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首页> 外文期刊>The Journal of Thoracic and Cardiovascular Surgery >A saddle-shaped annulus reduces systolic strain on the central region of the mitral valve anterior leaflet.
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A saddle-shaped annulus reduces systolic strain on the central region of the mitral valve anterior leaflet.

机译:鞍形环减少了二尖瓣前小叶中心区域的收缩期应变。

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摘要

OBJECTIVES: Mitral valve repair for degenerative diseases has shown suboptimal results in selected patients. Improved postinterventional mitral valve mechanics are essential to increase repair durability. METHODS: Eight porcine mitral valves were tested in a physiologic left heart simulator under normal hemodynamic conditions. Leaflet strain was measured by tracking the displacement of a 5 x 8 marker array located on the central region of the anterior leaflet. Local leaflet strain and strain rates were calculated from measured displacements. The experiments were conducted in 4 different annular configurations associated with saddle height/commissural diameter ratios of 0%, 10%, 20%, and 30%. All experiments were conducted in the normal papillary muscle position. RESULTS: For all annular configurations, the anterior leaflet material showed anisotropy, with the major principal strain in the radial direction and the minor principal strain in the circumferential direction. The peak major principal strain was 0.22 +/- 0.07, whereas the peak minor principal strain was 0.11 +/- 0.049 in the normal annular configuration (saddle height/commissural diameter ratio of 20%). The peak major principal strain was reduced by 13.52% +/- 12.79%, 27.53% +/- 13.65%, and 29.72% +/- 29.79% for the 10%, 20%, and 30% saddle height/commissural diameter ratio configurations, respectively, when compared with reduction for the flat annular configuration. Peak strain in the circumferential direction was unaffected by annular curvature. Reduction in areal strain of 18.62% +/- 18.98% and 27.97% +/- 35.01% were observed for the 20% and 30% saddle height/commissural diameter ratio configurations, respectively. CONCLUSION: The strain in the central region of the anterior leaflet is reduced with increasing annular saddle curvature. Decreased leaflet strain and associated stress might improve mitral valve repair durability.
机译:目的:对退行性疾病的二尖瓣修复在某些患者中显示出次佳的结果。介入后二尖瓣的力学性能的改善对于提高修复的耐久性至关重要。方法:在生理血流动力学条件下,在生理性左心模拟器中测试了八只猪二尖瓣。通过跟踪位于前小叶中心区域的5 x 8标记阵列的位移来测量小叶应变。根据测得的位移计算局部小叶应变和应变率。实验是在4种不同的环形结构中进行的,它们的鞍座高度/接合直径比为0%,10%,20%和30%。所有实验均在正常乳头肌位置进行。结果:对于所有环形结构,前小叶材料均表现出各向异性,主要主应变在径向,次要主应变在圆周方向。在正常的环形结构中(鞍座高度/接合直径之比​​为20%),峰值主变形为0.22 +/- 0.07,而峰值主变形为0.11 +/- 0.049。对于10%,20%和30%的鞍座高度/合径直径比率配置,峰值主要主应变降低了13.52%+/- 12.79%,27.53%+/- 13.65%和29.72%+/- 29.79%分别与扁平环形结构的减小相比。圆周方向上的峰值应变不受环形曲率的影响。对于20%和30%的鞍座高度/合径直径比率配置,分别观察到面应变降低18.62%+/- 18.98%和27.97%+/- 35.01%。结论:前瓣中央区域的应变随着环形鞍形弯曲度的增加而减小。降低的小叶张力和相关压力可能会改善二尖瓣修复的耐久性。

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