Thermal necrosis-aided dental implant removal: A rabbit model pilot study.

G-N Hasanoğlu-Erbaşar, M Güngörmüş, E Alimoğullari, S Çayli, E Peker, A Narin, M Orhan
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Abstract

Background: The significant advances in the materials and biological aspects of dental implants haven't completely eradicated the implant failures. The removal of osseointegrated but otherwise failed implants present several challenges including adjacent tissues damage and necessity of bone augmentation for reimplantation. Controlled thermal necrosis has emerged as an alternative technique to aid removal of osseointegrated dental implants with minimal to no defect to healthy bone or surrounding tissues. This study aimed to evaluate the thermal necrosis-aided implant removal method in a rabbit osseointegration model.

Material and methods: A total of 8 male New Zealand rabbits were used in the study. Two dental implants were placed on each femur of the rabbits. Heating of the implants was performed after 7 weeks following the implantation. Heating was done by contacting the tip of an electrosurgey tool in monopolar mode at different power settings and contact durations (5W - 2 seconds, 5W - 10 seconds, and 10 W - 10 seconds). No heating was done on the control group. Implant stability right after implantation, before heat application and after heat application was determined using an Osstell™ Mentor Device. Following the removal of implants histological analyses were performed to determine the effects of heat application at cellular level.

Results: ISQ values of the 10W-10s group was significantly lower compared to the other groups (p<0.001). No indication of progressive necrosis or irreversible damage was observed in any of the groups. However, the percent of empty-apoptotic lacunae were statistically higher in the 5W-10s and the 10W-10s groups compared the control and the 5W-2s groups.

Conclusions: Within the conditions of this study, we conclude that heat application with an electrosurgery tool using monopolar mode at 10W power for 10 seconds is optimal for reversing osseointegration with no extensive or progressive damage to the bone.

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热坏死辅助牙种植体去除:兔模型初步研究。
背景:种植体材料和生物学方面的巨大进步并没有完全根除种植体失败。骨整合但其他方面失败的植入物的移除提出了几个挑战,包括邻近组织损伤和骨增强的必要性。可控热坏死已成为一种替代技术,以帮助去除对健康骨骼或周围组织的最小或无缺陷的骨整合牙种植体。本研究旨在评估热坏死辅助种植体去除方法在兔骨整合模型中的应用。材料与方法:选用雄性新西兰兔8只。在兔的每根股骨上放置两颗牙种植体。植入7周后对植入物进行加热。在单极模式下,在不同的功率设置和接触时间(5W - 2秒,5W - 10秒和10w - 10秒)下,通过接触电手术工具的尖端来加热。对照组不进行加热。使用Osstell™Mentor Device测定植入后、热敷前和热敷后的植入物稳定性。移除植入物后,进行组织学分析以确定热应用在细胞水平上的影响。结果:与其他组相比,10W-10s组的ISQ值显著降低(p结论:在本研究条件下,我们得出结论,使用单极模式在10W功率下加热10秒的电手术工具是逆转骨整合的最佳选择,不会对骨骼造成广泛或进行性损伤。
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来源期刊
CiteScore
4.50
自引率
0.00%
发文量
52
期刊介绍: 1. Oral Medicine and Pathology: Clinicopathological as well as medical or surgical management aspects of diseases affecting oral mucosa, salivary glands, maxillary bones, as well as orofacial neurological disorders, and systemic conditions with an impact on the oral cavity. 2. Oral Surgery: Surgical management aspects of diseases affecting oral mucosa, salivary glands, maxillary bones, teeth, implants, oral surgical procedures. Surgical management of diseases affecting head and neck areas. 3. Medically compromised patients in Dentistry: Articles discussing medical problems in Odontology will also be included, with a special focus on the clinico-odontological management of medically compromised patients, and considerations regarding high-risk or disabled patients. 4. Implantology 5. Periodontology
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