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    • 3. 发明申请
    • SPINAL COMPRESSOR AND DISTRACTOR
    • 脊柱压缩机和分离器
    • WO2015143458A1
    • 2015-09-24
    • PCT/US2015/029190
    • 2015-05-05
    • SONG, John
    • SONG, John
    • A61B17/58
    • A61B17/025A61B17/7014A61B17/7079A61B17/708A61B2017/0256
    • A combined apparatus for compression and distraction of a first physical component having a first bone screw and a second physical component having a second bone screw, said apparatus comprising a connected rod fixedly connected to one of the first and second bone screw heads and slidably connected to the other of the first and second bone screw heads, a rod holder, and an adjusting member comprising an adjusting means and a turning means, such that when the adjusting member is turned by use of the turning means, the adjusting means forces an increase in distance between the rod holder and adjacent bone screw head, resulting in compression or distraction as desired of the physical components.
    • 一种用于压缩和牵引具有第一骨螺钉的第一物理部件和具有第二骨螺钉的第二物理部件的组合装置,所述装置包括固定地连接到第一和第二骨螺钉头中的一个的连接杆,并且可滑动地连接到 第一和第二骨螺钉头中的另一个,杆保持器和包括调节装置和转动装置的调节构件,使得当调节构件通过使用转动装置转动时,调节装置强制增加 杆保持器和相邻的骨螺钉头之间的距离,导致物理部件所需的压缩或牵引。
    • 4. 发明申请
    • SYSTEMS AND METHODS FOR JOINT STABILIZATION
    • 用于联合稳定的系统和方法
    • WO2013059609A1
    • 2013-04-25
    • PCT/US2012/061047
    • 2012-10-19
    • ILLUMINOSS MEDICAL, INC.
    • RABINER, Robert, A.GAUSEPOHL, ThomasDIPOTO, Gene, P.
    • A61B17/72
    • A61F2/30A61B17/7079A61B17/7097A61B17/7216A61B17/7275A61B17/7291A61F2002/30583A61F2210/0085
    • Photodynamic devices for stabilizing a joint are provided. In some embodiments, a photodynamic joint spacer (1120) is provided that includes an expandable member (170) configured for attachment to a bone (1112) having an excised region; a formable bar (1110) configured for attachment to the bone (1112) along at least a portion of the expandable member (170); and a light-sensitive liquid (165) passed into the expandable member (170) to expand the expandable member (170), wherein the expandable member (170) is shaped by the formable bar (1110) to a shape resembling the excised region of the bone (1112), and wherein the light-sensitive liquid (165) is curable upon exposure to light energy to set the expandable member (170) in the shape resembling the excised region to form the photodynamic joint spacer (1120).
    • 提供用于稳定接头的光动力装置。 在一些实施例中,提供了一种光动力关节间隔件(1120),其包括构造成用于附接到具有切除区域的骨头(1112)的可扩张构件(170) 被构造成沿着所述可扩张构件(170)的至少一部分附接到所述骨头(1112)的可成型杆(1110)。 以及通向所述可膨胀构件(170)中以使所述可膨胀构件(170)膨胀的感光液体(165),其中所述可膨胀构件(170)由所述可成形杆(1110)成形为类似于 所述骨骼(1112),并且其中所述感光液体(165)在暴露于光能时可固化,以将所述可扩张构件(170)设置为类似于所述切除区域的形状,以形成所述光动力接头间隔物(1120)。
    • 5. 发明申请
    • USE OF BIOABSORBABLE MATERIALS FOR ANTERIOR EXTRADISCAL CORRECTION OF THORACOLUMBAR PATHLOGIES
    • 使用生物材料进行前列腺切除术治疗胸腔镜手术
    • WO2007134223A2
    • 2007-11-22
    • PCT/US2007/068757
    • 2007-05-11
    • GAINES, Robert, W., Jr.
    • GAINES, Robert, W., Jr.
    • B65D1/02
    • A61B17/7032A61B17/7034A61B17/7044A61B17/7079A61B17/7083A61B17/809A61B2017/00004
    • A method of performing a surgical anterior extradiscal correction of a thoracolumbar pathology includes steps of surgically approaching a patient's spine and correcting a thoracolumbar pathology, aligning adjacent vertebral bodies, and securing the vertebral bodies in a desired relative position with anterior instrumentation that penetrates at least one of the vertebral bodies. The anterior instrumentation includes a bioabsorbable element and in one embodiment includes first and second bioabsorbable anchors for penetrating anterior portions of respective first and second sacral, thoracic or lumbar vertebral bodies and bioabsorbable instrumentation that fixedly connects the first bioabsorbable anchor to the second bioabsorbable anchor. This permits the first sacral, thoracic or lumbar vertebral body to be surgically fixed to the second sacral, thoracic or lumbar vertebral body for a predetermined period of time, when the bioabsorbable apparatus will be absorbed by a patient's body.
    • 执行胸腰椎病理学的外科前椎间盘前矫正的方法包括以下步骤:手术地接近患者的脊柱并矫正胸腰椎病理学,对准相邻的椎体,并将椎体固定在期望的相对位置,其中穿过至少一个 的椎体。 前置仪器包括生物可吸收元件,并且在一个实施例中包括用于穿透相应的第一和第二骶骨,胸椎或腰椎体的前部的第一和第二生物可吸收锚固件和将第一生物可吸收锚定固定地连接到第二生物可吸收锚固件的生物可吸收仪器。 这允许当生物可吸收的装置被患者的身体吸收时,第一骶骨,胸或腰椎体被手术地固定到第二骶骨,胸或腰椎体上预定的时间段。
    • 8. 发明申请
    • DEVICE FOR SPINAL DEFORMITY REDUCTION
    • 减少脊柱畸形的装置
    • WO0128440A3
    • 2001-11-08
    • PCT/US0041343
    • 2000-10-20
    • SDGI HOLDINGS INCBARKER B THOMASZDEBLICK THOMAS
    • BARKER B THOMASZDEBLICK THOMAS
    • A61B17/70A61B17/88A61B19/00A61B17/56
    • A61B17/7041A61B5/4504A61B17/7079A61B2090/037
    • A device for pulling a vertebral anchor with a strain gauge in combination with a tension rod. The device has a cylindrical telescopic housing made of a first hollow cylinder received inside a second hollow cylinder such that the two hollow cylinders define a longitudinal passage from the proximal to the distal end of the cylindrical telescopic housing. The tension rod is slidably disposed within the longitudinal passageway and has a means mounted on or near its distal end to attach to vertebral anchor (or bone screw). The first and second hollow cylinders are biased apart by a mechanical spring, which resides inside the second hollow cylinder. A means for moving said tension rod in a proximal direction with respect to said telescopic housing is then operatively attached to the housing, as well as, a strain gauge to directly measure the amount of tension placed on the tension rod when the device is in use.
    • 用张力杆结合应变仪拉动椎骨锚的装置。 该装置具有由第一空心圆柱体制成的圆柱形可伸缩壳体,第一空心圆柱体容纳在第二空心圆柱体的内部,使得两个空心圆柱体从圆柱形可伸缩壳体的近端到远端限定纵向通道。 张力杆可滑动地设置在纵向通道内,并具有安装在其远端或其附近以连接到椎骨锚(或骨螺钉)的装置。 第一和第二空心圆筒通过驻留在第二空心圆筒内的机械弹簧偏置分开。 然后将用于相对于所述可伸缩壳体沿近端方向移动所述张力杆的装置可操作地附接到所述壳体,以及应变仪以直接测量当所述装置在使用时施加在所述张力杆上的张力的量 。
    • 9. 发明申请
    • APPARATUS AND METHOD FOR SPINAL FIXATION AND CORRECTION OF SPINAL DEFORMITIES
    • 脊柱固定和矫正脊柱畸形的装置和方法
    • WO1998008454A1
    • 1998-03-05
    • PCT/US1997014975
    • 1997-08-26
    • JACKSON, Roger, P.
    • A61B17/70
    • A61B17/7038A61B17/7002A61B17/7041A61B17/7049A61B17/7079A61B17/8863A61B2090/037
    • This device comprises a connection element (4) between a rod (1), or other longitudinal implant, and a bone anchorage screw (3) in the degenerative vertebra. This connection element (4) includes a ring (8) so dimensioned that the rod (1) is capable of extending therethrough. The ring is provided with screws (14) for clamping to the rod (1) and is radially extended by a cylindrical arm (9) adapted to be secured to the bone anchorage screw (3) and to be clamped on the screw. The arm (9) and the ring (8) constitute a unit in one piece. The invention enables the surgeon to avoid having to produce additional deformations of the rod (1) when it is in presence of non-aligned pedicles by leaving to the surgeon complete liberty as to the position of the two axes of the bone anchorage screw (3) and of the rod (1). The invention further contemplates using the lateral connection element to facilitate contouring the longitudinal implant within the patient, or in situ to segmentally and globally correct spinal deformities in all degrees of freedom.
    • 该装置包括杆(1)或其它纵向植入物之间的连接元件(4)和退化脊椎骨锚固螺钉(3)。 该连接元件(4)包括环(8),其尺寸使得杆(1)能够延伸穿过其中。 该环设置有用于夹紧到杆(1)的螺钉(14),并且通过适于固定到骨锚固螺钉(3)并被夹紧在螺钉上的圆柱形臂(9)径向延伸。 臂(9)和环(8)构成一体的单元。 本发明使得外科医生能够避免在存在未对准的椎弓根时通过使骨固定螺钉(3)的两个轴的位置离开外科医生完全自由而不必产生杆(1)的额外变形 )和杆(1)。 本发明进一步考虑使用横向连接元件以便于在患者体内轮廓化纵向植入物,或者在所有自由度上原位以分段和全局地校正脊柱畸形。