猪三尖瓣前小叶随时间的力学特性:在离体研究中的应用

Julia Clarin, Dominique Dang, Lucas Santos, Rouzbeh Amini
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引用次数: 2

摘要

离体三尖瓣(TV)的力学特性继续为原生瓣膜功能和瓣膜疾病的发展提供关键见解。然而,在体外描述TV生物力学行为的实验方法往往不能解释在实验准备过程中可能发生的组织力学反应的潜在变化。因此,我们通过5小时的双轴力学测试来评估前三尖瓣小叶(ATL)的力学反应,以验证我们新鲜组织实验的准确性。我们假设ATL的机械反应在提议的时间尺度内保持一致。我们发现,在5小时的测试周期内,ATL刚度(由上切模量(UTM)表示)在径向和周向上都没有显著变化。同样,在估计的平均收缩应力值为85 kPa时,没有观察到径向或周向应变的显著变化。总体平均UTM(平均值的±标准误差(SEM))显示,在所有时间点上,ATL样品在周向(11.3±0.98 MPa)比径向(2.29±0.20 MPa)明显更硬。因此,我们的结果表明,体外三尖瓣研究的结果需要长达5小时的样品制备仍然是可靠的。
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Mechanical Characterization of Porcine Tricuspid Valve Anterior Leaflets Over Time: Applications to Ex Vivo Studies
Mechanical characterization of the ex vivo tricuspid valve (TV) continues to provide key insights into native valve function and the development of valvular diseases. However, experimental methods to characterize TV biomechanical behavior ex vivo often fail to account for potential changes in the tissue’s mechanical responses that may occur during experiment preparation. Therefore, we assessed the mechanical responses of the anterior tricuspid leaflet (ATL) via biaxial mechanical testing over the course of 5 h to validate the accuracy of our fresh tissue experiments. We hypothesized that ATL mechanical responses would remain consistent for the proposed time scale. We found that ATL stiffness, represented by the upper tangent modulus (UTM), did not significantly change in either the radial or circumferential directions for the 5-h test period. Similarly, no significant change was observed in radial or circumferential strains corresponding to an estimated mean systolic stress value of 85 kPa. Overall mean UTM (±standard error of the mean (SEM)) showed that ATL samples were significantly stiffer in the circumferential direction (11.3 ± 0.98 MPa) compared to the radial direction (2.29 ± 0.20 MPa) across all time points. Thus, our results indicate that the outcomes of ex vivo tricuspid valve studies requiring sample preparation up to 5 h remain reliable.
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