Dynamic Navigation for Dental Implant Placement

被引:7
作者
Pinter, Gabor Tamas [1 ]
Decker, Roland [1 ]
Szenasi, Gabor [2 ]
Barabas, Peter [1 ]
Huszar, Tamas [1 ]
机构
[1] Semmelweis Univ, Dept Oro Maxillofacial Surg & Stomatol, Fac Dent, Budapest, Hungary
[2] Semmelweis Univ, Doctoral Sch Theoret & Translat Med, Sch PhD Studies, Budapest, Hungary
来源
JOVE-JOURNAL OF VISUALIZED EXPERIMENTS | 2022年 / 187期
关键词
ACCURACY;
D O I
10.3791/63400
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
In modern implantology, the application of surgical navigation systems is becoming increasingly important. In addition to static surgical navigation methods, a guide-independent dynamic navigation implant placement procedure is becoming more widespread. The procedure is based on computer-guided dental implant placement utilizing optical control. This work aims to demonstrate the technical steps of a new dynamic computer-aided implant surgery (DCAIS) system (design, calibration, surgery) and check the accuracy of the results. Based on cone-beam computed tomography (CBCT) scans, the exact positions of implants are determined with dedicated software. The first step of the operation is the calibration of the navigation system, which can be performed in two ways: 1) based on CBCT images taken with a marker or 2) based on CBCT images without markers. Implants are inserted with the aid of real-time navigation according to the preoperative plans. The accuracy of the interventions can be evaluated based on postoperative CBCT images. The preoperative images containing the planned positions of the implants and postoperative CBCT images were compared based on the angulation (degree), platform, and apical deviation (mm) of the implants. To evaluate the data, we calculated the standard deviation (SD), mean, and standard error of the mean (SEM) of deviations within planned and performed implant positions. Differences between the two calibration methods were compared based on this data. Based on the interventions performed so far, the use of DCAIS allows for high-precision implant placement. A calibration system that does not require labeled CBCT recording allows for surgical intervention with similar accuracy as a system that uses labeling. The accuracy of the intervention can be improved by training.
引用
收藏
页数:14
相关论文
共 50 条
[31]   Accuracy of Template-Based Dental Implant Placement [J].
Eggers, Georg ;
Patellis, Evangelos ;
Muehling, Joachim .
INTERNATIONAL JOURNAL OF ORAL & MAXILLOFACIAL IMPLANTS, 2009, 24 (03) :447-454
[32]   Real-Time Navigation in Zygomatic Implant Placement: Workflow [J].
Wu, Yiqun ;
Wang, Feng ;
Huang, Wei ;
Fan, Shengchi .
ORAL AND MAXILLOFACIAL SURGERY CLINICS OF NORTH AMERICA, 2019, 31 (03) :357-+
[33]   In Vitro Comparison of Time and Accuracy of Implant Placement Using Trephine and Conventional Drilling Techniques Under Dynamic Navigation [J].
Deeb, Janina Golob ;
Frantar, Anja ;
Deeb, George R. ;
Carrico, Caroline K. ;
Rener-Sitar, Ksenija .
JOURNAL OF ORAL IMPLANTOLOGY, 2021, 47 (03) :199-204
[34]   A novel extraoral registration method for a dynamic navigation system guiding zygomatic implant placement in patients with maxillectomy defects [J].
Zhou, W. ;
Fan, S. ;
Wang, F. ;
Huang, W. ;
Jamjoom, F. Z. ;
Wu, Y. .
INTERNATIONAL JOURNAL OF ORAL AND MAXILLOFACIAL SURGERY, 2021, 50 (01) :116-120
[35]   Immediate implant placement in the posterior mandibular region was assisted by dynamic real-time navigation: a retrospective study [J].
Geng, Ningbo ;
Ren, Jing ;
Zhang, Chi ;
Zhou, Tianren ;
Feng, Chongjin ;
Chen, Songling .
BMC ORAL HEALTH, 2024, 24 (01)
[36]   Accuracy of Static and Dynamic Computer-Assisted Implant Surgery During Dental Implant Placement: A Systematic Review and Meta-analysis [J].
Kulkarni, Aditya ;
Pujari, Prafull ;
Patnana, Arun Kumar ;
Narain, Satya ;
Galani, Mohit ;
Vanga, Narasimha Rao V. .
JOURNAL OF MAXILLOFACIAL & ORAL SURGERY, 2025, 24 (04) :855-864
[37]   Dental Implant Navigation System Based on Trinocular Stereo Vision [J].
Bi, Songlin ;
Wang, Menghao ;
Zou, Jiaqi ;
Gu, Yonggang ;
Zhai, Chao ;
Gong, Ming .
SENSORS, 2022, 22 (07)
[38]   The accuracy and learning curve of active and passive dynamic navigation-guided dental implant surgery: An in vitro study [J].
Wang, Xiao-yu ;
Liu, Lin ;
Guan, Miao-sheng ;
Liu, Qian ;
Zhao, Tong ;
Li, Hong-bo .
JOURNAL OF DENTISTRY, 2022, 124
[39]   The accuracy and learning curve of active and passive dynamic navigation-guided dental implant surgery: An in vitro study [J].
Wang, Xiao-Yu ;
Liu, Lin ;
Guan, Miao-Sheng ;
Liu, Qian ;
Zhao, Tong ;
Li, Hong-Bo .
JOURNAL OF DENTISTRY, 2022, 124
[40]   Comparison of the accuracy of dental implant placement using static and dynamic computer-assisted systems: an in vitro study [J].
Zhou, Miao ;
Zhou, Hui ;
Li, Shu-Yi ;
Zhu, Yi-Bo ;
Geng, Yuan-Ming .
JOURNAL OF STOMATOLOGY ORAL AND MAXILLOFACIAL SURGERY, 2021, 122 (04) :343-348