Open Access
27 November 2019 Monitoring kidney optical properties during cold storage preservation with spatial frequency domain imaging
Rebecca Rowland, Adrien Ponticorvo, Alberto Jarrin Lopez, Shiri Li, Xiaodong Li, Hirohito Ichii, Anthony J. Durkin
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Abstract

Transplantation of kidneys results in delayed graft function in as many as 40% of cases. During the organ transplantation process, donor kidneys undergo a period of cold ischemic time (CIT), where the organ is preserved with a cold storage solution to maintain tissue viability. Some complications observed after grafting may be due to damage sustained to the kidney during CIT. However, the effects due to this damage are not apparent until well after transplant surgery has concluded. To this end, we have used spatial frequency domain imaging (SFDI) to measure spatially resolved optical properties of porcine kidneys over the course of 80-h CIT. During this time, we observed an increase in both reduced scattering (μs) and absorption (μa) coefficients. The measured scattering b parameter increased until 24 h of CIT, then returned toward baseline during the remaining duration of the imaging sequence. These results show that the optical properties of kidney tissue change with increasing CIT and suggest that continued investigation into the application of SFDI to kidneys under CIT may lead to the development of a noninvasive method for assessing graft viability.

CC BY: © The Authors. Published by SPIE under a Creative Commons Attribution 4.0 Unported License. Distribution or reproduction of this work in whole or in part requires full attribution of the original publication, including its DOI.
Rebecca Rowland, Adrien Ponticorvo, Alberto Jarrin Lopez, Shiri Li, Xiaodong Li, Hirohito Ichii, and Anthony J. Durkin "Monitoring kidney optical properties during cold storage preservation with spatial frequency domain imaging," Journal of Biomedical Optics 24(11), 116003 (27 November 2019). https://doi.org/10.1117/1.JBO.24.11.116003
Received: 26 August 2019; Accepted: 12 November 2019; Published: 27 November 2019
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Cited by 25 scholarly publications.
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KEYWORDS
Kidney

Scattering

Optical properties

Absorption

Transplantation

Scatter measurement

Tissues

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