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1.
Lab Chip ; 13(7): 1282-8, 2013 Apr 07.
Artigo em Inglês | MEDLINE | ID: mdl-23392286

RESUMO

We demonstrate a compact and cost-effective imaging cytometry platform installed on a cell-phone for the measurement of the density of red and white blood cells as well as hemoglobin concentration in human blood samples. Fluorescent and bright-field images of blood samples are captured using separate optical attachments to the cell-phone and are rapidly processed through a custom-developed smart application running on the phone for counting of blood cells and determining hemoglobin density. We evaluated the performance of this cell-phone based blood analysis platform using anonymous human blood samples and achieved comparable results to a standard bench-top hematology analyser. Test results can either be stored on the cell-phone memory or be transmitted to a central server, providing remote diagnosis opportunities even in field settings.


Assuntos
Contagem de Células Sanguíneas/economia , Contagem de Células Sanguíneas/instrumentação , Análise Química do Sangue/economia , Análise Química do Sangue/instrumentação , Telefone Celular , Contagem de Células , Análise Custo-Benefício , Contagem de Eritrócitos , Hemoglobinas/análise , Humanos , Contagem de Leucócitos , Sistemas Automatizados de Assistência Junto ao Leito , Fatores de Tempo
2.
Lab Chip ; 10(11): 1417-28, 2010 Jun 07.
Artigo em Inglês | MEDLINE | ID: mdl-20401422

RESUMO

Despite the rapid progress in optical imaging, most of the advanced microscopy modalities still require complex and costly set-ups that unfortunately limit their use beyond well equipped laboratories. In the meantime, microscopy in resource-limited settings has requirements significantly different from those encountered in advanced laboratories, and such imaging devices should be cost-effective, compact, light-weight and appropriately accurate and simple to be usable by minimally trained personnel. Furthermore, these portable microscopes should ideally be digitally integrated as part of a telemedicine network that connects various mobile health-care providers to a central laboratory or hospital. Toward this end, here we demonstrate a lensless on-chip microscope weighing approximately 46 grams with dimensions smaller than 4.2 cm x 4.2 cm x 5.8 cm that achieves sub-cellular resolution over a large field of view of approximately 24 mm(2). This compact and light-weight microscope is based on digital in-line holography and does not need any lenses, bulky optical/mechanical components or coherent sources such as lasers. Instead, it utilizes a simple light-emitting-diode (LED) and a compact opto-electronic sensor-array to record lensless holograms of the objects, which then permits rapid digital reconstruction of regular transmission or differential interference contrast (DIC) images of the objects. Because this lensless incoherent holographic microscope has orders-of-magnitude improved light collection efficiency and is very robust to mechanical misalignments it may offer a cost-effective tool especially for telemedicine applications involving various global health problems in resource limited settings.


Assuntos
Holografia/instrumentação , Lentes , Iluminação/instrumentação , Microfluídica/instrumentação , Microscopia/instrumentação , Telemedicina/instrumentação , Desenho de Equipamento , Análise de Falha de Equipamento , Miniaturização
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