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    • 45. 发明授权
    • Method and plate for fusing the medial column bones of the foot
    • 用于融合脚的内侧柱骨的方法和板
    • US08348980B2
    • 2013-01-08
    • US12579960
    • 2009-10-15
    • Priya PrasadMark S. MyersonRoy W. SandersCraig S. TsukayamaRobert Sixto, Jr.
    • Priya PrasadMark S. MyersonRoy W. SandersCraig S. TsukayamaRobert Sixto, Jr.
    • A61B17/66
    • A61B17/1728A61B17/1775A61B17/8014A61B17/8057A61B17/8061
    • A method for joining together a first, a second and a third bone part of a surgical patient includes obtaining a bone plate having a first, a second and a third portion arranged along a longitudinal axis. The first portion contains a first slot for receiving a first compressing screw. The second portion is adjacent to the first portion and contains a second slot for receiving a second compressing screw. The third portion is adjacent to the second portion and contains a threaded hole for receiving a locking screw. The method further includes positioning the first, second and third portions over the first, second and third bone parts. The method further includes inserting the locking screw into the threaded hole and into the third bone part, inserting the second compressing screw into the second slot and into the second bone part, and inserting the first compressing screw into the first slot and into the first bone part, thereby urging the first, second and third bone parts together.
    • 用于将外科患者的第一,第二和第三骨部分连接在一起的方法包括获得具有沿着纵向轴线布置的第一,第二和第三部分的骨板。 第一部分包含用于接收第一压缩螺钉的第一槽。 第二部分与第一部分相邻并且包含用于接收第二压缩螺钉的第二狭槽。 第三部分与第二部分相邻并且包含用于接收锁定螺钉的螺纹孔。 该方法还包括将第一,第二和第三部分定位在第一,第二和第三骨部分上。 该方法还包括将锁定螺钉插入螺纹孔并进入第三骨部分,将第二压缩螺钉插入第二槽并进入第二骨部,并将第一压紧螺钉插入第一槽并进入第一骨 从而将第一,第二和第三骨骼部分一起推动。
    • 46. 发明授权
    • Bone plate with variable torsional stiffness at fixed angle holes
    • 在固定角度孔处具有可变扭转刚度的骨板
    • US07867261B2
    • 2011-01-11
    • US11557429
    • 2006-11-07
    • Robert Sixto, Jr.Jose Luis FranceseJorge L. Orbay
    • Robert Sixto, Jr.Jose Luis FranceseJorge L. Orbay
    • A61B17/80
    • A61B17/80A61B17/8085A61B2017/00004
    • A bone plate includes at least one torsional modification feature (TMF). Each TMF is structured to decrease the torsional rigidity of the plate relative to longitudinally opposite portions, but may be modified to increase the torsional rigidity thereat. Each TMF is defined by beams contiguous with the lateral sides of the plate, and an opening extending laterally therebetween. In a preferred embodiment, opposed projections extend into the opening to define threaded discontinuous wall portions for receiving an insert, such as a set screw. In one embodiment, bioabsorbable and/or bioactive inserts may be used to temporarily increase the torsional rigidity of the plate during initial fixation and thereafter have reduced torsional rigidity to mimic normal callus. The plate is preferably used with fixed angle fasteners that may be subject to high torsional loads post-operatively.
    • 骨板包括至少一个扭转修改特征(TMF)。 每个TMF被构造成降低板相对于纵向相对部分的扭转刚度,但是可以被修改以增加其上的扭转刚度。 每个TMF由与板的侧面相邻的梁以及横向延伸的开口限定。 在优选实施例中,相对的突出部延伸到开口中以限定用于接收插入件(例如固定螺钉)的螺纹不连续壁部分。 在一个实施方案中,可以使用生物可吸收和/或生物活性插入物来暂时增加初始固定期间板的扭转刚度,此后具有降低的扭转刚度以模拟正常愈伤组织。 该板最好与固定角紧固件一起使用,固定角紧固件可能在操作后经受高扭转载荷。
    • 47. 发明授权
    • Medical fluid pump powered by a constant source of vacuum
    • 医用液体泵由恒定的真空源供电
    • US5554011A
    • 1996-09-10
    • US330370
    • 1994-10-27
    • Thomas O. BalesMatthew S. SolarRobert Sixto, Jr.Kevin W. Smith
    • Thomas O. BalesMatthew S. SolarRobert Sixto, Jr.Kevin W. Smith
    • F01L23/00F02B75/02F04B9/12F04B43/073F04B17/00
    • F04B9/1215F01L23/00F04B43/073F02B2075/025
    • A vacuum powered pump includes a spring biased piston or diaphragm in a vacuum chamber coupled to a source of vacuum. When vacuum is applied to the vacuum chamber, the piston or diaphragm is moved in a first direction against the spring. A delayed action valve is coupled to the vacuum chamber to allow ambient air to enter the chamber only after the piston or diaphragm has been moved a substantial distance in the first direction. When the delayed action valve opens, air enters the vacuum chamber and the force of the entering air together with the bias of the spring propels the piston or diaphragm in a second direction opposite the first direction. The delayed action valve automatically closes and the process repeats so long as a vacuum source is coupled to the vacuum chamber. The reciprocal movement of the piston or diaphragm effects a pulsatile pumping of fluid through a fluid chamber having at least one check valve.
    • 真空动力泵包括与真空源联接的真空室中的弹簧偏压活塞或隔膜。 当真空被施加到真空室时,活塞或隔膜相对于弹簧在第一方向上移动。 延迟动作阀联接到真空室以允许环境空气仅在活塞或隔膜已经在第一方向上移动相当大的距离之后才进入腔室。 当延迟动作阀打开时,空气进入真空室,并且进入空气的力与弹簧的偏压一起沿与第一方向相反的第二方向推动活塞或隔膜。 延迟动作阀自动关闭,并且只要真空源耦合到真空室,该过程就重复。 活塞或隔膜的往复运动使液体通过具有至少一个止回阀的流体室脉动泵送。
    • 50. 发明授权
    • Ceramic coated endoscopic scissor blades and a method of making the same
    • 陶瓷涂层内窥镜剪刀刀片及其制造方法
    • US5893846A
    • 1999-04-13
    • US647827
    • 1996-05-15
    • Thomas O. BalesRobert Sixto, Jr.Michael Sean McBrayer
    • Thomas O. BalesRobert Sixto, Jr.Michael Sean McBrayer
    • A61B18/14A61B17/38
    • A61B18/1445A61B2018/00107
    • A process for providing an endoscopic scissors blade with the necessary roughness to receive a ceramic coating, without first requiring that the blade surfaces be roughened by gritblasting, includes obtaining an investment mold with an interior textured surface. The investment mold is textured by first texturing an injection mold cavity by etching, gritblasting, or electric-discharge machining the inside surface of the injection mold cavity to produce a desired roughness. A blade pattern (wax) is then formed in the injection mold with a resulting textured surface, and using the textured blade pattern, the investment mold with the textured interior cavity is generated. When metal is injected into the investment mold using a lost wax process, the resulting cast blades will have the necessary roughness for permitting a ceramic to be bonded thereto without the need for any additional roughening. Thus, the so-formed blades are coated with a ceramic material. Such scissors blades are used in an endoscopic surgical scissors instrument and are especially useful as the scissor blades of a bipolar cautery endoscopic scissors instrument.
    • 提供具有必要粗糙度以接收陶瓷涂层的内窥镜剪刀刀片的方法,而不首先要求刀片表面通过喷砂进行粗糙化,包括获得具有内部纹理表面的投射模具。 通过首先通过蚀刻,喷砂或注射模腔的内表面的放电加工来形成注塑模腔,从而产生所需的粗糙度,从而对投资模具进行纹理化。 然后在注射模具中形成刀片图案(蜡),其中形成有纹理的表面,并且使用纹理的刀片图案,产生具有织构化内腔的投资模具。 当使用失蜡工艺将金属注入投资模具时,所得到的铸造刀片将具有必要的粗糙度,以允许将陶瓷粘合到其上而不需要任何额外的粗糙化。 因此,如此形成的叶片被涂覆有陶瓷材料。 这种剪刀刀片用于内窥镜手术剪刀仪器中,并且特别适用于双极烧灼内窥镜剪刀仪器的剪刀片。