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Hilab system, a new point-of-care hematology analyzer supported by the Internet of Things and Artificial Intelligence.
Gasparin, Aléxia Thamara; Araujo, Claudiane Isabel Franco; Schmitt, Patricia; Cardoso, Mônica Ribas; Perussolo, Maiara Carolina; de Jesus, Thainá Caroline Schuartz; Santiago, Erika Bergamo; Silva, Ivan Lucas Reis; de Sousa, Ricardo Gurgel; Teng, Flavia Zhu; Severo, Evair Borges; Ribeiro, Victor Henrique Alves; Cardoso, Milena Andreuzo; Silva, Fernanda D'Amico; de Araujo Perazzoli, Carolina Rodrigues; de Holanda Farias, João Samuel; de Almeida, Bernardo Montesanti Machado; Rogal Júnior, Sergio Renato; Figueredo, Marcus Vinícius Mazega.
Affiliation
  • Gasparin AT; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil. alexia.gasparin@hilab.com.br.
  • Araujo CIF; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Schmitt P; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Cardoso MR; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Perussolo MC; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • de Jesus TCS; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Santiago EB; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Silva ILR; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • de Sousa RG; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Teng FZ; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Severo EB; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Ribeiro VHA; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Cardoso MA; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Silva FD; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • de Araujo Perazzoli CR; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • de Holanda Farias JS; Erasto Gaertner Hospital, Ovande do Amaral, 201, Parana, Brazil.
  • de Almeida BMM; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Rogal Júnior SR; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
  • Figueredo MVM; Research and Development Department, Hilab, Hilab Campus, José A. Possebom, 800, Curitiba, Parana, 81270-185, Brazil.
Sci Rep ; 12(1): 10409, 2022 06 21.
Article in En | MEDLINE | ID: mdl-35729182
ABSTRACT
The complete blood count (CBC) is one of the most requested tests by physicians. CBC tests, most realized in conventional hematological analyzers, are restricted to centralized laboratories due to frequent maintenance, large devices, and expensive costs required. On the other hand, most handheld CBC devices commercially available show high prices and are not liable to calibration or control procedures, which results in poor quality compared to standard hematology instruments. The Hilab system is a small-handed hematological platform that uses microscopy and chromatography techniques for blood cells and hematimetric parameters analysis through artificial intelligence, machine learning, and deep learning techniques. For clinical evaluation of the handheld CBC device, 450 blood samples were analyzed. The samples encompassed normal (82%) and pathological conditions (18%), such as thalassemias (2.2%), anemias (6.6%), and infections (9.2%). For all analytes, accuracy, precision, method comparison, and flagging capabilities of the Hilab System, were compared with the Sysmex XE-2100 (Sysmex, Japan) results. The sample source (venous and capillary) influences were also evaluated. Pearson correlation, Student t test, bias, and the Bland-Altman plot of each blood count analyte were calculated and shown. The significance level was set at p ≤ 0.05. For clinical evaluation, Hilab System and the Sysmex XE-2100 showed a strong correlation (r ≥ 0.9) for most evaluated parameters. In the precision study, analytes showed CV inside the limits established according to European Federation of Clinical Chemistry and Laboratory Medicine guidelines. The flagging capabilities of the Hilab system, compared to the manual microscopy technique, presented high sensibility, specificity, and accuracy. Venous and capillary samples (p > 0.05) do not differ statistically. Considering the need for point-of-care CBCs, the study indicated that the Hilab system provides fast, accurate, low cost, and robust analysis for reliable clinical use.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Internet of Things / Hematology Type of study: Guideline Limits: Humans Language: En Journal: Sci Rep Year: 2022 Document type: Article Affiliation country: Brazil

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Internet of Things / Hematology Type of study: Guideline Limits: Humans Language: En Journal: Sci Rep Year: 2022 Document type: Article Affiliation country: Brazil