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    FORMING OF ADDITIVELY MANUFACTURED PRODUCT
    1.
    发明申请
    FORMING OF ADDITIVELY MANUFACTURED PRODUCT 审中-公开

    公开(公告)号:US20190248052A1

    公开(公告)日:2019-08-15

    申请号:US16392032

    申请日:2019-04-23

    申请人: Smith & Nephew, Inc.

    发明人: Vivek Pawar ,  Mark Morrison ,  Carolyn Weaver

    IPC分类号: B29C45/14 ,  B33Y10/00 ,  B33Y40/00 ,  B33Y80/00 ,  B23K26/342 ,  B21J1/00 ,  A61F2/00 ,  A61F2/38 ,  A61F2/30

    CPC分类号: B29C45/14795 ,  A61F2/0077 ,  A61F2/30771 ,  A61F2/3859 ,  A61F2/3877 ,  A61F2/389 ,  A61F2002/009 ,  A61F2002/30028 ,  A61F2002/3092 ,  A61F2002/3093 ,  A61F2002/30967 ,  A61F2002/30968 ,  A61F2002/3097 ,  A61F2002/30971 ,  B21J1/003 ,  B21J1/02 ,  B21J7/00 ,  B23K26/342 ,  B29C64/00 ,  B29C2045/14803 ,  B29K2705/08 ,  B29L2031/7532 ,  B33Y10/00 ,  B33Y40/00 ,  B33Y80/00 ,  Y10T29/4998

    摘要: An exemplary process includes determining a desired pore size, selecting an initial pore size greater than the target pore size, manufacturing a porous structure with the initial pore size, forging the porous structure to form a forged part having the desired pore size, and forming an orthopedic device from the forged part.

    Holder For Resurfacing Head Implant
    2.
    发明申请
    Holder For Resurfacing Head Implant 审中-公开

    公开(公告)号:US20180325695A1

    公开(公告)日:2018-11-15

    申请号:US15774229

    申请日:2016-11-07

    申请人: Embody Orthopaedic Limited

    发明人: Robert Wozencroft

    IPC分类号: A61F2/46

    CPC分类号: A61F2/4607 ,  A61F2/3603 ,  A61F2002/30507 ,  A61F2002/30714 ,  A61F2002/30718 ,  A61F2002/30968 ,  A61F2002/3097 ,  A61F2002/30985 ,  A61F2002/4628 ,  A61F2002/4681 ,  A61F2002/4687

    摘要: A holder system for an implantable device, said holder system comprising a first component arranged to act as a clamp and a second component arranged to interact with the first component to prevent movement of said first component when clamped.

    EXPANDABLE SPACER AND METHOD OF USE THEREOF
    3.
    发明申请
    EXPANDABLE SPACER AND METHOD OF USE THEREOF 审中-公开

    公开(公告)号:US20180221167A1

    公开(公告)日:2018-08-09

    申请号:US15942596

    申请日:2018-04-02

    申请人: GLOBUS MEDICAL, INC.

    发明人: Chad Glerum

    IPC分类号: A61F2/44 ,  A61F2/30 ,  A61F2/28 ,  A61F2/46 ,  A61F2/38 ,  A61F2/00

    CPC分类号: A61F2/4455 ,  A61F2/0095 ,  A61F2/38 ,  A61F2/442 ,  A61F2/4465 ,  A61F2/4611 ,  A61F2002/2817 ,  A61F2002/2835 ,  A61F2002/30133 ,  A61F2002/302 ,  A61F2002/30354 ,  A61F2002/30357 ,  A61F2002/30362 ,  A61F2002/30405 ,  A61F2002/3041 ,  A61F2002/30411 ,  A61F2002/30415 ,  A61F2002/30448 ,  A61F2002/30451 ,  A61F2002/305 ,  A61F2002/30523 ,  A61F2002/3055 ,  A61F2002/30553 ,  A61F2002/30579 ,  A61F2002/30586 ,  A61F2002/30588 ,  A61F2002/30601 ,  A61F2002/30604 ,  A61F2002/30616 ,  A61F2002/30622 ,  A61F2002/30785 ,  A61F2002/30841 ,  A61F2002/30843 ,  A61F2002/30858 ,  A61F2002/30859 ,  A61F2002/30957 ,  A61F2002/3096 ,  A61F2002/3097 ,  A61F2002/30976 ,  A61F2002/4475 ,  A61F2002/448 ,  A61F2210/0014 ,  A61F2310/00017 ,  A61F2310/00023 ,  A61F2310/00029 ,  A61F2310/00071 ,  A61F2310/00179

    摘要: An expandable implant is disclosed having an adjustable height for insertion between two adjacent bony structures or joint surfaces, for example between two adjacent spinal vertebrae. The implant includes at least one gear associated with at least one threaded shaft. Rotation of the gear engages the threaded shaft to expand the implant. The implant can be inserted in a collapsed configuration and expanded in situ. The invention also provides methods for using the implant to facilitate arthrodesis or fusion of adjacent joint surfaces or spinal vertebrae.

    Implant device having a non-planar surface
    4.
    发明授权
    Implant device having a non-planar surface 有权

    公开(公告)号:US09999516B2

    公开(公告)日:2018-06-19

    申请号:US14743555

    申请日:2015-06-18

    申请人: 4WEB, Inc.

    发明人: Jessee Hunt

    IPC分类号: A61F2/44 ,  A61B17/16 ,  A61F2/28 ,  A61F2/30 ,  A61F2/38 ,  A61F2/46 ,  A61F2/32 ,  A61F2/40 ,  A61F2/42 ,  B33Y70/00 ,  B33Y80/00 ,  A61B17/02 ,  A61F2/36

    CPC分类号: A61F2/4455 ,  A61B17/025 ,  A61B17/1604 ,  A61B17/56 ,  A61B17/58 ,  A61B17/68 ,  A61F2/28 ,  A61F2/2803 ,  A61F2/2846 ,  A61F2/30767 ,  A61F2/30771 ,  A61F2/30907 ,  A61F2/3094 ,  A61F2/32 ,  A61F2/36 ,  A61F2/38 ,  A61F2/40 ,  A61F2/4202 ,  A61F2/4225 ,  A61F2/447 ,  A61F2/4611 ,  A61F2002/2817 ,  A61F2002/2835 ,  A61F2002/30153 ,  A61F2002/30156 ,  A61F2002/30158 ,  A61F2002/30179 ,  A61F2002/30273 ,  A61F2002/30275 ,  A61F2002/30278 ,  A61F2002/30281 ,  A61F2002/30283 ,  A61F2002/30599 ,  A61F2002/30841 ,  A61F2002/30899 ,  A61F2002/30909 ,  A61F2002/30914 ,  A61F2002/3092 ,  A61F2002/30943 ,  A61F2002/30945 ,  A61F2002/30952 ,  A61F2002/30953 ,  A61F2002/30957 ,  A61F2002/30958 ,  A61F2002/30962 ,  A61F2002/30968 ,  A61F2002/3097 ,  A61F2002/4475 ,  A61F2002/4628 ,  A61F2210/0076 ,  A61F2230/0063 ,  A61F2310/00011 ,  A61F2310/00017 ,  A61F2310/00023 ,  A61F2310/00029 ,  A61F2310/00047 ,  A61F2310/00179 ,  A61F2310/00598 ,  A61F2310/00796 ,  A61F2310/00958 ,  A61F2310/0097 ,  A61F2310/00976 ,  B33Y70/00 ,  B33Y80/00

    摘要: In various embodiments, an implant for interfacing with a bone structure includes a web structure including a space truss. The space truss includes two or more planar truss units having a plurality of struts joined at nodes and the web structure is configured to interface with human bone tissue. In some embodiments, a method is provided that includes accessing an intersomatic space and inserting an implant into the intersomatic space. The implant includes a web structure including a space truss. The space truss includes two or more planar truss units having a plurality of struts joined at nodes and the web structure is configured to interface with human bone tissue.

    Intervertebral spacer that dynamically promotes bone growth
    5.
    发明授权
    Intervertebral spacer that dynamically promotes bone growth 有权

    公开(公告)号:US09943416B2

    公开(公告)日:2018-04-17

    申请号:US15065774

    申请日:2016-03-09

    申请人: Simplify Medical Pty Limited

    发明人: Yves Arramon ,  David Hovda

    IPC分类号: A61F2/44 ,  A61F2/46 ,  A61F2/30 ,  A61B17/70

    CPC分类号: A61F2/4455 ,  A61B17/7059 ,  A61F2/4465 ,  A61F2/447 ,  A61F2/4611 ,  A61F2002/30014 ,  A61F2002/30028 ,  A61F2002/3008 ,  A61F2002/30131 ,  A61F2002/30135 ,  A61F2002/30158 ,  A61F2002/302 ,  A61F2002/30563 ,  A61F2002/30622 ,  A61F2002/30782 ,  A61F2002/3093 ,  A61F2002/30968 ,  A61F2002/3097 ,  A61F2002/4475 ,  A61F2220/0016 ,  A61F2310/00023 ,  A61F2310/00029 ,  A61F2310/00059 ,  A61F2310/00101 ,  A61F2310/00131

    摘要: A dynamic intervertebral spacer includes a ring which is split on an anterior portion. A posterior portion of the ring acts as a torsion spring. After implantation, the ring is able to act as a spring between superior and inferior vertebral bodies, thus allowing dynamic bone growth in fusion procedures.

    THREE-DIMENSIONALLY PRINTED TISSUE ENGINEERING SCAFFOLDS FOR TISSUE REGENERATION
    6.
    发明申请
    THREE-DIMENSIONALLY PRINTED TISSUE ENGINEERING SCAFFOLDS FOR TISSUE REGENERATION 审中-公开

    公开(公告)号:US20180055643A1

    公开(公告)日:2018-03-01

    申请号:US15671048

    申请日:2017-08-07

    申请人: Nanochon, LLC

    发明人: Nathan Jonathan Castro ,  Benjamin Blair Holmes

    IPC分类号: A61F2/30 ,  A61L27/18 ,  A61L27/56 ,  C08J9/26 ,  C08J9/00 ,  A61L27/12 ,  B29C64/30 ,  B33Y10/00 ,  B33Y80/00

    CPC分类号: A61F2/30942 ,  A61F2/28 ,  A61F2/30756 ,  A61F2/30771 ,  A61F2002/2835 ,  A61F2002/30766 ,  A61F2002/30784 ,  A61F2002/30838 ,  A61F2002/3084 ,  A61F2002/3092 ,  A61F2002/3093 ,  A61F2002/30948 ,  A61F2002/30962 ,  A61F2002/30968 ,  A61F2002/3097 ,  A61F2002/30971 ,  A61F2002/30985 ,  A61L27/12 ,  A61L27/18 ,  A61L27/48 ,  A61L27/54 ,  A61L27/56 ,  A61L27/58 ,  A61L2400/08 ,  A61L2400/12 ,  A61L2430/02 ,  A61L2430/06 ,  B29C64/118 ,  B29C64/30 ,  B29K2071/02 ,  B29K2075/00 ,  B29K2995/0056 ,  B29L2031/7532 ,  B33Y10/00 ,  B33Y80/00 ,  C08J9/0061 ,  C08J9/0071 ,  C08J9/26 ,  C08J2201/0464 ,  C08J2205/04 ,  C08J2205/042 ,  C08J2205/044 ,  C08J2205/06 ,  C08J2207/10 ,  C08J2325/06 ,  C08J2367/04 ,  C08J2375/04 ,  C08J2405/04 ,  C08J2429/04 ,  C08J2471/02 ,  C08J2489/00 ,  C08L75/04 ,  C08L67/04

    摘要: The present disclosure relates to a three-dimensionally (3D) printed tissue engineering scaffold for tissue regeneration and a method for manufacturing the 3D printed tissue engineering scaffold. The 3D printed tissue engineering scaffold may be fabricated at least in part from a composite material having an insoluble component and soluble component. The three-dimensional tissue scaffolds of the disclosure may be fabricated via a rapid prototyping machine. In some instances, the three-dimensional shape of the fabricated tissue engineering scaffold may correspond to a three-dimensional shape of a tissue defect of a patient.

    Cement-directing orthopedic implants
    7.
    发明授权
    Cement-directing orthopedic implants 有权

    公开(公告)号:US09833273B2

    公开(公告)日:2017-12-05

    申请号:US15433304

    申请日:2017-02-15

    申请人: GLOBUS MEDICAL, INC.

    发明人: Andrew R. Sennett ,  William Harwick Gruber ,  Joseph Ernest Richard

    IPC分类号: A61F2/44 ,  A61B17/88 ,  A61F2/30 ,  A61F2/00 ,  A61B17/70

    CPC分类号: A61B17/8811 ,  A61B17/7098 ,  A61B17/8822 ,  A61B17/8858 ,  A61F2/0063 ,  A61F2/30907 ,  A61F2/442 ,  A61F2/4455 ,  A61F2002/30019 ,  A61F2002/3008 ,  A61F2002/30092 ,  A61F2002/30243 ,  A61F2002/30454 ,  A61F2002/30912 ,  A61F2002/3097

    摘要: A cement-directing structure for use in cement-injection bone therapy includes a collapsible, self-restoring braided structure with regions of differential permeability to the bone cement. The regions of differential permeability may be provided by areas where the braided mesh density is greater or lesser than surrounding areas and/or by means of a baffle. After the structure is placed in a void within a bony structure, cement is injected into the interior of the structure then oozes out in preferred directions according to the locations of the regions of differential permeability.

    Shape Memory Alloy Orthopedic Implant
    8.
    发明申请
    Shape Memory Alloy Orthopedic Implant 审中-公开

    公开(公告)号:US20170340777A1

    公开(公告)日:2017-11-30

    申请号:US15525972

    申请日:2015-11-13

    申请人: The Texas A&M University System

    发明人: Ji Ma ,  Mukund I. Gundanna ,  Ibrahim Karaman ,  Arun R. Srinivasa

    IPC分类号: A61L27/50 ,  A61L27/06 ,  A61F2/44 ,  A61L27/04 ,  A61F2/30

    CPC分类号: A61L27/50 ,  A61F2/442 ,  A61F2/4455 ,  A61F2/4465 ,  A61F2002/30092 ,  A61F2002/30095 ,  A61F2002/30538 ,  A61F2002/30571 ,  A61F2002/3097 ,  A61F2002/30978 ,  A61F2002/4435 ,  A61F2310/00023 ,  A61F2310/00095 ,  A61L27/047 ,  A61L27/06 ,  A61L2400/16 ,  A61L2430/38

    摘要: Systems and methods discussed herein provide for fabricating orthopedic implants one or more shape-memory alloys including TiNi and TiNb and shape-setting the alloys to the geometry appropriate for the orthopedic implant. The shape-setting may include tuning the transformation temperature of the one or more alloys, and a single implant may comprise one or more alloys that may differ in composition, shape-setting process, or both.

    BONE SCREW
    9.
    发明申请
    BONE SCREW 审中-公开

    公开(公告)号:US20170266007A1

    公开(公告)日:2017-09-21

    申请号:US15531499

    申请日:2014-11-27

    申请人: MATERIALISE N.V.

    发明人: Frederik GELAUDE ,  Tim CLIJMANS

    IPC分类号: A61F2/30 ,  A61B34/10 ,  A61B17/86

    CPC分类号: A61F2/30749 ,  A61B17/8625 ,  A61B17/863 ,  A61B17/864 ,  A61B17/866 ,  A61B34/10 ,  A61B2034/104 ,  A61B2034/108 ,  A61F2/30767 ,  A61F2/3094 ,  A61F2002/30004 ,  A61F2002/30011 ,  A61F2002/3006 ,  A61F2002/30626 ,  A61F2002/30948 ,  A61F2002/30952 ,  A61F2002/30962 ,  A61F2002/30968 ,  A61F2002/3097 ,  A61F2002/30985

    摘要: Method for manufacturing a bone pin for connection to a bone, particularly for fixing an implant to a bone, the bone pin having an implant contacting part arranged to contact the implant in connected situation and a bone contacting part arranged to engage the bone in connected situation, wherein the method comprises the steps of:—providing bone information which is indicative for the bone which the bone contacting part is arranged to engage;—providing a bone contacting part which is customized on the basis of the bone information for engaging said bone;—providing an implant contacting part; and—assembling the bone contacting part and the implant contacting part for manufacturing the pin.

    ADDITIVE MANUFACTURED TITANIUM BONE DEVICE
    10.
    发明申请
    ADDITIVE MANUFACTURED TITANIUM BONE DEVICE 审中-公开

    公开(公告)号:US20170216036A1

    公开(公告)日:2017-08-03

    申请号:US15488449

    申请日:2017-04-15

    申请人: Additive Innovations, LLC

    发明人: Nicholas Michael Cordaro

    IPC分类号: A61F2/30 ,  A61F2/44

    CPC分类号: A61F2/4455 ,  A61B50/30 ,  A61F2/30 ,  A61F2/30942 ,  A61F2/44 ,  A61F2/442 ,  A61F2/447 ,  A61F2002/30143 ,  A61F2002/30263 ,  A61F2002/30785 ,  A61F2002/30789 ,  A61F2002/3092 ,  A61F2002/30952 ,  A61F2002/30968 ,  A61F2002/3097 ,  A61F2002/30985 ,  A61F2002/4475 ,  A61F2310/00023 ,  B22F3/1055 ,  B22F3/11 ,  B33Y10/00 ,  B33Y80/00

    摘要: Disclosed herein is an orthopedic implant device comprising a porous structure, approximating the shape of a bone, and having modulus of elasticity similar to that of said bone. In one embodiment, further disclosed herein is a method of treating injuries or diseases affecting bones or muscles comprising providing an orthopedic implant device, wherein the orthopedic implant device comprising a porous structure, approximating the shape of a bone, and having a modulus of elasticity similar to that of bone, and using the orthopedic implant device to treat injuries and diseases affecting bones and muscles in a mammal. In another embodiment, disclosed herein is a method of manufacturing an orthopedic implant device using an additive manufacturing (AM) method.

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