Publication:
Technology advancements in blood coagulation measurements for point-of-care diagnostic testing

Thumbnail Image

Organizational Units

Program

KU Authors

Co-Authors

Erten, Ahmet

Advisor

Publication Date

2019

Language

English

Type

Review

Journal Title

Journal ISSN

Volume Title

Abstract

In recent years, blood coagulation monitoring has become crucial to diagnosing causes of hemorrhages, developing anticoagulant drugs, assessing bleeding risk in extensive surgery procedures and dialysis, and investigating the efficacy of hemostatic therapies. In this regard, advanced technologies such as microfluidics, fluorescent microscopy, electrochemical sensing, photoacoustic detection, and micro/nano electromechanical systems (MEMS/NEMS) have been employed to develop highly accurate, robust, and cost-effective point of care (POC) devices. These devices measure electrochemical, optical, and mechanical parameters of clotting blood. Which can be correlated to light transmission/scattering, electrical impedance, and viscoelastic properties. In this regard, this paper discusses the working principles of blood coagulation monitoring, physical and sensing parameters in different technologies. In addition, we discussed the recent progress in developing nanomaterials for blood coagulation detection and treatments which opens up new area of controlling and monitoring of coagulation at the same time in the future. Moreover, commercial products, future trends/challenges in blood coagulation monitoring including novel anticoagulant therapies, multiplexed sensing platforms, and the application of artificial intelligence in diagnosis and monitoring have been included.

Description

Source:

Frontiers in Bioengineering and Biotechnology

Publisher:

Frontiers

Keywords:

Subject

Biotechnology and applied microbiology, Multidisciplinary sciences

Citation

Endorsement

Review

Supplemented By

Referenced By

Copy Rights Note

0

Views

1

Downloads

View PlumX Details