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Arthrex Inc wire loop arthrex
Wire Loop Arthrex, supplied by Arthrex Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/loop+wire/fiberloops+arthrex/pmc12277742-66-1-3
Average 90 stars, based on 1 article reviews
wire loop arthrex - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Outcomes of arthroscopic assisted fixation of distal clavicle fractures using an adjustable button
Article Snippet: The Wire Loop (Arthrex, Naples, FL, USA) was then threaded through the cannulated drill, which assisted in shuttling the adjustable button.

Article Title: Combined tissue grasper-suture retriever instrument and method of tissue repair
Article Snippet: Flexible strand 50 may be a suture strand or any suture-like material known in the art, or a suture passing device or suture capturing member (for example, a FiberLinkTM (Arthrex Inc., Naples, Fla.), or a Nitinol wire shuttle loop, or a monofilament suture loop, or a snare made of Nitinol wire, or a FiberStickTM (Arthrex) (for example, a #2 FiberWire® (Arthrex) with 12 inches stiffened portion which may be also used with a PushLock® (Arthrex) anchor)) that allows passing of a suture through tissue 90.

Article Title: Arthroscopic Knotless Double-Bundle Inferior Glenohumeral Ligament Reconstruction for Static Inferior Shoulder Subluxation
Article Snippet: Two FiberLoops (Arthrex) are passed through both ends using a Krackow suture with 2 cm of each end, leaving 2 fiber wire tails ( C).

Article Title: Surgical management of an intratendinous ganglion cyst of the long head of the biceps brachii: a case report
Article Snippet: Once this was done, a FiberLoop (Arthrex, Naples, FL, USA) stitch was used to perform a running locking stitch in the tendon.

Article Title: Arthroscopic Knotless Double-Bundle Inferior Glenohumeral Ligament Reconstruction for Static Inferior Shoulder Subluxation
Article Snippet: To prepare the graft, 2 FiberLoops (Arthrex) are passed through both ends using a Krackow suture with 2 cm of each end, leaving 2 fiber wire tails.

Article Title: ACL hamstring grafts fixed using adjustable cortical suspension in both the femur and tibia demonstrate healing and integration on MRI at one year.
Article Snippet: Purpose To present the clinical outcomes and magnetic resonance imaging (MRI) analysis of adjustable cortical suspensory fixation for the femur and tibia in hamstring autograft anterior cruciate ligament reconstruction.. Methods A cohort of 233 sequential patients was analysed for graft failure rate and subjective IKDC, Tegner and Lysholm scores.. 144 validated 1-year MRIs assessed and correlated graft healing and tunnel widening.

Article Title: Minimally Invasive Anterior Cruciate Ligament With Quadriceps Tendon Graft: A Proximal-to-Distal Harvest Technique
Article Snippet: Two to three whipstitches with a FiberLoop (Arthrex, Naples, FL) are used to allow passage of the start of the QT graft into the Arthrex Quadriceps Harvest Tool (Arthrex) ( ).

Article Title: Endoscopic Anterolateral Ligament Reconstruction Using an Iliotibial Band Strip: A Cadaveric Feasibility Study
Article Snippet: It was measured, reinforced over 15 mm using a FiberLoop (Arthrex, Naples, FL, USA), and calibrated (Figure ).



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Intraoperative photographs detailing minimally invasive arthroscopic treatment of isolated Rockwood type III acute acromioclavicular dislocation in left shoulder of male patient via Dog Bone Button. The arthroscopic steps are as follows: (A) Through the anterolateral portal, the inferior surface of the coracoid is visualized. By use of the Serfas vaporizer instrument introduced through the anteroinferior portal, the inferior surface is skeletonized, exposing it as much as possible. (B) Visualization of inferior surface of coracoid from anteroinferior portal. (C) Visualization of inferior surface of coracoid from anteroinferior portal, followed by skeletonization of inferior surface using Serfas vaporizer instrument through anterolateral portal. (D) Visualization of inferior surface of coracoid from anteroinferior portal, with skeletonization of inferior surface using 4.0-mm powered shaver (Stryker) through anterolateral portal. (E) Palpation of medial margin of coracoid with probe (Stryker) introduced through anterolateral portal, with visualization from anteroinferior portal. (F) Palpation of medial margin of coracoid using the extremity of acromion Arthrex compass at 90° angle through anterolateral portal, with visualization from anteroinferior portal. (G) Visualization of drill insertion from anteroinferior portal, performed with Arthrex compass and drill, both introduced through anterolateral portal. (H) Passage of <t>SutureLasso</t> SD Wire Loop through Arthrex cannulated drill, visualized from anterolateral portal. (I) Retrieval of SutureLasso SD Wire Loop from Arthrex cannulated drill, correctly positioned at inferior surface of coracoid base. This is visualized from the anterolateral portal, and retrieval is performed with an arthroscopic grasper (Stryker) through the anteroinferior portal. (J) After loading the 2 FiberTape sutures of the Dog Bone Button onto the SutureLasso, the SutureLasso is retrieved, thereby pulling the 2 FiberTape sutures of the Dog Bone Button through the coracoid. This step is visualized from the anterolateral portal, with the FiberTape sutures being inserted through the anteroinferior portal. (K) Visualization of Dog Bone Button in vertical position on inferior surface of coracoid from anterolateral portal. (L) Visualization of Dog Bone Button properly positioned at inferior surface of coracoid base from anterolateral portal.
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Arthrex Inc nitinol wire shuttle loop
<t>Shuttle</t> <t>loop</t> preparation and graft passage for reduction. (A) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. A <t>nitinol</t> <t>wire</t> shuttle loop with a passing hook (Arthrex) is cautiously placed close to the medial cortex of the coracoid base to avoid nerve injury. (B) Outside view of left shoulder with patient in beach-chair position. A FiberTape (white arrow) along with the long head of the biceps tendon (LHBT) graft (black arrow), in a venae comitantes fashion, is dragged into the subacromial space. The green arrows indicate the shuttle loop, and the yellow arrows indicate the epidural needles. (C) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. Passage of FiberTape with 1 tail suture (“string”) of LHBT under base of coracoid. (D) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. Passage of FiberTape along with LHBT around base of coracoid using shuttle loop. (E) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. The grafts loop around the coracoid base. (F) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. The 2 ends of the grafts are crossed and form an X shape within the coracoclavicular interval. The stars indicate the coracoid base.
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Image Search Results


Intraoperative photographs detailing minimally invasive arthroscopic treatment of isolated Rockwood type III acute acromioclavicular dislocation in left shoulder of male patient via Dog Bone Button. The arthroscopic steps are as follows: (A) Through the anterolateral portal, the inferior surface of the coracoid is visualized. By use of the Serfas vaporizer instrument introduced through the anteroinferior portal, the inferior surface is skeletonized, exposing it as much as possible. (B) Visualization of inferior surface of coracoid from anteroinferior portal. (C) Visualization of inferior surface of coracoid from anteroinferior portal, followed by skeletonization of inferior surface using Serfas vaporizer instrument through anterolateral portal. (D) Visualization of inferior surface of coracoid from anteroinferior portal, with skeletonization of inferior surface using 4.0-mm powered shaver (Stryker) through anterolateral portal. (E) Palpation of medial margin of coracoid with probe (Stryker) introduced through anterolateral portal, with visualization from anteroinferior portal. (F) Palpation of medial margin of coracoid using the extremity of acromion Arthrex compass at 90° angle through anterolateral portal, with visualization from anteroinferior portal. (G) Visualization of drill insertion from anteroinferior portal, performed with Arthrex compass and drill, both introduced through anterolateral portal. (H) Passage of SutureLasso SD Wire Loop through Arthrex cannulated drill, visualized from anterolateral portal. (I) Retrieval of SutureLasso SD Wire Loop from Arthrex cannulated drill, correctly positioned at inferior surface of coracoid base. This is visualized from the anterolateral portal, and retrieval is performed with an arthroscopic grasper (Stryker) through the anteroinferior portal. (J) After loading the 2 FiberTape sutures of the Dog Bone Button onto the SutureLasso, the SutureLasso is retrieved, thereby pulling the 2 FiberTape sutures of the Dog Bone Button through the coracoid. This step is visualized from the anterolateral portal, with the FiberTape sutures being inserted through the anteroinferior portal. (K) Visualization of Dog Bone Button in vertical position on inferior surface of coracoid from anterolateral portal. (L) Visualization of Dog Bone Button properly positioned at inferior surface of coracoid base from anterolateral portal.

Journal: Arthroscopy Techniques

Article Title: Two Scope Portals in Simple Acromioclavicular Joint Type III Injury

doi: 10.1016/j.eats.2025.103536

Figure Lengend Snippet: Intraoperative photographs detailing minimally invasive arthroscopic treatment of isolated Rockwood type III acute acromioclavicular dislocation in left shoulder of male patient via Dog Bone Button. The arthroscopic steps are as follows: (A) Through the anterolateral portal, the inferior surface of the coracoid is visualized. By use of the Serfas vaporizer instrument introduced through the anteroinferior portal, the inferior surface is skeletonized, exposing it as much as possible. (B) Visualization of inferior surface of coracoid from anteroinferior portal. (C) Visualization of inferior surface of coracoid from anteroinferior portal, followed by skeletonization of inferior surface using Serfas vaporizer instrument through anterolateral portal. (D) Visualization of inferior surface of coracoid from anteroinferior portal, with skeletonization of inferior surface using 4.0-mm powered shaver (Stryker) through anterolateral portal. (E) Palpation of medial margin of coracoid with probe (Stryker) introduced through anterolateral portal, with visualization from anteroinferior portal. (F) Palpation of medial margin of coracoid using the extremity of acromion Arthrex compass at 90° angle through anterolateral portal, with visualization from anteroinferior portal. (G) Visualization of drill insertion from anteroinferior portal, performed with Arthrex compass and drill, both introduced through anterolateral portal. (H) Passage of SutureLasso SD Wire Loop through Arthrex cannulated drill, visualized from anterolateral portal. (I) Retrieval of SutureLasso SD Wire Loop from Arthrex cannulated drill, correctly positioned at inferior surface of coracoid base. This is visualized from the anterolateral portal, and retrieval is performed with an arthroscopic grasper (Stryker) through the anteroinferior portal. (J) After loading the 2 FiberTape sutures of the Dog Bone Button onto the SutureLasso, the SutureLasso is retrieved, thereby pulling the 2 FiberTape sutures of the Dog Bone Button through the coracoid. This step is visualized from the anterolateral portal, with the FiberTape sutures being inserted through the anteroinferior portal. (K) Visualization of Dog Bone Button in vertical position on inferior surface of coracoid from anterolateral portal. (L) Visualization of Dog Bone Button properly positioned at inferior surface of coracoid base from anterolateral portal.

Article Snippet: The trocar is removed from the drill, and a SutureLasso SD Wire Loop (Arthrex) is passed through the drill cannulation loop and then retrieved through the anteroinferior portal, viewing through the anterolateral portal.

Techniques: Isolation

Shuttle loop preparation and graft passage for reduction. (A) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. A nitinol wire shuttle loop with a passing hook (Arthrex) is cautiously placed close to the medial cortex of the coracoid base to avoid nerve injury. (B) Outside view of left shoulder with patient in beach-chair position. A FiberTape (white arrow) along with the long head of the biceps tendon (LHBT) graft (black arrow), in a venae comitantes fashion, is dragged into the subacromial space. The green arrows indicate the shuttle loop, and the yellow arrows indicate the epidural needles. (C) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. Passage of FiberTape with 1 tail suture (“string”) of LHBT under base of coracoid. (D) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. Passage of FiberTape along with LHBT around base of coracoid using shuttle loop. (E) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. The grafts loop around the coracoid base. (F) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. The 2 ends of the grafts are crossed and form an X shape within the coracoclavicular interval. The stars indicate the coracoid base.

Journal: Arthroscopy Techniques

Article Title: Autologous Long Head of Biceps Tendon With High-Strength Suture for Reconstruction of Coracoclavicular Ligament

doi: 10.1016/j.eats.2025.103465

Figure Lengend Snippet: Shuttle loop preparation and graft passage for reduction. (A) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. A nitinol wire shuttle loop with a passing hook (Arthrex) is cautiously placed close to the medial cortex of the coracoid base to avoid nerve injury. (B) Outside view of left shoulder with patient in beach-chair position. A FiberTape (white arrow) along with the long head of the biceps tendon (LHBT) graft (black arrow), in a venae comitantes fashion, is dragged into the subacromial space. The green arrows indicate the shuttle loop, and the yellow arrows indicate the epidural needles. (C) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. Passage of FiberTape with 1 tail suture (“string”) of LHBT under base of coracoid. (D) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. Passage of FiberTape along with LHBT around base of coracoid using shuttle loop. (E) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. The grafts loop around the coracoid base. (F) Subacromial interval arthroscopic view of left shoulder with 30° arthroscope in lateral portal. The 2 ends of the grafts are crossed and form an X shape within the coracoclavicular interval. The stars indicate the coracoid base.

Article Snippet: Under arthroscopic visualization, a nitinol wire shuttle loop is passed around the base of the coracoid from medial to lateral with a passing hook (AR-7806; Arthrex), which is cautiously placed close to the medial cortex of the coracoid base to avoid nerve injury ( A).

Techniques: