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High-viscosity cement significantly enhances uniformity of cement filling in vertebroplasty: an experimental model and study on cement leakage.

机译:高粘度水泥可显着提高椎体成形术中水泥填充的均匀性:一种实验模型和水泥渗漏研究。

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STUDY DESIGN: Experimental study using a laboratory leakage model. OBJECTIVE: To examine the working hypothesis that high-viscosity cements will spread uniformly, thus significantly reducing the risk of leakage. SUMMARY OF BACKGROUND DATA: In vertebroplasty, forces that govern the flow of bone cement in the trabecular bone skeleton are an essential determinant of the uniformity of cement filling. Extraosseous cement leakage has been reported to be a major complication of this procedure. Leakage occurs due to the presence of a path of least resistance caused by irregularities in the trabecular bone or shell structure. Ideally, cement uniformly infiltrates the trabecular bone skeleton and does not favor specific paths. Cement viscosity is believed to affect the infiltration forces and flow during the procedure. Clinically, altering the time between cement mixing and delivery modifies the viscosity of bone cement. METHODS: An experimental model of the leakage phenomenon of vertebroplasty was developed. A path, simulating a blood vessel, was created in the model to perturb the forces underlying cement flow and to favor leakage. Cement of varying viscosities was injected in the model, and, thereafter, the filling pattern, cement mass that has leaked, time at which leakage occurred, and injection pressure were measured. RESULTS: A strong relationship was found between the uniformity of the filling pattern and the elapsed time from cement mixing and viscosity, respectively. Specifically, 3 distinct cement leakage patterns were observed: immediate leakage was observed when cement was injected 5-7 minutes following mixing. The cement was of a low viscosity and more than 50% of the total cement injected leaked. Moderate leakage was observed when injection occurred 7-10 minutes following mixing. Less than 10% of the cement leaked, and the viscosity was at a transient state between the low viscosity of immediate leakage and a higher viscosity, doughy cement. Cement leakage ceased completely when cement was delivered after 10 minutes. The viscosity of the cement in this case was high, and the cement was of a dough-like consistency. CONCLUSIONS: High-viscosity cement seems to stabilize cement flow. However, the forces required for the delivery of high-viscosity cement may approach or exceed the human physical limit of injection forces. Although the working time of the cement is about 17 minutes, it may not be manually injectable with a standard syringe and cannula after 10 minutes, at which time cement leakage ceased completely.
机译:研究设计:使用实验室泄漏模型的实验研究。目的:研究高粘度水泥均匀分布的工作假设,从而显着降低泄漏的风险。背景数据摘要:在椎体成形术中,控制小梁骨骨架中骨水泥流动的力是水泥填充均匀性的重要决定因素。据报道骨外水泥渗漏是该手术的主要并发症。泄漏的发生是由于小梁骨或壳结构的不规则性导致的阻力最小的路径的存在。理想情况下,水泥均匀地渗入小梁骨骨架,并且不偏向特定路径。据信水泥粘度会影响该过程中的渗透力和流动。临床上,改变水泥混合和输送之间的时间会改变骨水泥的粘度。方法:建立椎体成形术渗漏现象的实验模型。在模型中创建了一条模拟血管的路径,以扰动水泥流动的潜在力并促进渗漏。在模型中注入不同粘度的水泥,然后,测量填充图案,渗漏的水泥质量,渗漏发生的时间和注入压力。结果:填充图案的均匀性与水泥搅拌和黏度所花费的时间之间存在密切关系。具体地,观察到3种不同的水泥泄漏模式:当在混合后5-7分钟注入水泥时,观察到立即泄漏。水泥的粘度低,泄漏的水泥总量超过50%。混合后7-10分钟进行注射,观察到中等程度的泄漏。少于10%的水泥渗漏,粘度处于立即渗漏的低粘度和较高粘度的面团状水泥之间的过渡状态。 10分钟后交付水泥时,水泥泄漏完全停止。在这种情况下,水泥的粘度高,并且水泥具有面团状的稠度。结论:高粘度水泥似乎能稳定水泥流动。但是,输送高粘度水泥所需的力可能接近或超过人类对注射力的物理极限。尽管水泥的工作时间约为17分钟,但可能无法在10分钟后用标准的注射器和套管手动注入,此时水泥的渗漏完全停止了。

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