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US8162990B2 Multi axial spinal fixation system Google Patents

US8162990B2 US11 560 587 US56058706A US8162990B2 US 8162990 B2 US8162990 B2 US 8162990B2 US 56058706 A US56058706 A US 56058706A US 8162990 B2 US8162990 B2 US 8162990B2 Authority

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BY ERIC BOLIN AISC

Anchor rod extension using coupling nut Yet another fix option for a rod that s too short is to install an extended nut such as the Elocone elongated nut produced by

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Strong Rod Systems Archives

2021 8 4 nbsp 0183 32 This device has the smallest number of components and allows the rod unlimited travel through the device It is ideal at the top level of a rod system run or where small rod diameters are used Simpson Strong Tie RTUDs can now accommodate 5 8″ RTUD5 and 190 RTUD6 diameter rods

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AccessGUDID DEVICE LINEUM 174 OCT SPINE SYSTEM

Device Identifier DI Information Brand Name LINEUM 174 OCT SPINE SYSTEM Version or Model 14 524380 Commercial Distribution Status In Commercial Distribution Catalog Number 14 524380 Company Name BIOMET SPINE LLC Primary DI Number 00880304958760 Issuing Agency GS1 Commercial Distribution End Date

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Comparison of pelvic fixation techniques in neuromuscular spinal deformity correction Galveston rod

Difficulties with radiographic halos around the rods loosening rod contouring and attaching to lumbar spine anchors have prompted their replacement with iliac screws Methods A minimum 2 year radiographic and clinical follow up compared 20 patients with the Galveston technique to 20 patients with an iliac screw undergoing posterior spinal fusion T2 T3 pelvis for

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Patents Assigned to Route 92 Medical Inc Justia Patents Search

2019 8 2 nbsp 0183 32 Abstract An anchoring delivery system for use in an intracranial artery is provided including a tethering device having an elongated tether and an anchor coupled to a distal end of the tether The anchor is deployable from a low profile configuration to a higher profile configuration to fix the distal end of the tether at an anchoring site in an anchoring vessel

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Methods and apparatus for fusionless treatment of spinal

2001 6 13 nbsp 0183 32 The correction devices also include connection members which can be used to engage the devices to an elongated member spanning the spine such as a spinal rod or a metal or non metal cable or tether Once union has occurred in the instrumented vertebrae the spinal rod or cable or tether can be disconnected from the correction devices and

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and suture anchors DolceraWiki

2009 10 8 nbsp 0183 32 anchors or suture anchors are devices which attach soft tissue to This may be achieved by tieing one end of a suture to soft tissue and the other end to a device which quot anchors quot the suture to the source Suture anchors are small there are many variations of design approach

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Staged Growing Rods With Preimplantation of Spinal Anchors for

Staged Growing Rods With Preimplantation of Spinal Anchors for Complex Early Onset Scoliosis J Pediatr Orthop 2017 Dec 37 8 e606 e611 doi 10 1097 BPO 0000000000000957 Authors Jaime A Gomez

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Biomechanics of Posterior Instrumentation for Spinal Arthrodesis

2017 8 2 nbsp 0183 32 Threaded rods allow powerful controlled distraction or compression of the anchoring members along the rod However as bending of the rod with mechanical benders often results in damage to the threads causing difficulty in tightening of the nuts they are usually more malleable than the sliding type rods

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Growing Rods Are an Effective Fusionless Method of Controlling

Spine grew at an average of 39 mm 11 2 mm per year Implant related complications were the most common 8 14 57 including failure of proximal construct 5 14 rod breakage 2 14 and prominent implants 1 14 There was no significant difference

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Pediatric Scoliosis Surgical Technologies Growing Rods

2017 4 6 nbsp 0183 32 Like a growth rod approach two rods are implanted on each side of the spine With growth guided devices the rods are attached to screws or wires called anchor points along the spine The difference between growth guided devices and traditional growing rods or MCGR is the spine is left to grow on its own after the initial procedure

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Proximal anchor fixation in magnetically controlled growing rods MCGR preliminary 2 year results of the impact of anchor

Conclusions When using the MCGR proximal spine anchors and greater anchor density impart superior deformity correction but do not significantly impact the risk of device complications Although rib based constructs afford less rigidity than spine based constructs there is a similar risk of rod breakage and device migration

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Richard Assaker Inventions Patents and Patent Applications

2011 5 9 nbsp 0183 32 Inventors Fr 233 d 233 ric Conchy Richard Assaker Anterior implant for the spine Patent number 6652525 Abstract Implant for the cervical spine comprising an anterior plate 1 for maintaining a graft anchorage screws 6 7 8 for the plate and at least one slide 22 for blocking the screws and preventing any migration of the

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Spinal implant system Cross Medical Products

We claim 1 A fixation device for the stabilization of one or more spinal segments comprising at least two anchors and an elongated stabilizer said stabilizer having a cross sectional depth said anchors each comprising screw means which secure said

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Streamlined method for anchoring cataract surgery and

The device push rod was extended forward to elongate the PPC capsulotomy ring and suction cup to facilitate insertion into the eye Figure 3 D and E Once in the anterior chamber the push rod was retracted and the PPC tip regained its original circular shape Figure 3 F

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Wood Shear Wall Tie Down Anchoring Devices

7 Job specific dimensioned shear wall elevations shall be provided to show the complete tie down system connection details the location and size of rod cable bearing plates shrinkage compensating devise coupler nut floor blocking and anchor bolt 8

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Biomechanical comparison of different anchors foundations for the pediatric dual growing rod

Introduction The dual growing rod technique involves implantation of a set of two rods and two anchor groups upper and lower foundations to exert frequent distractions to

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AccessGUDID DEVICE CD HORIZON 174 Spinal System

AccessGUDID CD HORIZON 174 Spinal System 00643169015883 ROD 1553201080 5 5 TI CP4 NS CURV 80MM Skip to Main Content U S National Library of Medicine NLM Tools and Resources FDA UDI Home FDA Medical Devices Home Report a Device

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US8628559B2 Spinal implant connection assembly Google

The present invention provides a connection assembly that can be used to securely connect a spinal implant to a anchor In particular the present invention preferably provides a spinal implant connection assembly that is able to securely connect the spinal implant to the anchors even when there is a variance in the angle and position of the anchors with respect to the

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anchors with end loading receivers for elongated connecting elements in spinal

2006 4 20 nbsp 0183 32 Devices and methods include an anchor assembly engageable to a vertebra and a connecting element positionable through a receiver of the anchor assembly The receiver includes a body extending along a longitudinal axis that defines an axial bore extending longitudinally therein and opening at least distally and a trans axial bore that opens in opposite

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AccessGUDID DEVICE CD HORIZON 174 Spinal System

AccessGUDID CD HORIZON 174 Spinal System 00643169370845 ROD 9010005080 PERC TI CP CONT 5 5X80 What MRI safety information does the labeling contain Labeling does not contain MRI Safety Information Device required to be labeled as containing

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Torque Testing amp Installation Inspection of Drilled in Anchors

2 Self undercutting anchor flaring is verified by the visual inspection of the flaring movement of the drill or with a flare measuring device if acceptable as indicated in above note V A 1 3 After cleaning the hole free from dust and debris each anchor is set

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Surgical Technique Modern Luqu 233 Trolley a Self growing Rod

2011 1 28 nbsp 0183 32 Each rod had only one end rigidly anchored to the spine In the intermediate segments a series of gliding spinal anchors maintain the correction by keeping the rods parallel and engaged As the spine grows the rigidly proximal fixed rods move away from the4

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25 Spine Device Awards 2015

2015 6 18 nbsp 0183 32 The device anchors to the incision wall providing a standalone hands free device Endoskeleton TL from Titan Spine The Endoskeleton TL is a lateral fusion device that features the company s proprietary surface technology that has been shown to encourage the production of growth factors necessary for fusion

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Devices for securing elongated spinal connecting elements in

2007 3 1 nbsp 0183 32 Europe PMC is an archive of life sciences journal literature This website requires cookies and the limited processing of your personal data in order to function By using the site you are agreeing to this as outlined in our privacy notice and cookie policy privacy notice

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Prestressed Concrete Anchors – Williams Form Engineering Corp

Prestressed concrete anchors are often used for resisting cyclic or dynamic loading caused by wind or seismic events They are also used to limit or restrict structural movement due to anchor steel elongation Common applications for prestressed concrete anchors are tower anchoring foundation repair and heavy machinery tie down

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Nonrotating self centering anchor assembly for anchoring a bolt

1998 1 1 nbsp 0183 32 Abstract An expandable anchor assembly is provided for anchoring the threaded end portion of an elongated roof bolt in a borehole The anchoring assembly includes a hollow outer sleeve in the form of a plurality of symmetrically arranged longitudinal segmented wall portions with exterior gripping teeth and an inner expander sleeve in the form of a corresponding

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AccessGUDID DEVICE CD HORIZON 174 Spinal System

AccessGUDID CD HORIZON 174 Spinal System 00885074479781 6 35MM X 25MM PEEK SEXTANT ROD Skip to Main Content National Library of Medicine NLM Tools and Resources FDA UDI Home FDA Medical Devices Home Report a Device Home About

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Distractional failure forces comparison of different anchor sites for the pediatric growing rod

Distractional failure forces comparison of different anchor sites for the pediatric growing rod technique Eur Spine J 2014 Jun 23 6 1197 203 doi 10 1007 s00586 014 3222 1