sample volume (4 μL) than currently used.

SUMMARY

Background Thromboelastography is widely used as a tool to assess the coagulation status of critical care patients. It allows observation of changes in material properties of whole blood, beginning with early stages of clot formation and ending with clot lysis. However, the contact activation of the coagulation cascade at surfaces of thromboelastographic systems leads to inherent variability and unreliability in predicting bleeding or thrombosis risks. Objectives To develop acoustic tweezing thromboelastometry as a non-contact method for perioperative assessment of blood coagulation. Methods Acoustic tweezing is used to levitate microliter drops of biopolymer and human blood samples. By quasi-statically changing the acoustic pressure we control the sample drop location and deformation. Sample size, deformation and location are determined by digital imaging at each pressure. Results Simple Newtonian liquid solutions maintain a constant, reversible location vs. deformation curve. In contrast, the location/deformation curves for gelatin, alginate, whole blood and blood plasma uniquely change as the samples solidify. Increasing elasticity causes the sample to deform less, leading to steeper stress/strain curves. By extracting a linear regime slope, we show that whole blood or blood plasma exhibits a unique slope profile as it begins to clot. By exposing blood samples to pro- or antithrombotic agents, the slope profile changes, allowing detection of hyper- or hypocoagulable states. Conclusions We demonstrate that quasi-static acoustic tweezing can yield information about clotting onset, maturation and strength. The advantages of small sample size, non-contact and rapid measurement make this technique desirable for real-time monitoring of blood coagulation.

摘要

目的 开发声镊血栓弹力描记术作为一种非接触式方法,用于围手术期血液凝固评估。

方法 声镊用于悬浮生物聚合物和人血样本的微升液滴。通过准静态改变声压,我们控制样品液滴的位置和变形。在每个压力下,通过数字成像确定样品尺寸、变形和位置。

结果 简单的牛顿液体溶液保持恒定的、可逆的位置与变形曲线。相比之下,明胶、海藻酸盐、全血和血浆的位置/变形曲线在样品凝固时独特地变化。弹性增加导致样品变形减少,导致更陡峭的应力/应变曲线。通过提取线性区斜率,我们表明全血或血浆在开始凝结时表现出独特的斜率曲线。通过使血液样本暴露于促凝或抗凝剂中,斜率曲线发生变化,从而可以检测到高凝或低凝状态。

结论 我们证明了准静态声镊可以提供关于凝血起始、成熟和强度的信息。小样本量、非接触和快速测量的优势使该技术成为实时监测血液凝固的理想选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55c3/5495613/574c524e5471/nihms872152f1.jpg

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Quasi-static acoustic tweezing thromboelastometry.准静态声镊血栓弹力描记法。
J Thromb Haemost. 2017 Jul;15(7):1453-1462. doi: 10.1111/jth.13724. Epub 2017 Jun 9.

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