Literature DB >> 26791097

Classifying murine glomerulonephritis using optical coherence tomography and optical coherence elastography.

Chih-Hao Liu1, Yong Du1, Manmohan Singh1, Chen Wu1, Zhaolong Han1, Jiasong Li1, Anthony Chang2, Chandra Mohan3, Kirill V Larin4,5,6.   

Abstract

Acute glomerulonephritis caused by antiglomerular basement membrane marked by high mortality. The primary reason for this is delayed diagnosis via blood examination, urine analysis, tissue biopsy, or ultrasound and X-ray computed tomography imaging. Blood, urine, and tissue-based diagnoses can be time consuming, while ultrasound and CT imaging have relatively low spatial resolution, with reduced sensitivity. Optical coherence tomography is a noninvasive and high-resolution imaging technique that provides superior spatial resolution (micrometer scale) as compared to ultrasound and CT. Changes in tissue properties can be detected based on the optical metrics analyzed from the OCT signals, such as optical attenuation and speckle variance. Furthermore, OCT does not rely on ionizing radiation as with CT imaging. In addition to structural changes, the elasticity of the kidney can significantly change due to nephritis. In this work, OCT has been utilized to quantify the difference in tissue properties between healthy and nephritic murine kidneys. Although OCT imaging could identify the diseased tissue, its classification accuracy is clinically inadequate. By combining optical metrics with elasticity, the classification accuracy improves from 76% to 95%. These results show that OCT combined with OCE can be a powerful tool for identifying and classifying nephritis. Therefore, the OCT/OCE method could potentially be used as a minimally invasive tool for longitudinal studies during the progression and therapy of glomerulonephritis as well as complement and, perhaps, substitute highly invasive tissue biopsies. Elastic-wave propagation in mouse healthy and nephritic kidneys.
© 2016 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  Young's modulus; elastic-wave velocity; elasticity optical coherence elastography; glomerulonephritis; optical attenuation; speckle variance

Mesh:

Year:  2016        PMID: 26791097      PMCID: PMC4956579          DOI: 10.1002/jbio.201500269

Source DB:  PubMed          Journal:  J Biophotonics        ISSN: 1864-063X            Impact factor:   3.207


  52 in total

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Review 7.  Intracoronary optical coherence tomography: a comprehensive review clinical and research applications.

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Authors:  Liang Wang; Peng Xia; Ke Lv; Jie Han; Qing Dai; Xue-mei Li; Li-meng Chen; Yu-xin Jiang
Journal:  Eur Radiol       Date:  2014-04-18       Impact factor: 5.315

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10.  Automated quantification of microstructural dimensions of the human kidney using optical coherence tomography (OCT).

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  9 in total

1.  Ultra-fast line-field low coherence holographic elastography using spatial phase shifting.

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Review 2.  Optical coherence elastography - OCT at work in tissue biomechanics [Invited].

Authors:  Kirill V Larin; David D Sampson
Journal:  Biomed Opt Express       Date:  2017-01-27       Impact factor: 3.732

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4.  Polarization-sensitive optical coherence elastography.

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6.  Quantifying the effects of hydration on corneal stiffness with noncontact optical coherence elastography.

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7.  Assessing colitis ex vivo using optical coherence elastography in a murine model.

Authors:  Achuth Nair; Chih Hao Liu; Manmohan Singh; Susobhan Das; Triet Le; Yong Du; Sanam Soomro; Salavat Aglyamov; Chandra Mohan; Kirill V Larin
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8.  Longitudinal, label-free, quantitative tracking of cell death and viability in a 3D tumor model with OCT.

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Review 9.  Advances in non-invasive biosensing measures to monitor wound healing progression.

Authors:  Walker D Short; Oluyinka O Olutoye; Benjamin W Padon; Umang M Parikh; Daniel Colchado; Hima Vangapandu; Shayan Shams; Taiyun Chi; Jangwook P Jung; Swathi Balaji
Journal:  Front Bioeng Biotechnol       Date:  2022-09-23
  9 in total

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