This paper presents an experimental method for estimating the fatigue limit of trabecular bone using a single trabecular bone sample, the microstructural parameters of which were determined by microCT. Fatigue tests were carried out using the Locati method, with stepwise increasing load amplitude. The fatigue limits of the trabecular structures were determined experimentally in accordance with Miner's law of fatigue damage accumulation, based on the parameters of the reference S-N curve taken from the literature. On the basis of the fatigue limits, the S-N curves were determined for the tested samples, and from them the compressive strength corresponding to the fatigue limit for the = 1 cycle. Ultimate compressive strength was determined as a result of compression to failure tests. Computational dependencies combining the index with and the index with were formulated. To verify the proposed method, two groups of human trabecular bone samples were analysed: = 42 were tested under monotonic loading, and = 61 were tested under cyclic loading with stepwise increasing amplitude. The statistical test of the distribution conformity of the calculated compressive strength to the experimental ultimate strength was performed. The results of the Kolmogorov-Smirnov statistical test were = 0.19 ( = 0.314). The agreement of the distributions of , as determined experimentally and calculated from the computational dependencies, was also tested statistically, with the result of the Kolmogorov-Smirnov test being = 0.286 ( = 0.065). A similar analysis performed for yielded = 0.238 ( = 0.185).
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Mod Pathol
January 2025
Department of Pathology and Medical Biology, University Medical Center Groningen, Groningen, the Netherlands; Department of Pathology, Amsterdam University Medical Center, Amsterdam, the Netherlands. Electronic address:
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MRC Lifecourse Epidemiology Centre, Human Development and Health, University of Southampton, Southampton, United Kingdom.
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View Article and Find Full Text PDFJ Bone Miner Res
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View Article and Find Full Text PDFNutrients
January 2025
Department of Pharmacology, Faculty of Pharmaceutical Sciences in Sosnowiec, Medical University of Silesia, 40-055 Katowice, Poland.
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View Article and Find Full Text PDFJ Clin Med
January 2025
Department of Neurosurgery, Montefiore Medical Center, Bronx, NY 10461, USA.
Bone mineral density (BMD) is an essential indicator of bone strength and plays a crucial role in the clinical management of various spinal pathologies. Hounsfield units (HUs) calculated from computed tomography (CT) scans are a well-established, effective, and non-invasive method to determine bone density in the lumbar spine when juxtaposed to dual-energy X-ray absorptiometry (DEXA) scans, the gold standard for assessing trabecular bone density. Only recently have studies begun to investigate and establish HUs as a reliable and valid alternative for bone quality assessment in the cervical spine as well.
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