Literature DB >> 15726075

Grammont reverse prosthesis: design, rationale, and biomechanics.

Pascal Boileau1, Duncan J Watkinson, Armodios M Hatzidakis, Frederic Balg.   

Abstract

Combined destruction of the rotator cuff and the glenohumeral joint may lead to a painful and pseudo-paralyzed shoulder. In this situation a nonconstrained shoulder prosthesis yields a limited functional result or may even be contraindicated. Previous constrained prostheses (ball-and-socket or reverse ball-and-socket designs) have failed because their center of rotation remained lateral to the scapula, which limited motion and produced excessive torque on the glenoid component, leading to early loosening. The reverse prosthesis designed by Paul Grammont, unlike any previous reverse ball-and-socket design, has introduced 2 major innovations that have led to its success: (1) a large glenoid hemisphere with no neck and (2) a small humeral cup almost horizontally oriented with a nonanatomic inclination of 155 degrees, covering less than half of the glenosphere. This design medializes and stabilizes the center of rotation, minimizes torque on the glenoid component, and helps in recruiting more fibers of the anterior and posterior deltoid to act as abductors. Furthermore, the humerus is lowered relative to the acromion, restoring and even increasing deltoid tension. The Grammont reverse prosthesis imposes a new biomechanical environment for the deltoid muscle to act, thus allowing it to compensate for the deficient rotator cuff muscles. The clinical experience does live up to the biomechanical concept: the reverse prosthesis restores active elevation above 90 degrees in patients with a cuff-deficient shoulder. However, external rotation often remains limited, particularly in patients with an absent or fat-infiltrated teres minor. Internal rotation is also rarely restored after a reverse prosthesis. Failure to restore sufficient tension in the deltoid may result in prosthetic instability. The design does appear to protect against early loosening of the glenoid component, but impingement of the humeral cup on the scapular neck can lead to scapular notching and polyethylene wear. This is a cause for concern, especially as the notch is often more extensive than can be explained by impingement alone. Bony lysis of the scapula may also be related to a polyethylene granuloma. Further follow-up is required to ensure that loosening does not become a problem in the long term, and it has been recommended to limit its use to elderly patients, arguably those aged over 70 years. Despite these concerns, the reverse prosthesis, based on the biomechanical Grammont concept, offers a true surgical option in several situations where only limited possibilities were previously available: cuff tear arthrosis, persistent shoulder pseudo-paralysis due to a massive and irreparable cuff tear, severe fracture sequelae, prosthetic revision in a cuff-deficient shoulder, and tumor surgery. Finally, surgeons must be aware that results are less predictable and complication/revision rates are higher in revision surgery.

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Year:  2005        PMID: 15726075     DOI: 10.1016/j.jse.2004.10.006

Source DB:  PubMed          Journal:  J Shoulder Elbow Surg        ISSN: 1058-2746            Impact factor:   3.019


  230 in total

1.  The clinical and radiographical results of reverse total shoulder arthroplasty with eccentric glenosphere.

Authors:  Naoko Mizuno; Patrick J Denard; Patric Raiss; Gilles Walch
Journal:  Int Orthop       Date:  2012-04-26       Impact factor: 3.075

Review 2.  Scapular notching: Recognition and strategies to minimize clinical impact.

Authors:  Gregory P Nicholson; Eric J Strauss; Seth L Sherman
Journal:  Clin Orthop Relat Res       Date:  2011-09       Impact factor: 4.176

Review 3.  Grammont's idea: The story of Paul Grammont's functional surgery concept and the development of the reverse principle.

Authors:  Emmanuel Baulot; François Sirveaux; Pascal Boileau
Journal:  Clin Orthop Relat Res       Date:  2011-09       Impact factor: 4.176

4.  A history of reverse total shoulder arthroplasty.

Authors:  Evan L Flatow; Alicia K Harrison
Journal:  Clin Orthop Relat Res       Date:  2011-09       Impact factor: 4.176

Review 5.  Reverse total shoulder arthroplasty-from the most to the least common complication.

Authors:  Mazda Farshad; Christian Gerber
Journal:  Int Orthop       Date:  2010-09-25       Impact factor: 3.075

6.  Implant Design Variations in Reverse Total Shoulder Arthroplasty Influence the Required Deltoid Force and Resultant Joint Load.

Authors:  Joshua W Giles; G Daniel G Langohr; James A Johnson; George S Athwal
Journal:  Clin Orthop Relat Res       Date:  2015-08-27       Impact factor: 4.176

7.  Expanding roles for reverse shoulder arthroplasty.

Authors:  Peter N Chalmers; Jay D Keener
Journal:  Curr Rev Musculoskelet Med       Date:  2016-03

8.  Short to mid-term results of stemless reverse shoulder arthroplasty in a selected patient population compared to a matched control group with stem.

Authors:  Philipp Moroder; Lukas Ernstbrunner; Christine Zweiger; Maximilian Schatz; Gerd Seitlinger; Robert Skursky; Johannes Becker; Herbert Resch; Rolf Michael Krifter
Journal:  Int Orthop       Date:  2016-07-20       Impact factor: 3.075

9.  Benefits of a metallic lateralized baseplate prolonged by a long metallic post in reverse shoulder arthroplasty to address glenoid bone loss.

Authors:  Philippe Valenti; Johanna Sekri; Jean Kany; Imen Nidtahar; Jean-David Werthel
Journal:  Int Orthop       Date:  2018-11-30       Impact factor: 3.075

10.  Glenoid bone loss in primary and revision shoulder arthroplasty.

Authors:  Amar Malhas; Abbas Rashid; Dave Copas; Steve Bale; Ian Trail
Journal:  Shoulder Elbow       Date:  2016-05-06
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