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    • 2. 发明授权
    • Medical punch
    • 医疗打孔
    • US08702740B2
    • 2014-04-22
    • US12793964
    • 2010-06-04
    • Martin OberlaenderMichael SauerUwe BacherMichael Staehler
    • Martin OberlaenderMichael SauerUwe BacherMichael Staehler
    • A61B17/32
    • A61B17/1611
    • A medical punch with a hollow shaft, a tool point that is positioned on the distal end of the shaft and includes a rigid cutting part and a cutting part that can slide with respect to the rigid cutting part, and with a handle positioned on the proximal end of the shaft, such that the displaceable cutting part and the handle are operatively connected with one another by a push/pull device that is displaceably mounted in the hollow shaft and an anti-tilt mechanism is positioned on the tool point to stabilize the cutting parts in their axially parallel alignment to one another. The rigid cutting part includes a sleeve-shaped proximal portion that encloses the displaceable cutting part and a distal punch portion configured as a single unit with the sleeve-shaped portion and that the rigid cutting part should be detachably connected with the hollow shaft by a coupling mechanism formed on the sleeve-shaped portion.
    • 具有空心轴的医用冲头,位于轴的远端上的工具点,其包括可相对于刚性切削部分滑动的刚性切削部分和切削部分,以及位于近端 使得可移动的切割部分和手柄通过可移动地安装在中空轴中的推/拉装置彼此操作地连接,并且防倾斜机构定位在工具点上以稳定切割 部件彼此轴向平行对准。 刚性切割部分包括套筒形近端部分,其包围可移动切割部分和远侧冲头部分,该远端冲头部分构造为具有套筒形部分的单个单元,并且刚性切割部分应通过联接器与中空轴可拆卸地连接 机构形成在套筒形部分上。
    • 3. 发明授权
    • Balloon trepan
    • 气球架
    • US07879060B2
    • 2011-02-01
    • US11135531
    • 2005-05-23
    • Uwe BacherMichael SauerMartin Oberlaender
    • Uwe BacherMichael SauerMartin Oberlaender
    • A61M29/00
    • A61B17/0218A61B17/3417A61B90/361A61B2017/00557A61B2017/320048A61B2017/3486
    • The balloon trepan is used in minimal invasive surgery in order to create or maintain the area required for an operation by dilation of tissue or dissection of layers of tissue. The connection between the balloon and the sleeve of the trepan must be easily and securely produced without enlarging the outer diameter of the balloon trepan. The balloon must be secured against slipping and must be able to resist pressure during inflation. The balloon surrounding the distal end of the trepan is pressed against a peripheral step formed on the sleeve of the trepan by a clamping element in order to fix it to the sleeve of the trepan. The clamping element is displaced by rotation of at least one part of the clamping element about a longitudinal axis of the sleeve of the trepan in a longitudinal direction in relation to the said sleeve.
    • 气囊搭接器用于最小的侵入性手术,以便通过组织的扩张或组织层的解剖创建或维持手术所需的面积。 必须容易且牢固地产生球囊和套管之间的连接,而不会扩大球囊的外径。 气球必须防止滑动,并且必须能够在充气期间抵抗压力。 通过夹紧元件将围绕着穹窿的远端的气囊按压在形成在tre板的套筒上的周边台阶上,以将其固定到tre盘的套筒上。 夹紧元件通过夹紧元件的至少一部分相对于所述套筒的纵向方向围绕托盘的套筒的纵向轴线的旋转而移位。
    • 4. 发明申请
    • Balloon trepan
    • 气球架
    • US20050261724A1
    • 2005-11-24
    • US11135531
    • 2005-05-23
    • Uwe BacherMichael SauerMartin Oberlaender
    • Uwe BacherMichael SauerMartin Oberlaender
    • A61B17/00A61B17/02A61B17/32A61B17/34A61B19/00A61M29/00
    • A61B17/0218A61B17/3417A61B90/361A61B2017/00557A61B2017/320048A61B2017/3486
    • The balloon trepan is used in minimal invasive surgery in order to create or maintain the area required for an operation by dilation of tissue or dissection of layers of tissue. The connection between the balloon and the sleeve of the trepan must be easily and securely produced without enlarging the outer diameter of the balloon trepan. The balloon must be secured against slipping and must be able to resist pressure during inflation. The balloon (11, 12) surrounding the distal end of the trepan (15, 16) is pressed against a peripheral step (66, 95) formed on the sleeve of the trepan (15, 16) by means of a clamping element (18, 102) in order to fix it to the sleeve (15, 16) of the trepan. The clamping element (18, 102) is displaced by rotation of at least one part of the clamping element (18, 102) about a longitudinal axis of the sleeve (15, 16) of the trepan in a longitudinal direction in relation to the said sleeve (15, 16).
    • 气囊搭接器用于最小的侵入性手术,以便通过组织的扩张或组织层的解剖创建或维持手术所需的面积。 必须容易且牢固地产生球囊和套管之间的连接,而不会扩大球囊的外径。 气球必须防止滑动,并且必须能够在充气期间抵抗压力。 通过夹紧元件(18,16)将围绕着托盘(15,16)的远端的气囊(11,12)压靠在形成在托盘(15,16)的套筒上的周边台阶(66,95)上 ,102),以便将其固定到托盘的套筒(15,16)上。 所述夹紧元件(18,102)通过所述夹持元件(18,102)的至少一部分围绕所述套管(15,16)的纵向轴线在纵向上相对于所述夹持元件 套筒(15,16)。
    • 5. 发明申请
    • Medical punch
    • 医疗打孔
    • US20100312265A1
    • 2010-12-09
    • US12793964
    • 2010-06-04
    • Martin OberlaenderMichael SauerUwe BacherMichael Staehler
    • Martin OberlaenderMichael SauerUwe BacherMichael Staehler
    • A61B17/32
    • A61B17/1611
    • A medical punch with a hollow shaft, a tool point that is positioned on the distal end of the shaft and includes a rigid cutting part and a cutting part that can slide with respect to the rigid cutting part, and with a handle positioned on the proximal end of the shaft, such that the displaceable cutting part and the handle are operatively connected with one another by a push/pull device that is displaceably mounted in the hollow shaft and an anti-tilt mechanism is positioned on the tool point to stabilize the cutting parts in their axially parallel alignment to one another. The rigid cutting part includes a sleeve-shaped proximal portion that encloses the displaceable cutting part and a distal punch portion configured as a single unit with the sleeve-shaped portion and that the rigid cutting part should be detachably connected with the hollow shaft by a coupling mechanism formed on the sleeve-shaped portion.
    • 具有空心轴的医用冲头,位于轴的远端上的工具点,其包括可相对于刚性切削部分滑动的刚性切削部分和切削部分,以及位于近端 使得可移动的切割部分和手柄通过可移动地安装在中空轴中的推/拉装置彼此操作地连接,并且防倾斜机构定位在工具点上以稳定切割 部件彼此轴向平行对准。 刚性切割部分包括套筒形近端部分,其包围可移动切割部分和远侧冲头部分,该远端冲头部分构造为具有套筒形部分的单个单元,并且刚性切割部分应通过联接器与中空轴可拆卸地连接 机构形成在套筒形部分上。
    • 8. 发明授权
    • Medical instrument
    • 医疗仪器
    • US07056304B2
    • 2006-06-06
    • US10372690
    • 2003-02-24
    • Uwe BacherHorst DittrichMartin Oberlaender
    • Uwe BacherHorst DittrichMartin Oberlaender
    • A61M5/178
    • A61B17/3498A61B17/3496A61B2017/00867
    • The invention relates to a medical instrument with a hollow instrument canal that is configured inside a housing and can be closed by means of at least one valve body and rotated into open position by means of an instrument inserted into the instrument canal. The at least one valve body is configured as a flap consisting of an essentially non-bendable material mounted on the housing so that it can be rotated by means of an elastic, bendable connecting element configured as a wire spring in such a way that the valve body is pre-tensioned in the closed direction. A medical instrument with a valve body of simple construction, which insulates reliably, is distinguished according to the invention in that the connecting element on the one hand is secured on the housing and on the other hand carries the valve body, so that the connecting element can be secured in a ring groove configured in the housing.
    • 本发明涉及一种具有中空管道的医疗器械,其构造在壳体内部并且可以通过至少一个阀体关闭并且通过插入到仪器管中的器械旋转到打开位置。 所述至少一个阀体构造为由安装在壳体上的基本上不可弯曲的材料组成的翼片,使得其可以通过构造为线弹簧的弹性可弯曲连接元件旋转,使得阀 身体在封闭方向上预张紧。 根据本发明,具有结构简单,结构简单的阀体的医疗器具的特征在于连接元件一方面固定在壳体上,另一方面承载阀体,使得连接元件 可以被固定在构造在壳体中的环形槽中。