首页> 外文期刊>Journal of the American College of Cardiology >Deformation dynamics and mechanical properties of the aortic annulus by 4-dimensional computed tomography: Insights into the functional anatomy of the aortic valve complex and implications for transcatheter aortic valve therapy
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Deformation dynamics and mechanical properties of the aortic annulus by 4-dimensional computed tomography: Insights into the functional anatomy of the aortic valve complex and implications for transcatheter aortic valve therapy

机译:4维计算机断层摄影术对主动脉瓣环的变形动力学和力学性能:主动脉瓣复合体的功能解剖及其对经导管主动脉瓣膜治疗的意义

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Objectives: The purpose of this study was to assess deformation dynamics and in vivo mechanical properties of the aortic annulus throughout the cardiac cycle. Background: Understanding dynamic aspects of functional aortic valve anatomy is important for beating-heart transcatheter aortic valve implantation. Methods: Thirty-five patients with aortic stenosis and 11 normal subjects underwent 256-slice computed tomography. The aortic annulus plane was reconstructed in 10% increments over the cardiac cycle. For each phase, minimum diameter, ellipticity index, cross-sectional area (CSA), and perimeter (Perim) were measured. In a subset of 10 patients, Young's elastic module was calculated from the stress-strain relationship of the annulus. Results: In both subjects with normal and with calcified aortic valves, minimum diameter increased in systole (12.3 ± 7.3% and 9.8 ± 3.4%, respectively; p < 0.001), and ellipticity index decreased (12.7 ± 8.8% and 10.3 ± 2.7%, respectively; p < 0.001). The CSA increased by 11.2 ± 5.4% and 6.2 ± 4.8%, respectively (p < 0.001). Perim increase was negligible in patients with calcified valves (0.56 ± 0.85%; p < 0.001) and small even in normal subjects (2.2 ± 2.2%; p = 0.01). Accordingly, relative percentage differences between maximum and minimum values were significantly smallest for Perim compared with all other parameters. Young's modulus was calculated as 22.6 ± 9.2 MPa in patients and 13.8 ± 6.4 MPa in normal subjects. Conclusions: The aortic annulus, generally elliptic, assumes a more round shape in systole, thus increasing CSA without substantial change in perimeter. Perimeter changes are negligible in patients with calcified valves, because tissue properties allow very little expansion. Aortic annulus perimeter appears therefore ideally suited for accurate sizing in transcatheter aortic valve implantation.
机译:目的:本研究的目的是评估整个心动周期中主动脉瓣环的变形动力学和体内力学性能。背景:了解功能性主动脉瓣解剖结构的动态方面对于搏动心脏经导管主动脉瓣植入至关重要。方法:35例主动脉瓣狭窄患者和11名正常人接受了256层计算机断层扫描。在整个心动周期中以10%的增量重建主动脉瓣环平面。对于每个相,均测量了最小直径,椭圆率指数,横截面积(CSA)和周长(Perim)。在10名患者的子集中,根据环的应力-应变关系计算了杨氏弹性模量。结果:在主动脉瓣正常和钙化的受试者中,收缩期的最小直径均增加(分别为12.3±7.3%和9.8±3.4%; p <0.001),椭圆率指数降低(12.7±8.8%和10.3±2.7%) ,分别为p <0.001)。 CSA分别增加了11.2±5.4%和6.2±4.8%(p <0.001)。钙化瓣膜患者(0.56±0.85%; p <0.001)的perim增幅可以忽略不计,而正常受试者的比例(2.2±2.2%; p = 0.01)也很小。因此,与所有其他参数相比,Perim的最大值和最小值之间的相对百分比差异显着最小。患者的杨氏模量计算为22.6±9.2 MPa,正常受试者的杨氏模量计算为13.8±6.4 MPa。结论:主动脉瓣环(通常为椭圆形)的收缩期呈更圆形,因此CSA增大而周长没有实质性变化。对于钙化瓣膜患者,周长的变化可以忽略不计,因为组织特性几乎不会扩张。因此,主动脉瓣环周长显得非常适合在经导管主动脉瓣膜植入术中准确确定尺寸。

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