Mishra Sunil Kumar, Chowdhary Ramesh
Department of Maxillofacial Prosthodontics and Implantology, Rishiraj College of Dental Sciences & Research Centre, Bhopal, 462036 Madhya Pradesh India.
Branemark Osseointegration Center India, Golden Plaza Complex, Court Road, Gulbarga, 585103 Karnataka India.
J Indian Prosthodont Soc. 2014 Jun;14(2):131-43. doi: 10.1007/s13191-014-0350-6. Epub 2014 Feb 18.
Osseointegration is the more stable situation and results in a high success rate of dental implants. Heat generation during rotary cutting is one of the important factors influencing the development of osseointegration.
To assess the various factors related to implant drills responsible for heat generation during osteotomy.
To identify suitable literature, an electronic search was performed using Medline and Pubmed database. Articles published in between 1960 to February 2013 were searched. The search is focused on heat generated by dental implant drills during osteotomy. Various factors related to implant drill such effect of number of blades; drill design, drill fatigue, drill speed and force applied during osteotomies which were responsible for heat generation were reviewed. Titles and abstracts were screened, and literature that fulfilled the inclusion criteria was selected for a full-text reading.
The initial literature search resulted in 299 articles out of which only 70 articles fulfils the inclusion criteria and were included in this systematic review. Many factors related to implant drill responsible for heat generation were found. Successful preparation of an implant cavity with minimal damage to the surrounding bone depends on the avoidance of excessive temperature generation during surgical drilling.
The relationship between heat generated and implant drilling osteotomy is multifactorial in nature and its complexity has not been fully studied. Lack of scientific knowledge regarding this issue still exists. Further studies should be conducted to determine the various factors which generate less heat while osteotomy such as ideal ratio of force and speed in vivo, exact time to replace a drill, ideal drill design, irrigation system, drill-bone contact area.
骨结合是一种更为稳定的情况,能带来较高的牙种植成功率。旋转切割过程中产生的热量是影响骨结合发展的重要因素之一。
评估与种植钻相关的、在截骨过程中产生热量的各种因素。
为了确定合适的文献,使用Medline和Pubmed数据库进行了电子检索。检索了1960年至2013年2月期间发表的文章。检索重点是牙种植钻在截骨过程中产生的热量。对与种植钻相关的各种因素进行了综述,如叶片数量的影响;钻的设计、钻的疲劳、钻速以及截骨过程中施加的力,这些都是产生热量的原因。筛选了标题和摘要,并选择符合纳入标准的文献进行全文阅读。
初步文献检索得到299篇文章,其中只有70篇符合纳入标准并被纳入本系统评价。发现了许多与种植钻产生热量相关的因素。成功制备种植窝且对周围骨损伤最小,取决于手术钻孔过程中避免产生过高温度。
产生的热量与种植钻截骨之间的关系本质上是多因素的,其复杂性尚未得到充分研究。关于这个问题的科学知识仍然缺乏。应进一步开展研究,以确定在截骨时产生较少热量的各种因素,如体内力与速度的理想比值、更换钻头的准确时间、理想的钻设计、冲洗系统、钻与骨的接触面积。