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    Please use this identifier to cite or link to this item: https://ir.lib.ncu.edu.tw/handle/987654321/109101


    Title: Towards the Feasibility of Using Ultrasound to Determine Mechanical Properties of Tissues in a Bioreactor
    Authors: 鍾禎元;Mansour, Joseph M.;Gu, Di-Win Marine;Chung, Chen-Yuan;Heebner, Joseph;Althans, Jake;Abdalian, Sarah;Schluchter, Mark D.;Liu, Yiying;Welter, Jean F.
    Contributors: 工學院機械工程學系
    Keywords: Biochemistry;Biological and Medical Physics;Biomedical and Life Sciences;Biomedical Engineering and Bioengineering;Biomedicine;Biophysics;Bioreactors;Cartilage, Articular - physiology;Classical Mechanics;Elastic Modulus;Hydrogels;Models, Statistical;Sepharose;Stress, Mechanical;Tissue Engineering;Ultrasonics - methods
    Date: 2014-01-01
    Issue Date: 2026-04-23 15:31:49 (UTC+8)
    Publisher: Springer Netherlands;Boston: Springer US
    Abstract: 摘要: Our ultimate goal is to non-destructively evaluate mechanical properties of tissue-engineered (TE) cartilage using ultrasound (US). We used agarose gels as surrogates for TE cartilage. Previously, we showed that mechanical properties measured using conventional methods were related to those measured using US, which suggested a way to non-destructively predict mechanical properties of samples with known volume fractions. In this study, we sought to determine whether the mechanical properties of samples, with unknown volume fractions could be predicted by US. Aggregate moduli were calculated for hydrogels as a function of SOS, based on concentration and density using a poroelastic model. The data were used to train a statistical model, which we then used to predict volume fractions and mechanical properties of unknown samples. Young’s and storage moduli were measured mechanically. The statistical model generally predicted the Young’s moduli in compression to within <10% of their mechanically measured value. We defined positive linear correlations between the aggregate modulus predicted from US and both the storage and Young’s moduli determined from mechanical tests. Mechanical properties of hydrogels with unknown volume fractions can be predicted successfully from US measurements. This method has the potential to predict mechanical properties of TE cartilage non-destructively in a bioreactor.
    其他題名: Ann Biomed Eng
    出版者: Boston: Springer US
    出版日期: 2014-10-01
    出處: Annals of biomedical engineering, 2014-10, Vol.42 (10), p.2190-2202
    版權: Biomedical Engineering Society 2014
    識別號: ISSN: 0090-6964
    識別號: ISSN: 1573-9686
    識別號: EISSN: 1573-9686
    識別號: DOI: 10.1007/s10439-014-1079-4
    識別號: PMID: 25092421
    Appears in Collections:[Departmant of Mechanical Engineering ] journal & Dissertation

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