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Advantageous new conic cannula for spine cement injection

机译:适用于脊柱骨水泥注入的新型锥形套管

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Study Design. Experimental study to characterize the influence of the cannula geometry on both, the pressure drop and the cement flow velocity established along the cannula. Objective. To investigate how the new experimental geometry of cannulas can affect the extravertebral injection pressure and the velocity profiles established along the cannula during the injection process. Summary of Background Data. Vertebroplasty procedure is being used to treat vertebral compression fractures. Vertebra infiltration is favored by the use of suitable: (1) syringes or injector devices; (2) polymer or ceramic bone cements; and (3) cannulas. However, the clinical use of ceramic bone cement has been limited due to press-filtering problems. Thus, new approaches concerning the cannula geometry are needed to minimize the press-filtering of calcium phosphate-based bone cements and thereby broaden its possible applications. Methods. Straight, conic, and combined conic-straight new cannulas with different p oximal and distal both length and diameter ratios were drawn with computer-assisted design software. The new geometries were theoretically analyzed by: (1) Hagen-Poisseuille law; and (2) computational fluid dynamics. Some experimental models were manufactured and tested for extrusion in order to confirm and further advance the theoretical results. Results. The results confirm that the totally conic cannula model, having proximal to distal diameter ratio equal 2, requires the lowest injection pressure. Furthermore, its velocity profile showed no discontinuity at all along the cannula length, compared with other known combined proximal and distal straight cannulas, where discontinuity was produced at the proximal-distal transition zone. Conclusion. The conclusion is that the conic cannulas: (a) further reduced the extravertebral pressure during the injection process; (b) showed optimum fluid flow velocity profiles to minimize filter-pressing problems, especially when ceramic cements are used; and (c) can be easily manufactured. In this sense, the new conic cannulas should favor the use of calcium phosphate bone cements in the spine.
机译:学习规划。实验研究了套管几何形状对沿套管建立的压降和水泥流速的影响。目的。为了研究新的插管实验几何形状如何影响椎间注射压力以及在注射过程中沿插管建立的速度分布。背景数据摘要。椎体成形术正被用于治疗椎体压缩性骨折。适当的使用有利于椎骨浸润:(1)注射器或注射器装置; (2)聚合物或陶瓷骨水泥; (3)插管。然而,由于压滤问题,陶瓷骨水泥的临床使用受到限制。因此,需要有关插管几何形状的新方法以最小化磷酸钙基骨水泥的压滤,从而拓宽其可能的应用。方法。用计算机辅助设计软件绘制了具有不同凸部和远部长度和直径比的直,圆锥形和组合的圆锥直形新插管。通过以下方法对新的几何形状进行了理论分析:(1)哈根-普瓦赛定律; (2)计算流体动力学。为了确定和进一步推进理论结果,制造了一些实验模型并进行了挤压试验。结果。结果证实,近端直径与远端直径之比等于2的全圆锥形套管模型需要最低的注射压力。此外,与其他已知的近端和远端直插管在近端-远端过渡区产生不连续性相比,其速度分布在插管长度上完全没有间断。结论。结论是圆锥形插管:(a)在注射过程中进一步降低了椎骨外压力; (b)显示出最佳的流体流速曲线,以最大程度地减少压滤问题,尤其是在使用陶瓷水泥时; (c)易于制造。从这个意义上讲,新的锥形插管应支持在脊柱中使用磷酸钙骨水泥。

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