The Effect of Osseodensification on Ridge Expansion, Intraosseous Temperature, and Primary Implant Stability: A Pilot Study on Bovine Ribs.

IF 1.5 4区 医学 Q3 DENTISTRY, ORAL SURGERY & MEDICINE Journal of Oral Implantology Pub Date : 2023-04-01 DOI:10.1563/aaid-joi-D-21-00259
Shan Li, Sally Yijin Tan, Eunice Yun-Man Lee, Leticia Algarves Miranda, Victor Haruo Matsubara
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Abstract

Osseodensification is a novel technique based on nonsubtractive drilling to preserve and condense bone during osteotomy preparation. The aim of this ex vivo study was to compare osseodensification and conventional extraction drilling technique with regard to intraosseous temperatures, expansion of alveolar ridge width, and primary implant stability using different implant geometries: tapered and straight walled. A total of 45 implant sites were prepared in bovine ribs following osseodensification and conventional protocols. Changes in intraosseous temperatures were recorded at 3 depths using thermocouples, and ridge width was measured at 2 different depths before and after osseodensification preparations. The primary implant stability was measured using peak insertion torque and the implant stability quotient (ISQ) following placement of straight and tapered implants. A significant change in temperature was recorded during site preparation for all techniques tested but not at all depths. Osseodensification recorded higher mean temperatures (42.7°C) than conventional drilling, particularly at the midroot level. Statistically significant ridge expansion was observed at both the crestal and apical levels in the osseodensification group. The ISQ values were significantly higher only for tapered implants placed in osseodensification sites when compared with conventional drilling sites; however, there was no difference in the primary stability between tapered and straight implants within the osseodensification group. Within the limitations of the present pilot study, osseodensification was found to increase the primary stability of straight-walled implants without overheating the bone and significantly expanded the ridge width. However, further investigation is required to determine the clinical significance of the bone expansion created by this new technique.

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骨致密化对骨脊扩展、骨内温度和初代种植体稳定性的影响:牛肋骨的初步研究。
骨致密化是一种基于非减法钻孔的新技术,用于在截骨准备过程中保存和凝聚骨。这项离体研究的目的是比较骨致密化和传统的拔牙钻孔技术在骨内温度、牙槽嵴宽度的扩张和不同种植体几何形状(锥形和直壁)的初级种植体稳定性方面的差异。按照骨密度和常规方案,在牛肋骨上共制备了45个种植体。利用热电偶记录骨内温度在3个深度的变化,并测量骨化制备前后2个不同深度的脊宽。使用峰值插入扭矩和种植体稳定商数(ISQ)测量初始种植体的稳定性,然后放置直型和锥形种植体。在所有测试技术的现场准备期间,记录了显著的温度变化,但不是在所有深度。与常规钻孔相比,骨致密化的平均温度(42.7°C)更高,特别是在根中水平。在骨密度组中,嵴和根尖水平的嵴扩张均有统计学意义。与常规钻孔部位相比,仅在骨密度部位放置锥形种植体的ISQ值显著高于常规钻孔部位;然而,在骨密度组中,锥形种植体和直型种植体的初始稳定性没有差异。在目前初步研究的限制下,骨密度被发现增加了直壁种植体的初级稳定性,而不会使骨过热,并显着扩大了脊宽。然而,需要进一步的研究来确定这种新技术所产生的骨扩张的临床意义。
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来源期刊
Journal of Oral Implantology
Journal of Oral Implantology DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
2.30
自引率
6.20%
发文量
54
审稿时长
6-12 weeks
期刊介绍: The official publication of the American Academy of Implant Dentistry and of the American Academy of Implant Prosthodontics, is dedicated to providing valuable information to general dentists, oral surgeons, prosthodontists, periodontists, scientists, clinicians, laboratory owners and technicians, manufacturers, and educators. Implant basics, prosthetics, pharmaceuticals, the latest research in implantology, implant surgery, and advanced implant procedures are just some of the topics covered.
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