Artículo
Exploring tear viscosity with quartz crystal microbalance technology
Muñoz, Gabriel Guillermo
; Millicovsky, Martín Javier
; Cerrudo, J.; Peñalva, A.; Machtey, M.; Reta, J.; Torres, R.; Campana, Diego Martin
; Zalazar, Martin




Fecha de publicación:
07/2024
Editorial:
American Institute of Physics
Revista:
Review of Scientific Instruments
ISSN:
0034-6748
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Tear viscosity is a critical property affecting tear distribution and ocular surface stability. While not widely established as a primary diagnostic marker, deviations from normal viscosity can impact ocular health, potentiallycontributing to conditions like dry eye syndrome. Despite its importance, traditional viscometers require sample volumes that are not feasible to use with tear volume. This research introduces a novel Quartz Crystal Microbalance(QCM)-based method for tear viscosity measurement, offering a viscometer prototype that operates with minimalsample volumes. Human tear samples, solutions used in artificial eye drops, and various commercial eyedrop brands were evaluated. Results show that the QCM method aligns with established viscosity ranges, withhealthy human tears averaging 1.73 ± 0.61 cP, within the typical range of 1 to 10 cP. Variability in eye dropviscosities is attributed to chemical composition differences. QCM measurements of one eye drop brand closelymatch those from a commercial viscometer. The QCM method offers benefits such as reduced sampleconsumption and rapid results, enhancing understanding of tear dynamics for ocular health. Further research withlarger sample sizes is needed to establish normative viscosity values in healthy individuals and those with dry eyesyndrome, crucial for validating the device´s clinical efficacy.
Palabras clave:
QCM
,
Quartz Crystal Microbalance
,
Tear viscosity
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Articulos (IBB)
Articulos de INSTITUTO DE INVESTIGACION Y DESARROLLO EN BIOINGENIERIA Y BIOINFORMATICA
Articulos de INSTITUTO DE INVESTIGACION Y DESARROLLO EN BIOINGENIERIA Y BIOINFORMATICA
Citación
Muñoz, Gabriel Guillermo; Millicovsky, Martín Javier; Cerrudo, J.; Peñalva, A.; Machtey, M.; et al.; Exploring tear viscosity with quartz crystal microbalance technology; American Institute of Physics; Review of Scientific Instruments; 95; 7; 7-2024; 1-10
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Datos de investigación Viscosidad, Frecuencia y Disipación de lágrimas humanas