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新型生产力:中国首例颅颌面外科手术机器人IST多中心临床试验初步报告

New Productive Force: The Preliminary Report of First Craniofacial Surgical Robot IST Multicenter Clinical Trial in China.

作者信息

Li Li, Lin Li, Xu HaiSong, Zhang Yan, Chai Gang

机构信息

Department of Plastic and Reconstructive Surgery, Shanghai 9th People's Hospital, School of Medicine, Shanghai Jiao Tong University.

National Center for Translational Medicine(Shanghai) SHU Branch, Shanghai University, Shanghai, China.

出版信息

J Craniofac Surg. 2025;36(1):21-25. doi: 10.1097/SCS.0000000000010992. Epub 2024 Dec 27.

Abstract

BACKGROUND

This paper presents the authors' team's research on a craniofacial surgical robot developed in China. Initiated in 2011 with government funding, the craniofacial surgical robot project was officially launched in Shanghai, developed jointly by the Ninth People's Hospital affiliated with Shanghai Jiao Tong University School of Medicine and the Shanghai Jiao Tong University medical-engineering team. Currently, based on multiple rounds of model surgeries, animal experiments, and clinical trials, our team is applying for approval as a Class III medical device from the National Medical Products Administration (NMPA). As an innovative tool in the field of craniofacial surgery, it fills a technological gap within the country.

METHODS

This study is a multicenter cohort study based on patient data from Shanghai Ninth People's Hospital from 2019 to 2024. Inclusion criteria included patients who underwent craniofacial surgery with complete follow-up data, with the primary variable being the use of robotic assistance in craniofacial surgery. Data analysis involved descriptive statistics, t tests, and multivariable regression, with a significance level set at P<0.05.

RESULTS

The craniofacial surgical robot has been widely explored in the fields of congenital deformities, tumor reconstruction, and esthetic surgery. In the clinical trials discussed in this article, which included experiments on both craniofacial deformity correction surgeries and esthetic surgeries, a total of 39 patients were enrolled. In mandibular osteotomy surgery, robotic-assisted procedures can reduce osteotomy length error by an average of 2.2 mm and mandibular angle error by 9.09 degrees, while also decreasing the average surgery time by 10.43 minutes. In hemifacial microsomia distraction osteogenesis surgery, robotic-assisted surgery can reduce osteotomy length error by an average of 4.6 mm and shorten the average surgery time by 60 minutes. The robotic-assisted group also showed better perioperative outcomes for patients. The surgical precision was improved and there was a significant reduction in postoperative complications.

CONCLUSION

The authors' research team has completed the first multicenter study on craniofacial surgical robots in China, demonstrating that this robot significantly enhances surgical precision, reduces operation time, and improves perioperative patient indicators. These findings indicate that the robot is highly effective in assisting surgeons with complex procedures. The study suggests that, in the future, this robot is likely to be widely adopted in craniofacial surgery, significantly advancing surgical efficiency and precision, and bringing transformative progress to clinical practice.

摘要

背景

本文介绍了作者团队对中国研发的一款颅面外科手术机器人的研究。颅面外科手术机器人项目于2011年在政府资助下启动,在上海正式开展,由上海交通大学医学院附属第九人民医院与上海交通大学医学工程团队联合研发。目前,基于多轮模型手术、动物实验和临床试验,我们团队正在向国家药品监督管理局(NMPA)申请三类医疗器械批准。作为颅面外科领域的创新工具,它填补了国内技术空白。

方法

本研究是一项基于上海第九人民医院2019年至2024年患者数据的多中心队列研究。纳入标准包括接受颅面手术且有完整随访数据的患者,主要变量是颅面手术中是否使用机器人辅助。数据分析包括描述性统计、t检验和多变量回归,显著性水平设定为P<0.05。

结果

颅面外科手术机器人已在先天性畸形、肿瘤重建和美容手术领域得到广泛探索。在本文讨论的临床试验中,包括颅面畸形矫正手术和美容手术的实验,共纳入39例患者。在下颌骨截骨手术中,机器人辅助手术可使截骨长度误差平均减少2.2毫米,下颌角误差减少9.09度,同时平均手术时间减少10.43分钟。在半侧颜面短小畸形牵张成骨手术中,机器人辅助手术可使截骨长度误差平均减少4.6毫米,平均手术时间缩短60分钟。机器人辅助组患者的围手术期结果也更好。手术精度提高,术后并发症显著减少。

结论

作者的研究团队完成了中国首个关于颅面外科手术机器人的多中心研究,表明该机器人显著提高了手术精度,减少了手术时间,改善了围手术期患者指标。这些发现表明该机器人在协助外科医生进行复杂手术方面非常有效。该研究表明,未来这款机器人可能会在颅面外科手术中得到广泛应用,显著提高手术效率和精度,并给临床实践带来变革性进展。

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