Non-invasive optical assessment of viscosity of middle ear effusions in otitis media

被引:43
作者
Monroy, Guillermo L. [1 ,2 ]
Pande, Paritosh [2 ]
Shelton, Ryan L. [2 ,5 ]
Nolan, Ryan M. [2 ]
Spillman, Darold R. [2 ]
Porter, Ryan G. [3 ,4 ]
Novak, Michael A. [3 ,4 ]
Boppart, Stephen A. [1 ,2 ,4 ,5 ]
机构
[1] Univ Illinois, Dept Bioengn, Digital Comp Lab 1270, MC-278, Urbana, IL 61801 USA
[2] Beckman Inst Adv Sci & Technol, Urbana, IL 61801 USA
[3] Carle Fdn Hosp, Dept Otolaryngol, 611 W Pk St, Urbana, IL 61801 USA
[4] Univ Illinois, Coll Med, 506 South Mathews Ave, Urbana, IL 61801 USA
[5] Univ Illinois, Dept Elect & Comp Engn, 306 N Wright St, Urbana, IL 61801 USA
关键词
dynamic light scattering; diffusion coefficient; ear infection; middle ear effusion; biofilm; optical coherence tomography; DYNAMIC LIGHT-SCATTERING; VISCOELASTIC PROPERTIES; OTOSCOPIC DIAGNOSES; TYMPANIC MEMBRANE; TOMOGRAPHY; DISCRIMINATION; STABILITY; CHILDREN; BIOFILM; SPECKLE;
D O I
10.1002/jbio.201500313
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Eustachian tube dysfunction can cause fluid to collect within the middle ear cavity and form a middle ear effusion (MEE). MEEs can persist for weeks or months and cause hearing loss as well as speech and learning delays in young children. The ability of a physician to accurately identify and characterize the middle ear for signs of fluid and/or infection is crucial to provide the most appropriate treatment for the patient. Currently, middle ear infections are assessed with otoscopy, which provides limited and only qualitative diagnostic information. In this study, we propose a method utilizing cross-sectional depth-resolved optical coherence tomography to noninvasively measure the diffusion coefficient and viscosity of colloid suspensions, such as a MEE. Experimental validation of the proposed technique on simulated MEE phantoms with varying viscosity and particulate characteristics is presented, along with some preliminary results from in vivo and exvivo samples of human MEEs.
引用
收藏
页码:394 / 403
页数:10
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