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双侧双通气针在不同锥度根管中的冲洗动力学:计算流体动力学研究。

Irrigant dynamics of a back-to-back double side-vented needle in root canals with various tapers: a computational fluid dynamics study.

机构信息

Department of Conservative Dentistry and Endodontics, Manipal College of Dental Sciences Mangalore, Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.

Department of Aeronautical and Automobile Engineering, Manipal Institute of Technology, Manipal, Manipal Academy of Higher Education, Manipal, Karnataka, 576104, India.

出版信息

Odontology. 2024 Oct;112(4):1248-1256. doi: 10.1007/s10266-024-00940-2. Epub 2024 May 4.

Abstract

Understanding the apical pressure and irrigant flow patterns in root canals is crucial for safe and effective irrigation. Therefore, this study aimed to assess the flow characteristics of irrigants in root canal models with varying tapers during final irrigation by employing various needle designs, including a back-to-back double-side-vented needle, through computational fluid dynamics. The root canal model was configured as a closed geometrical cone with a simulated apical zone (size 30) and features tapers of 4%, 6%, and 8%. Three needle types-open-ended needle (OEN), single side-vented needle (SSVN), and double side-vented needle (DSVN)-were investigated. The results indicated that for the 4% taper models, the open-ended needle generated the maximum apical pressure, followed by the double side-vented needle and the single side-vented needle. However, in the 6% and 8% tapering root canal models, the double-side-vented needle applied the lowest maximum apical pressure. Consequently, the DSVN can pose a risk for irrigant extrusion in minimally prepared canals due to heightened apical pressure. In wider canals, the DSVN exhibited lower apical pressure. The maximum irrigant replacement was observed with OEN compared to that of the closed-ended group for both flow rates. Additionally, compared with OENs, closed-ended needles exhibited nonuniform and lower shear wall stress.

摘要

了解根管内顶端压力和冲洗液流动模式对于安全有效的冲洗至关重要。因此,本研究旨在通过计算流体动力学评估在最终冲洗期间不同锥度根管模型中冲洗剂的流动特性,使用各种针设计,包括背对背双侧通气针。根管模型被配置为具有模拟根尖区(大小为 30)的封闭几何锥形,锥度分别为 4%、6%和 8%。研究了三种针类型:开放式针(OEN)、单侧通气针(SSVN)和双侧通气针(DSVN)。结果表明,对于 4%锥度模型,开放式针产生的顶端压力最大,其次是双侧通气针和单侧通气针。然而,在 6%和 8%的锥形根管模型中,双侧通气针施加的最大顶端压力最低。因此,由于顶端压力升高,DSVN 可能会对最小预备根管中的冲洗剂挤出造成风险。在更宽的根管中,DSVN 显示出较低的顶端压力。与闭合组相比,OEN 在两种流速下都观察到最大的冲洗剂替代。此外,与 OEN 相比,闭合针表现出不均匀和较低的剪切壁应力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/179e/11415444/c636c3f65961/10266_2024_940_Fig1_HTML.jpg

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