Time-Resolved Multi-Spectral X-ray Computed Tomography of Cryoprotectant Diffusion Into Biomimetic Material

Fuente: arXiv
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Autori principali: Ali, Alaa M., Parker, Jason T., Consiglio, Anthony N., Chang, Brooke S., Warburton, Linnea, Rubinsky, Boris, Mäkiharju, Simo A.
Natura: Preprint
Pubblicazione: 2026
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author Ali, Alaa M.
Parker, Jason T.
Consiglio, Anthony N.
Chang, Brooke S.
Warburton, Linnea
Rubinsky, Boris
Mäkiharju, Simo A.
author_facet Ali, Alaa M.
Parker, Jason T.
Consiglio, Anthony N.
Chang, Brooke S.
Warburton, Linnea
Rubinsky, Boris
Mäkiharju, Simo A.
contents Cryopreservation via vitrification requires loading cryoprotective cocktails. Insufficient loading may lead to freezing, precluding successful recovery; overloading is toxic. Yet, existing in situ measurements of cryoprotectant permeation remain largely unvalidated and do not resolve individual cryoprotectant concentrations. We introduce multi-spectral X-ray computed tomography (MSCT) to noninvasively quantify the spatiotemporal distribution of cryoprotectants diffusing into a tissue mimicking phantom. A developed photon-energy bin selection algorithm achieves sensitivity to low contrast cryoprotectants without contrast agents or fluorescence edges. The technique is validated with a dimethyl sulfoxide, glycerol, and water solution, resolving cryoprotectant volume fractions to within 5% accuracy. We observe heterogeneous diffusion of the cryoprotectants into the tissue mimicking hydrogel, a phenomenon not observable with conventional techniques. MSCT improves upon existing X ray CT methods because it is not underdetermined for multicomponent solutions and does not implicitly assume homogeneous diffusion. These advancements enable the systematic development of cryoprotectant loading protocols and provide diagnostics to assess vitrifiability before cryopreservation.
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id arxiv_https___arxiv_org_abs_2602_07003
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Time-Resolved Multi-Spectral X-ray Computed Tomography of Cryoprotectant Diffusion Into Biomimetic Material
Ali, Alaa M.
Parker, Jason T.
Consiglio, Anthony N.
Chang, Brooke S.
Warburton, Linnea
Rubinsky, Boris
Mäkiharju, Simo A.
Medical Physics
Cryopreservation via vitrification requires loading cryoprotective cocktails. Insufficient loading may lead to freezing, precluding successful recovery; overloading is toxic. Yet, existing in situ measurements of cryoprotectant permeation remain largely unvalidated and do not resolve individual cryoprotectant concentrations. We introduce multi-spectral X-ray computed tomography (MSCT) to noninvasively quantify the spatiotemporal distribution of cryoprotectants diffusing into a tissue mimicking phantom. A developed photon-energy bin selection algorithm achieves sensitivity to low contrast cryoprotectants without contrast agents or fluorescence edges. The technique is validated with a dimethyl sulfoxide, glycerol, and water solution, resolving cryoprotectant volume fractions to within 5% accuracy. We observe heterogeneous diffusion of the cryoprotectants into the tissue mimicking hydrogel, a phenomenon not observable with conventional techniques. MSCT improves upon existing X ray CT methods because it is not underdetermined for multicomponent solutions and does not implicitly assume homogeneous diffusion. These advancements enable the systematic development of cryoprotectant loading protocols and provide diagnostics to assess vitrifiability before cryopreservation.
title Time-Resolved Multi-Spectral X-ray Computed Tomography of Cryoprotectant Diffusion Into Biomimetic Material
topic Medical Physics
url https://arxiv.org/abs/2602.07003