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Sökning: WFRF:(Bransky Avishay)

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1.
  • Ben-Yosef, Yaara, et al. (författare)
  • The HemoScreen, a novel haematology analyser for the point of care
  • 2016
  • Ingår i: Journal of Clinical Pathology. - : BMJ. - 0021-9746 .- 1472-4146. ; 69:8, s. 720-725
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND AND AIMS: A haematology analyser, based on a new technology, is presented herein. The analyser that provides a complete blood count (CBC) and five-part differential accepts disposable cartridges containing all required reagents, making it maintenance-free and ideal for point-of-care (POC) settings. The test reproducibility and imperviousness to analytical errors are attributed to the imaging-based analysis employed. Imaging enables cell-morphology-based differentiation, which is analogous to the gold standard microscopic analysis. This article presents the HemoScreen new technology and evaluates its performance through a small-scale study conducted in its designated clinical settings.METHODS: Thirty anticoagulated whole blood samples were analysed on the HemoScreen and Sysmex XE-2100. Linear regression was performed for the methods comparison. Two samples with 15 replicates were processed for imprecision. Ease of use of the device was also considered.RESULTS: The HemoScreen demonstrated acceptable imprecision and good agreement with the Sysmex XE-2100. The white blood cells (WBCs), red blood cells (RBCs), haemoglobin (HGB), haematocrit (HCT), platelets (PLT), neutrophils, lymphocytes and eosinophils have coefficients of correlation (r) >0.97. For mean cell volume (MCV), mean cell HGB (MCH) and RBC distribution width (RDW), r values ranged from 0.92 to 0.96. For mean cell HGB concentration (MCHC) and monocytes r=0.82 was demonstrated. User-friendliness and suitability of the device for operation in the designated POC settings was also confirmed.CONCLUSIONS: The HemoScreen employs innovative technologies of viscoelastic focusing and microfluidics within a disposable cartridge for an image-based blood cell analysis. By providing accurate and repeatable CBC and five-part differential results within minutes and maintaining the simplicity of operation, the HemoScreen could have far-reaching implications for use at POC. Further extended evaluation is in progress.
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2.
  • Bransky, Avishay, et al. (författare)
  • A Novel Approach to Hematology Testing at the Point of Care
  • 2021
  • Ingår i: The journal of applied laboratory medicine. - : Oxford University Press (OUP). - 2576-9456 .- 2475-7241. ; 6:2, s. 532-542
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: The need for rapid point-of-care (POC) diagnostics is now becoming more evident due to the increasing need for timely results and improvement in healthcare service. With the recent COVID-19 pandemic outbreak, POC has become critical in managing the spread of disease. Applicable diagnostics should be readily deployable, easy to use, portable, and accurate so that they fit mobile laboratories, pop-up treatment centers, field hospitals, secluded wards within hospitals, or remote regions, and can be operated by staff with minimal training. Complete blood count (CBC), however, has not been available at the POC in a simple-to-use device until recently. The HemoScreen, which was recently cleared by the FDA for POC use, is a miniature, easy-to-use instrument that uses disposable cartridges and may fill this gap.CONTENT: The HemoScreen's analysis method, in contrast to standard laboratory analyzers, is based on machine vision (image-based analysis) and artificial intelligence (AI). We discuss the different methods currently used and compare their results to the vision-based one. The HemoScreen is found to correlate well to laser and impedance-based methods while emphasis is given to mean cell volume (MCV), mean cell hemoglobin (MCH), and platelets (PLT) that demonstrate better correlation when the vision-based method is compared to itself due to the essential differences between the underlying technologies.SUMMARY: The HemoScreen analyzer demonstrates lab equivalent performance, tested at different clinical settings and sample characteristics, and might outperform standard techniques in the presence of certain interferences. This new approach to hematology testing has great potential to improve quality of care in a variety of settings.
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