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Understanding 3D Biomineralization in Human Kidney Stones with Correlative X-Ray Micro-CT & X-Ray Fluorescence Microscopy

Published online by Cambridge University Press:  22 July 2022

Kymora Scotland
Affiliation:
UCLA Health, Endourology and Stone Disease, Los Angeles, CA, United States
Gerard Wong
Affiliation:
UCLA, Department of Bioengineering, Los Angeles, CA, United States
Katarzyna Matusik*
Affiliation:
Sigray, Inc., Concord, CA, United States
Michael Lun
Affiliation:
Sigray, Inc., Concord, CA, United States
Sheraz Gul
Affiliation:
Sigray, Inc., Concord, CA, United States
Frances Su
Affiliation:
Sigray, Inc., Concord, CA, United States
David Vine
Affiliation:
Sigray, Inc., Concord, CA, United States
Jeff Gelb
Affiliation:
Sigray, Inc., Concord, CA, United States
Wenbing Yun
Affiliation:
Sigray, Inc., Concord, CA, United States
*
*Corresponding author: kmatusik@sigray.com

Abstract

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Type
Advanced 3D Imaging and Analysis Methods for New Opportunities in Material Science
Copyright
Copyright © Microscopy Society of America 2022

References

Scales, CD et al. , Eur Urol 62 (2012), pp. 160.CrossRefGoogle Scholar
Lotan, Y et al. , J Urol 172 (2004), pp. 2275.CrossRefGoogle Scholar
An, L et al. , Oxid Med Cell Longev (2021).Google Scholar