A portable spinning disc for complete blood count (CBC)

Agarwal, Rahul ; Sarkar, Arnab ; Bhowmik, Arka ; Mukherjee, Devdeep ; Chakraborty, Suman (2020) A portable spinning disc for complete blood count (CBC) Biosensors and Bioelectronics, 150 . p. 111935. ISSN 0956-5663

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Official URL: http://doi.org/10.1016/j.bios.2019.111935

Related URL: http://dx.doi.org/10.1016/j.bios.2019.111935

Abstract

Complete Blood Count (CBC) is a collection of the most commonly required clinical tests to assess the manifestations of pathological conditions in blood. The existing clinical methods for this test are prohibitively expensive for the underprivileged global population due to the requirements of sophisticated instrumentation and trained personnel. To overcome these, we propose a unique low cost device as a blood cell counting platform. The method exploits the difference in densities of cells for separation in transparent microfluidic channels and implements label-free imaging method for counting the separated cells within the microfluidic disc. The device is a simple spinning disc to estimate the parameters such as hematocrit, hemoglobin, red blood cell (RBC), white blood cell (WBC), and platelet counts with an accuracy > 95% as compared to an automated hematology analyzer. The major advantages of this device over state of the art include multiple sample testing within a single biodegradable disc, simple design and fabrication techniques, potential automation thereby making it portable and eliminating the need of trained personnel, and most significantly, eliminating any need for downstream processing of the separated blood. These results may turn out to be of immense consequence towards developing novel point-of-care hematological analyzers for resource-constrained settings.

Item Type:Article
Source:Copyright of this article belongs to Elsevier B.V
Keywords:Complete blood count;Cell separation;Compact disc;Blood;Label free counting;Image based counting
ID Code:134693
Deposited On:10 Jan 2023 10:56
Last Modified:23 Jan 2023 09:22

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