查看原文
其他

捷迈邦美Rosa手术机器人产品及专利分析

医疗IP君 MedRobot 2024-06-04


   ROSA 初探

ROSA(Robot of Stereotactic Assistant,ROSA)手术机器人是一种新的无框架立体定向手术机器人。

ROSA是由法国Medtech公司研发的新一代多功能手术机器人,自诞生以来就受到众多外科医生的青睐。在2016年时,Zimmer Biomet(捷迈邦美)以不低于1.32亿美元的价格收购了法国手术机器人公司Medtech,拥有了ROSA BrainROSA Spine机器人辅助手术平台的所有权。2019年1月,Zimmer Biomet获得FDA批准用于膝关节手术应用的ROSA平台和ROSA One Spine平台,并宣布计划在2019年中期ROSA Knee将正式进入膝关节市场。这一举措使得Zimmer Biomet成为第一个获得脑、脊柱、膝关节三大领域的FDA批准的公司。


捷迈邦美成立于1927年,总部设立在美国印第安纳州华沙镇,是骨骼肌肉保健行业的全球领导者。2002年Dr.Bertin NAHUM 博士创立了MedTech公司,在法国蒙彼利埃小镇,第一代骨科辅助定位系统BRIGIT正式面世。

作为外科手术生态系统的开拓者,捷迈邦美继续投入稳定手技术和人工智能技术的研发;并应用于第三代外科机器人平台,致力将新技术,新平台应用到更多的临床实践中,在神经外科、脊柱外科、骨科领域继续深耕细作促进微创精准医学的发展。

   专利分析

众所周知的,ROSA家族共有三兄弟:ROSA Knee、ROSA One Brain、ROSA One Spine,对于ROSA手术机器人相关专利,其申请人主要聚集于MEDTECH S.A.公司。笔者针对ROSA机器人所涉及的专利情况,进行了检索,其结果进行如下展示:


专利地图


下图给出了ROSA手术机器人相关专利的专利地图情况,从该专利地图可以很明了的得到ROSA手术机器人相关专利的技术分支情况。




技术脉络


01

ROSA Knee


ROSA Knee是一个机器人平台,旨在协助矫形外科医生进行骨切除,并评估软组织状态,以便在全膝关节置换术中定位植入物。外科医生可以在术前使用手术计划软件来计划植入物的定位和大小。外科医生也可使用 ROSA 膝关节系统内的无图像选项,以实现与基于图像的病例相同的目标。该设备由两个单元组成,分别位于手术台的两侧,分别为:由紧凑的机械臂和触摸屏组成的机器人单元和光学单元和触摸屏
ROSA Knee示意图

02

ROSA One Brain


ROSA One Brain系统是一个动态平台,可用于辅助微创神经外科手术,从活检和立体脑电图(SEEG)到深度脑刺激和心室及经鼻内镜检查。ROSA One Brain在癫痫手术领域有非常大的应用潜力,机器人的准确性使其非常适合于脑部手术。而且,机械臂提供的精度使ROSA One Brain成为神经外科手术的理想平台——确保器械放置在计划区域,同时避开关键结构。ROSA One Brain允许许多神经外科手术以微创方式进行,通常不需要剃掉整个头部。

ROSA One Brain示意图

03

ROSA One Spine


ROSA One Spine是一个机器人和手术导航系统,旨在帮助外科医生进行微创胸腰椎手术。ROSA One Spine旨在适应手术流程,利用机器人和导航来支持手术。除了导航技术套件之外,该平台还配备了3D术中计划软件,旨在提高植入物以及器械放置的准确性和可预测性。ROSA One Spine拥有六个自由度,能够灵活灵活地进入手术部位。一旦设定了轨迹,机械臂的刚性就提供了姿态稳定性。独特的“动态跟踪”功能允许机器人实时移动,与患者的运动同步。


ROSA One Spine 示意图

   重要专利解析

笔者从ROSA手术机器人家族三兄弟涉及的相关专利分别进行了总结归纳分析,选择了部分相对重要的专利进行了解析,部分相关结果如下:

ROSA Knee


公开/公告号

US9585725B2

申请日

2013-06-21

发明名称

Robotic arthroplasty system

解决的技术问题

The present invention relates to a method of securing either hard or soft body tissue. A robotic mechanism or manual effort may be used to position a fastener relative to the body tissue. The fastener may be a suture, staple, screw, or other known device.It is contemplated that the robotic mechanism may advantageously be utilized to position surgical implants other than fasteners in a patient's body. For example, the robotic mechanism may be utilized to position a prosthesis in a patient's body. If desired, the robotic mechanism may be utilized to position a screw type fastener at a specific location in a patient's body. The robotic mechanism may be used to position a scaffold containing viable tissue compOnents relative to body tissue.

技术方案

Embodiments include a robotic mechanism that may be utilized to position prosthetic implants in a patient's body. During joint replacement surgery and other surgical procedures, prosthetic implants may be placed in a patient's body. The robotic mechanism may be utilized to control movement of a cutting tool during resection of bOne in a patient's body. The robotic mechanism includes a programmable computer which is connected with the force transmitting member by a motor. A force measurement assembly is connected with the force transmitting member and the computer. The output from the force measurement assembly is indicative of a resistance encountered by the force transmitting member. A position sensor is connected with the force transmitting member and the computer. The position sensor has an output indicative of the position of the force transmitting member.

相关附图


ROSA One Brain


公开/公告号

US10881483B2

申请日

2016-05-19

发明名称

Neurosurgical assistance robot

解决的技术问题

One of the important aspects of a surgical robot of the type of the invention resides in the stability required by the accuracy of the surgical gesture, which stability should in this case be made to rhyme with a dimensional variability/modularity. The aim of optimal adaptation to the position of the head of the patient should not be met to the detriment of the mechanical rigidity guaranteeing this stability. Thus, a rigid reference structure has been set up, provided with an element (the plate), which the surgical robotic arm, on the One hand, and the head-supporting arm, on the other hand, are directly made integral with, their distribution with respect to this plate further reinforcing the mechanical rigidity and the stability of the assembly.

技术方案

The disclosed subject matter relates to a neurosurgical assistance robot including a movable box the chassis of which is provided with a rigid support arm for connection to a headrest supporting the head of a patient lying on an operating table. Accore invention disclosed subject matter, the support arm is movable with respect to the chassis between a position retracted in the volume of the box and a plurality of extended positions, and a mechanism for locking the arm in any iled being provided for.

相关附图


ROSA One Spine


公开/公告号

US10159534B2

申请日

2017-01-30

发明名称

Robotic-assisted device for positioning a surgical instrument relative to the body of a patient

解决的技术问题

The aim of the invention is to cope with the drawbacks of the state of the art by providing a device for positioning a surgical instrument relative to the body of a patient using at least a first robotic arm supporting at least One surgical instrument and a second tracker arm, which is also a robotic arm. This second robotic arm is aimed at detecting in real time and accurately the movements of said body and to communicate them to said first arm, so that it compensates its position accordingly. In particular, said second arm permits to detect the internal and external movements of the anatomic area to be treated.

技术方案

The robotic device for positioning a surgical instrument relative to the body of a patient includes a first robotic arm with a device for rigidly connecting to at least One surgical instrument, a device for anatomical realignment of the first arm by realigning an image that is of an area of the anatomy of the patient, and a device for compensating the movements of the first arm on the basis of detected movements. One version of the device includes at least One second robotic arm having sensors for detecting inner movements of the anatomical area, and a device for controlling the positioning of the first arm relative to sensed inner movements and to the outer movements induced in the second arm.

相关附图

  小结

与传统外科手术相比,ROSA 能够辅助骨科、神经介入等临床医生实现高质高效的手术目标,相关技术可以造福那些要经历高难度、高风险背部手术的患者。该技术使得关节、脊椎外科、神经介入手术更安全、更精确。显然的,我国也是受益于ROSA公司技术的国家之一。

诚如领域内人士共同认识的那样,外科手术机器人逐渐赢得市场追捧,站上了智能精细化发展、医保政策利好的快车道,国内各大外科机器人厂商也必会将ROSA作为重要的标杆和对照,联动产学研医生多方力量,不断创新,推动我国外科行业更智能化、精准化、微创化的发展,相关知识产权问题也必将会成为各大外科机器人厂商的研究重点课题,后续相关产品的的研发和专利事务值得持续关注。


想了解更多医疗机器人?欢迎点击下方链接



《2022北京医工交叉创新战略前沿技术十大趋势》重磅发布

周五读书 | 隐私与窥探—大数据时代,凡走过,必留下痕迹

长木谷®完成5.4亿元B轮融资,中金资本、IDG资本、鼎晖VGC共同押注骨科人工智能与手术机器人平台

国产内镜加速发展,澳华内镜将于科创板上市 | 企业动态

企业动态 | FDA 对捷迈邦美的 Rosa One 3.1 Brain应用机器人平台发出 I 级召回


继续滑动看下一个
向上滑动看下一个

您可能也对以下帖子感兴趣

文章有问题?点此查看未经处理的缓存