基于氧化锆(zro2)的高多孔陶瓷植入物对骨组织再生的影响

IF 0.6 Archiv EuroMedica Pub Date : 2023-02-27 DOI:10.35630/2023/13/1.212
I. Evdokimov, E. Papynov, O. Shichalin, I. Afonin, V. Apanasevich, V. Tolmachev, Y. Krasnikov, Y. Gainullina, G. Reva, I. Reva, V. Usov
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引用次数: 0

摘要

本实验工作的目的是确定使用先前开发的反应放电等离子烧结(spark plasma sintering - reactive Synthesis, SPS-RS)方法合成和获得的现代生物陶瓷对骨组织的再生能力。这项研究是在26只实验兔身上进行的——新西兰白兔的雌性,分为两组。在手术后7,40,210天,采用BMD x线密度法评估生物陶瓷种植体覆盖缺陷后毛刺孔的再生情况。研究结果表明,植体在骨组织缺损区域内牢固固定,无脱位。周围骨组织未见骨质疏松和骨溶解的迹象。术后第210天,根据密度测量数据,观察致密骨组织的形成。使用生物陶瓷植入物可以立即闭合较大的骨缺损,并刺激其周围致密骨结构的形成。
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INFLUENCE OF A HIGHLY POROUS CERAMIC IMPLANT BASED ON ZIRCONIUM OXIDE (ZRO2) ON BONE TISSUE REGENERATION
The purpose of this experimental work was to determine the regeneration ability of bone tissue due to modern bioceramics synthesized and obtained using the previously developed method of reactive spark plasma sintering (Spark Plasma Sintering-Reactive Synthesis, SPS-RS). The study was performed on 26 laboratory rabbits - females of the New Zealand White breed, divided into two groups. The evaluation of the regeneration of the burr hole after covering the defect with a bioceramic implant was performed by the method - (BMD) X-ray densitometry on days 7, 40, 210 after surgery. As a result of the study, there was a tight fixation of the implant in the area of ​​the bone tissue defect without its dislocation. There were no signs of osteoporosis and osteolysis in the surrounding bone tissues. And on the 210th day after the operation, according to densitometric data, the formation of dense bone tissue was observed. The use of a bioceramic implant makes it possible to immediately close large bone defects and to stimulate the formation of dense bone structures around them.
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来源期刊
Archiv EuroMedica
Archiv EuroMedica MEDICINE, GENERAL & INTERNAL-
自引率
83.30%
发文量
140
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