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骨钻孔的热评估:评估钻头和顺序钻孔

Thermal Evaluation of Bone Drilling: Assessing Drill Bits and Sequential Drilling.

作者信息

Rugova Sihana, Abboud Marcus

机构信息

Department of Oral Biology and Pathology, Stony Brook University, Stony Brook, NY 11794, USA.

School of Engineering, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

Bioengineering (Basel). 2024 Sep 16;11(9):928. doi: 10.3390/bioengineering11090928.

Abstract

Sequential drilling is a common practice in dental implant surgery aimed at minimizing thermal damage to bone. This study evaluates the thermal effects of sequential drilling and assesses modifications to drilling protocols to manage heat generation. We utilized a custom drill press and artificial bone models to test five drill bits under various protocols, including sequential drilling with different loads, spindle speeds, and peck drilling. Infrared thermography recorded temperature changes during the drilling process, with temperatures monitored at various depths around the osteotomy. The results reveal sequential drilling does not eliminate the thermal damage zone it creates (well over 70 °C). It creates harmful heat to surrounding bone that can spread up to 10 mm from the osteotomy. The first drill used in sequential drilling produces the highest temperatures (over 100 °C), and subsequent drill bits cannot remove the thermal trauma incurred; rather, they add to it. Modifying drill bit design and employing proper drilling techniques, such as reducing drilling RPM and load, can reduce thermal trauma by reducing friction. Inadequate management of heat can lead to prolonged recovery, increased patient discomfort, and potential long-term complications such as impaired bone-to-implant integration and chronic conditions like peri-implantitis. Ensuring healthy bone conditions is critical for successful implant outcomes.

摘要

顺序钻孔是牙种植手术中的常见操作,旨在将对骨组织的热损伤降至最低。本研究评估了顺序钻孔的热效应,并评估了对钻孔方案的调整以控制热量产生。我们使用了一台定制钻床和人工骨模型,在各种方案下测试了五个钻头,包括不同负载、主轴转速下的顺序钻孔以及啄钻。红外热成像记录了钻孔过程中的温度变化,在截骨术周围的不同深度监测温度。结果显示,顺序钻孔并不能消除其产生的热损伤区域(远超过70°C)。它会对周围骨组织产生有害热量,这种热量可从截骨术处扩散至10毫米远。顺序钻孔中使用的第一个钻头产生的温度最高(超过100°C),后续钻头无法消除已产生的热创伤,反而会加剧热创伤。通过改进钻头设计和采用适当的钻孔技术,如降低钻孔每分钟转速和负载,可以通过减少摩擦来降低热创伤。对热量管理不当会导致恢复时间延长、患者不适感增加以及潜在的长期并发症,如骨与种植体结合受损以及种植体周围炎等慢性疾病。确保骨组织健康状况对于种植成功至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c00/11444131/458cbc24478a/bioengineering-11-00928-g001.jpg

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