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    • 1. 发明授权
    • Three-dimensional positioning device for minimally invasive surgery
    • 用于微创手术的三维定位装置
    • US08298245B2
    • 2012-10-30
    • US12541997
    • 2009-08-17
    • Shih-Tseng LiYau-Zen ChangHeng-Liang LiuShun-Chung Chuang
    • Shih-Tseng LiYau-Zen ChangHeng-Liang LiuShun-Chung Chuang
    • A61B19/00
    • A61B90/11
    • A three-dimensional positioning device for minimally invasive surgery includes a base, two angle adjustable assemblies, an arc, a sliding assembly, a first positioning assembly, a second positioning assembly and a third positioning assembly. The base includes two first frames and two second frames. Two ends of each second frame are connected to the first frames respectively. Each first frame has a pivotal member. The angle adjustable assemblies are pivotably connected to the pivotal member of the first frame respectively. The arc includes a hollow track member. The angle adjustable assemblies are connected to two ends of the arc. The sliding assembly is mounted on the track member of the arc according to a predetermined position of a nidus. Therefore, the three-dimensional positioning device can effectively improve precision and operation more precisely in minimally invasive surgery to increase surgery success rate.
    • 用于微创手术的三维定位装置包括底座,两个角度可调组件,弧,滑动组件,第一定位组件,第二定位组件和第三定位组件。 基座包括两个第一帧和两个第二帧。 每个第二帧的两端分别连接到第一帧。 每个第一框架具有枢转构件。 角度可调组件分别可枢转地连接到第一框架的枢转构件。 电弧包括中空的轨道构件。 角度可调组件连接到弧的两端。 滑动组件根据榫头的预定位置安装在弧的轨道构件上。 因此,三维定位装置可以在微创手术中更精确地提高精度和手术,提高手术成功率。
    • 3. 发明申请
    • Surgical implant guide and method of manufacturing the same
    • 外科植入物引导及其制造方法
    • US20110093023A1
    • 2011-04-21
    • US12658338
    • 2010-02-08
    • Shih-Tseng LeeChieh-Tsai WuHeng-Liang LiuMing-Yuan Tsai
    • Shih-Tseng LeeChieh-Tsai WuHeng-Liang LiuMing-Yuan Tsai
    • A61B17/56B23P17/04
    • A61B17/1757A61B17/175A61B17/1764A61B2017/568B33Y80/00Y10T29/49
    • The present invention illustrates a method of manufacturing a surgical implant guide to increase the precision, safety and reliability of the surgery. First the present invention plans an invasive position for implanting an implant, and then, plans an invasive path for the implant to invade from the invasive position of an affected tissue, and finally, produces an implant guide based on the invasive position, the invasive path, and the shapes of the implant and the affected tissue. The surgical implant guide includes a coupling portion matching the shape the affected tissue, and a guiding portion matching the shape of the implant, the invasive position, and the invasive path. When the coupling portion is disposed on the affected tissue, the guiding portion is aligned with the invasive position, so that the implant is implanted in the affected tissue under guidance of the invasive path.
    • 本发明示出了制造外科植入物引导件以提高手术的精度,安全性和可靠性的方法。 首先,本发明规划了用于植入植入物的侵入位置,然后,计划用于植入物的侵入性路径从受影响组织的侵入位置侵入,最后基于侵入位置产生植入物引导件,侵入性路径 ,以及植入物和受影响组织的形状。 手术植入物引导件包括与受影响组织的形状相匹配的联接部分,以及匹配植入物形状,侵入位置和侵入性路径的引导部分。 当联接部分设置在受影响的组织上时,引导部分与侵入位置对准,使得植入物在侵入性路径的引导下被植入受影响的组织中。
    • 4. 发明授权
    • Surgical implant guide and method of manufacturing the same
    • 外科植入物引导及其制造方法
    • US08352056B2
    • 2013-01-08
    • US12658338
    • 2010-02-08
    • Shih-Tsen LeeChieh-Tsai WuHeng-Liang LiuMing-Yuan Tsai
    • Shih-Tsen LeeChieh-Tsai WuHeng-Liang LiuMing-Yuan Tsai
    • A61B17/56B23P17/04
    • A61B17/1757A61B17/175A61B17/1764A61B2017/568B33Y80/00Y10T29/49
    • The present invention illustrates a method of manufacturing a surgical implant guide to increase the precision, safety and reliability of the surgery. First the present invention plans an invasive position for implanting an implant, and then, plans an invasive path for the implant to invade from the invasive position of an affected tissue, and finally, produces an implant guide based on the invasive position, the invasive path, and the shapes of the implant and the affected tissue. The surgical implant guide includes a coupling portion matching the shape the affected tissue, and a guiding portion matching the shape of the implant, the invasive position, and the invasive path. When the coupling portion is disposed on the affected tissue, the guiding portion is aligned with the invasive position, so that the implant is implanted in the affected tissue under guidance of the invasive path.
    • 本发明示出了制造外科植入物引导件以提高手术的精度,安全性和可靠性的方法。 首先,本发明规划了用于植入植入物的侵入位置,然后,计划用于植入物的侵入性路径从受影响组织的侵入位置侵入,最后基于侵入位置产生植入物引导件,侵入性路径 ,以及植入物和受影响组织的形状。 手术植入物引导件包括与受影响组织的形状相匹配的联接部分,以及匹配植入物形状,侵入位置和侵入性路径的引导部分。 当联接部分设置在受影响的组织上时,引导部分与侵入位置对准,使得植入物在侵入性路径的引导下被植入受影响的组织中。
    • 8. 发明申请
    • Three-Dimensional Positioning Device for Minimally Invasive surgery
    • 用于微创手术的三维定位装置
    • US20110040304A1
    • 2011-02-17
    • US12541997
    • 2009-08-17
    • Shih-Tseng LiYau-Zen ChangHeng-Liang LiuShun-Chung Chuang
    • Shih-Tseng LiYau-Zen ChangHeng-Liang LiuShun-Chung Chuang
    • A61B19/00
    • A61B90/11
    • A three-dimensional positioning device for minimally invasive surgery comprising: a base, two angle adjustable assemblies, an arc, a sliding assembly, a first positioning assembly, a second positioning assembly and a third positioning assembly. The base includes two first frames and two second frames. Two ends of each second frame connected to the first frames respectively. Each first frame has a pivotal member. The angle adjustable assemblies are pivotably connected to the pivotal member of the first frame respectively. The arc includes a hollow track member. The angle adjustable assemblies are connected to two ends of the arc. The sliding assembly is mounted on the track member of the arc according to a predetermined position of a nidus. Therefore, the three-dimensional positioning device can effectively improve the precision and operate more precisely in the minimally invasive surgery to increase the surgery success rate.
    • 一种用于微创手术的三维定位装置,包括:基座,两个角度可调组件,弧,滑动组件,第一定位组件,第二定位组件和第三定位组件。 基座包括两个第一帧和两个第二帧。 每个第二帧的两端分别连接到第一帧。 每个第一框架具有枢转构件。 角度可调组件分别可枢转地连接到第一框架的枢转构件。 电弧包括中空的轨道构件。 角度可调组件连接到弧的两端。 滑动组件根据榫头的预定位置安装在弧的轨道构件上。 因此,三维定位装置能够在微创手术中有效提高精度,更精确地操作,提高手术成功率。