Spectral micro-CT for quantitative analysis of calcification in fibrocartilage

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Mazzini, Vittoria, Cardarelli, Paolo, Coathup, Andrew L., Olivotto, Eleonora, Grassi, Francesco, Tassinari, Enrico, Velardita, Simone, Taibi, Angelo, Brombal, Luca
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866915653511806976
author Mazzini, Vittoria
Cardarelli, Paolo
Coathup, Andrew L.
Olivotto, Eleonora
Grassi, Francesco
Tassinari, Enrico
Velardita, Simone
Taibi, Angelo
Brombal, Luca
author_facet Mazzini, Vittoria
Cardarelli, Paolo
Coathup, Andrew L.
Olivotto, Eleonora
Grassi, Francesco
Tassinari, Enrico
Velardita, Simone
Taibi, Angelo
Brombal, Luca
contents This work introduces a quantitative method for assessing calcification in fibrocartilage using spectral micro-computed tomography ($μ$CT). Tissue samples of hip acetabular labrum from patients with osteoarthritis and femoroacetabular impingement were imaged with a laboratory-based spectral $μ$CT system equipped with a small-pixel photon-counting detector. The detector operated with two energy thresholds, allowing the simultaneous acquisition of two CT datasets at different X-ray energies. A material decomposition algorithm accounting for the system's spectral response was applied to separate calcium- and water-like components, yielding three-dimensional visualization and quantification of calcified regions within intact paraffin-embedded samples. Unlike the conventional method for calcification assessment based on histology, this spectral μCT approach offers volumetric quantification of calcium structures without physical sectioning or staining. The method achieved a voxel size of 20 $μ$m for samples up to ~3 cm, with a calcium detection threshold of ~0.3 g/cm$^3$ for structures down to 50 $μ$m. Quantification accuracy was estimated to be 5% by using a calibration phantom. Further comparison with histology demonstrated the correct localization of calcium spatial distributions and a match in the calcium crystal deposition score by providing non-destructive, quantitative 3D calcium maps of preserved tissue samples. This technique complements histology and could enhance the characterization of pathological fibrocartilage calcification in hip joint disorders.
format Preprint
id arxiv_https___arxiv_org_abs_2512_04662
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spectral micro-CT for quantitative analysis of calcification in fibrocartilage
Mazzini, Vittoria
Cardarelli, Paolo
Coathup, Andrew L.
Olivotto, Eleonora
Grassi, Francesco
Tassinari, Enrico
Velardita, Simone
Taibi, Angelo
Brombal, Luca
Medical Physics
This work introduces a quantitative method for assessing calcification in fibrocartilage using spectral micro-computed tomography ($μ$CT). Tissue samples of hip acetabular labrum from patients with osteoarthritis and femoroacetabular impingement were imaged with a laboratory-based spectral $μ$CT system equipped with a small-pixel photon-counting detector. The detector operated with two energy thresholds, allowing the simultaneous acquisition of two CT datasets at different X-ray energies. A material decomposition algorithm accounting for the system's spectral response was applied to separate calcium- and water-like components, yielding three-dimensional visualization and quantification of calcified regions within intact paraffin-embedded samples. Unlike the conventional method for calcification assessment based on histology, this spectral μCT approach offers volumetric quantification of calcium structures without physical sectioning or staining. The method achieved a voxel size of 20 $μ$m for samples up to ~3 cm, with a calcium detection threshold of ~0.3 g/cm$^3$ for structures down to 50 $μ$m. Quantification accuracy was estimated to be 5% by using a calibration phantom. Further comparison with histology demonstrated the correct localization of calcium spatial distributions and a match in the calcium crystal deposition score by providing non-destructive, quantitative 3D calcium maps of preserved tissue samples. This technique complements histology and could enhance the characterization of pathological fibrocartilage calcification in hip joint disorders.
title Spectral micro-CT for quantitative analysis of calcification in fibrocartilage
topic Medical Physics
url https://arxiv.org/abs/2512.04662