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公开(公告)号:US20140155889A1
公开(公告)日:2014-06-05
申请号:US13804308
申请日:2013-03-14
Inventor: Kevin C. Edwards , Jay A. Casey , Peter Y. Wong , Allen C. Palmer
IPC: A61B18/14
CPC classification number: A61B18/149 , A61B17/320016 , A61B17/32002 , A61B18/1206 , A61B18/14 , A61B18/1402 , A61B18/1482 , A61B34/20 , A61B90/90 , A61B90/98 , A61B2017/00225 , A61B2017/0046 , A61B2017/00464 , A61B2017/00473 , A61B2017/00482 , A61B2017/00526 , A61B2018/00178 , A61B2018/0019 , A61B2018/00208 , A61B2018/00708 , A61B2018/0094 , A61B2018/1253 , A61B2018/126 , Y10T29/49002 , Y10T29/49169
Abstract: A device comprising: a handpiece having one or more attachment ports; a tubeset having one or more attachment features for connecting the tubeset to the one or more attachment ports in the handpiece; a removable tip having an attachment arm for attaching to the one or more attachment ports in the handpiece; wherein the device comprises one or more of the following: the handpiece includes an attachment port that attaches the handpiece to an active lead and a return lead and the device is adapted to use only the active lead or both leads so that the device can switch between bi-polar energy and mono-polar energy; the tubeset has one or more fluid conduits that are in fluid communication with the removable tip, wherein the removable tip is located at a distal end of the device; and the handpiece connects to one or more electrical input lines; the tubeset connects to one or more fluid lines, and the removable tip is free of direct connection to both the one or more electrical input lines and the one or more fluid lines.
Abstract translation: 一种装置,包括:具有一个或多个附接端口的手柄; 一个具有一个或多个连接特征的管子,用于将管子连接到手持件中的一个或多个附接端口; 可拆卸的尖端,具有用于附接到所述手持件中的所述一个或多个附接端口的附接臂; 其中所述装置包括以下中的一个或多个:手持件包括将手持件附接到有源引线和返回引线的附接端口,并且该装置仅适于仅使用有源引线或两个引线,使得该装置可以在 双极能和单极能; 管道具有一个或多个与可移除末端流体连通的流体导管,其中可移除末端位于装置的远端; 并且所述手持件连接到一个或多个电输入线; 管子连接到一个或多个流体管线,并且可移除的末端不直接连接到一个或多个电输入管线和一个或多个流体管线。
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公开(公告)号:US20140135805A1
公开(公告)日:2014-05-15
申请号:US14075107
申请日:2013-11-08
Inventor: Ryan J. Windgassen , Jeffrey Nelsen , Dennis G. Lamser , John R. Mensch , Zane R. Ward , Timothy Ozell
IPC: A61B17/295
CPC classification number: A61B17/2909 , A61B17/295 , A61B18/1445 , A61B2017/00526 , A61B2017/2913 , A61B2017/292 , A61B2017/2925 , A61B2017/2929 , A61B2018/00607 , Y10T29/49826
Abstract: A forceps comprising: (a) a stylet comprising; (i) a hollow tube having a longitudinal axis; (ii) assemblies, that are extendable through the hollow tube, comprising; (1) support rods; (2) functional attachments at the end of the support rods; (b) a hand piece comprising; (i) housing structures defining a cavity that houses the stylet; (ii) actuating mechanisms, in communication with the stylet, comprising; (1) a bearing fitting located on the stylet; (2) a shuttle in communication with the bearing fitting, and constrained by a plurality of guide ridges so that the shuttle is movable along a longitudinal axis and restricted from rotational movement around the longitudinal axis; (3) a socket housed by the shuttle, the socket receiving the bearing fitting and being rotatable relative to the shuttle; and (4) levers in communication with the stylet that causes movement of the hollow tube and the assemblies are relative to each other.
Abstract translation: 一种钳子,包括:(a)探针,包括: (i)具有纵轴的中空管; (ii)可通过中空管延伸的组件,包括: (1)支撑杆; (2)支撑杆末端的功能附件; (b)手部件,包括: (i)定义容纳探针的腔的外壳结构; (ii)与探针通信的致动机构,包括: (1)位于探针上的轴承配件; (2)与所述轴承配件连通的梭子,并且由多个导向脊限制,使得梭子可沿着纵向轴线移动并且限制围绕纵向轴线的旋转运动; (3)由梭子容纳的插座,所述插座容纳所述轴承配件并能够相对于梭子旋转; 和(4)与探针引导的导致中空管和组件移动的杠杆相对于彼此。
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公开(公告)号:US20140005700A1
公开(公告)日:2014-01-02
申请号:US13835517
申请日:2013-03-15
Inventor: Jay A. Casey , Kevin C. Edwards , Tomas Matusaitis
CPC classification number: A61B17/2909 , A61B17/00 , A61B17/32 , A61B17/32002 , A61B17/320783 , A61B2017/0046 , A61B2017/00477 , A61B2017/2925 , A61B2017/2946 , B23B31/1071 , B23B31/201 , Y10T29/49826 , Y10T279/17316 , Y10T279/17717
Abstract: A powered surgical apparatus for use with a source of irrigation fluid and a source of suction and for powering a surgical tool such as a cutting blade. The surgical apparatus includes a handpiece and a cutting blade retention assembly integrated in passage in a distal end of the handpiece. The retention assembly includes an aligned, pair of radially movable buttons, aligned in axially extending passages in communication with the passage in the distal end of the handpiece, the movable buttons can engage with and cause rotational movement of a collet member assembly rotatably supported in the passage in the distal end of the handpiece. The collet assembly includes a plurality of rolling lock members which can be moved by the collet member from a first or lock position, in which the lock members are forced by the wall of the passage to extend inwardly of the collet member to engage a groove of the surgical tool, and a second or unlocked position, in which the lock members are aligned with a recess in the wall of the passage and are not forced to extend inwardly of the collet member.
Abstract translation: 一种用于冲洗流体源和抽吸源并为诸如切割刀片的外科工具供电的动力手术装置。 手术装置包括在手持件的远端中集成在通道中的手持件和切割刀片保持组件。 保持组件包括对准的一对可径向移动的按钮,其对准在与机头的远端中的通道连通的轴向延伸通道中,可移动按钮可与可旋转地支撑在手柄中的夹头构件组合接合并使其旋转运动 手柄远端的通道。 夹头组件包括多个滚动锁定构件,其可由夹头构件从第一或锁定位置移动,其中锁定构件被通道的壁推动以延伸到夹头构件的内部,从而与 手术工具和第二或解锁位置,其中锁定构件与通道的壁中的凹部对准,并且不被迫向夹头构件的内部延伸。
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公开(公告)号:US20250152236A1
公开(公告)日:2025-05-15
申请号:US18951300
申请日:2024-11-18
Inventor: Brandon James Shuman , Hugo X. Gonzalez , David H. Dillard
Abstract: A medical device system for the delivery of energy to a region of a patient's anatomy is provided. An introducer tube defines a lumen therein and bears a first electrode. A second electrode is movable within the lumen between a retracted position and an extended position. In the retracted position, the second electrode is substantially disposed within the lumen. In the extended position, the second electrode extends at least partially beyond the distal end of the introducer tube. In one form, the introducer tube is configured to substantially hold the second electrode within the lumen in a predetermined orientation in the extended position, and the introducer tube prevents the second electrode from substantially rotating within the lumen of the introducer tube during movement into the extended position. In one form, the introducer tube is more flexible in a first plane than in a second plane.
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公开(公告)号:US12222549B2
公开(公告)日:2025-02-11
申请号:US17934636
申请日:2022-09-23
Inventor: Kurt G. Shelton
IPC: G02B6/26 , A61B1/00 , A61B1/06 , A61B1/07 , G01D5/353 , G02B6/02 , G02B6/24 , G02B23/24 , G02B27/42
Abstract: An endoscope can include an elongated endoscope body. An optical fiber can extend along the endoscope body. The optical fiber can direct therapeutic light and illumination light longitudinally along the optical fiber to a distal portion of the endoscope body. The therapeutic light and the illumination light can have different wavelengths. A wavelength-sensitive light separator, disposed at a distal portion of the optical fiber, can direct the illumination light to exit the optical fiber laterally through a lateral side of the optical fiber at the distal portion of the optical fiber and permit the therapeutic light to exit the optical fiber longitudinally through a distal end of the optical fiber. Examples of suitable wavelength-sensitive light separators can include one or more fiber Bragg gratings that can be obliquely angled, or a diffraction grating disposed on a lateral edge of a length of coreless fiber.
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公开(公告)号:US20240407636A1
公开(公告)日:2024-12-12
申请号:US18699427
申请日:2022-09-27
Inventor: Nikhil M. Murdeshwar
Abstract: An endoscope system includes a control handle, an insertion tube extending from the control handle to a distal end and configured for insertion into an internal passage of a patient. The insertion tube includes a working channel therein. The endoscope system also includes a valve located within the working channel. The valve includes an elastic body that at least partially occludes the working channel and is configured to be compressed circumferentially by an instrument.
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公开(公告)号:US12114893B2
公开(公告)日:2024-10-15
申请号:US17088291
申请日:2020-11-03
Inventor: Jeffrey MacDonald , Jeffrey Radziunas , Lynn MacDonald , Zev Kartiganer
CPC classification number: A61B17/4241 , A61B17/00234 , A61B17/32 , A61B17/320016 , A61B17/32002 , A61B17/3211 , A61B17/42 , A61B18/1485 , A61B18/1492 , A61B2017/00296 , A61B2017/00314 , A61B2017/00389 , A61B2017/00738 , A61B2017/00831 , A61B2017/32113 , A61B2017/4216 , A61B2018/00077 , A61B2018/00083 , A61B2018/00178 , A61B2018/00559 , A61B2018/00601 , A61B2018/1253 , A61B2018/126 , A61B2560/02
Abstract: A colpotomy device for performing a hysterectomy is provided. The device includes a flexible drive tube having a proximal end and a distal end and bendable therebetween. The device also has a rotatable cutting implement at the distal end of the flexible drive tube at a specified offset from a bendable longitudinal axis of the flexible drive tube. Furthermore, the device includes couplings located within the flexible drive tube and rotatable about the bendable longitudinal axis of the flexible drive tube. The couplings can be in a series that includes inter-coupling joints and transmits a rotational force between the proximal and distal ends of the flexible drive tube through a variable angle between the couplings. The variable angle can correspond to bending of the drive tube in order to drive rotation of the cutting implement at the specified offset about the axis of the flexible drive tube.
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公开(公告)号:US20240306891A1
公开(公告)日:2024-09-19
申请号:US18595956
申请日:2024-03-05
Inventor: David M. Leak , Kester Julian Batchelor , William E. Marvin, III , Kimbolt Young
IPC: A61B1/00 , A61B1/015 , A61B1/018 , A61B1/06 , A61B17/00 , A61B17/22 , A61B18/00 , A61B18/26 , A61B34/00 , G16H40/63
CPC classification number: A61B1/00097 , A61B1/00006 , A61B1/018 , A61B17/22012 , A61B18/26 , A61B34/25 , G16H40/63 , A61B1/015 , A61B1/0655 , A61B2017/0034 , A61B2018/00511 , A61B2018/00577 , A61B2018/00982
Abstract: A system can automatically regulate irrigation, suction, or both, such as during a lithotripsy procedure. The system can include one or more sensors. Processing circuitry can be configured to generate an indication of a level of turbidity of a solution at or near a distal tip of a flexible scope, such as based on one or more signals from the one or more sensors. A control signal can be used to adjust an irrigation flow rate and/or a suction rate at the distal tip of the flexible scope. The level of turbidity can be determined using a sensor to measure electrolytic conductivity of the solution, a sensor to measure electromagnetic induction across a coil at the distal tip of the flexible scope and/or a measure of back reflected light or a measure of absorbed light emitted into the solution by a light source and measured by a light sensor.
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公开(公告)号:US20240298923A1
公开(公告)日:2024-09-12
申请号:US18590547
申请日:2024-02-28
Inventor: Joey Magno
CPC classification number: A61B5/1076 , A61B5/6859 , A61B2090/0811
Abstract: A sizing device configured to measure a dimension of a lumen in a patient can include an elongated member, an extendable assembly, and an actuation mechanism. The elongated member can be insertable into the patient and define a lumen extending from a proximal end to a distal end. The extendable assembly can be insertable into the lumen. The extendable assembly can include elements that can have a shape-set memory bias. The shape-set memory bias can be configured to allow the elements to extend radially outward from a central axis of the elongated member. The actuation mechanism can be operably coupled to the extendable assembly and can be configured to move the elements between a retracted position and a plurality of deployed positions.
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公开(公告)号:US20240261025A1
公开(公告)日:2024-08-08
申请号:US18625166
申请日:2024-04-02
Inventor: Anne G. McLoughlin , Sergey A. Bukesov , Kurt G. Shelton , Brian M. Talbot , Rachel D. Schnakenberg , Kimbolt Young
CPC classification number: A61B18/22 , A61B5/0022 , A61B5/0075 , A61B5/0084 , A61B5/4869 , A61B2018/00482 , A61B2018/00511 , A61B2018/00577 , A61B2018/00589 , A61B2018/00625 , A61B2018/00642 , A61B18/26
Abstract: Systems, devices, and methods for identifying a target in a body using a spectroscopic feedback from the target are disclosed. An exemplary surgical feedback control system comprises a feedback analyzer configured to receive a reflected signal from a target in response to electromagnetic radiation directed at a target, and a controller in operative communication with the feedback analyzer. The controller can generate a control signal to a surgical system to perform a predetermined operation based upon the received reflected signal, including determining a composition of the target, or programming a laser setting to direct laser energy to the target.
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