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Orthopaedic Proceedings
Vol. 88-B, Issue SUPP_II | Pages 216 - 216
1 May 2006
zu Reckendorf GM Roux J Allieu Y
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Reconstruction of deficient bone stock during total elbow arthroplasty in rheumatoid arthritis represents a challenge for the surgeon. Fracture and osteolysis of the olecranon process is a very rare condition in rheumatoid arthritis. The consequence of a deficient olecranon is an instable and painful elbow. We report a case of successful olecranon reconstruction with bone graft associated to total elbow arthroplasty with a 8 years follow up and discuss surgical aspects.

This case concerns a 44 years old woman with a very severe rheumatoid arthritis. She complains of pain and instability of her right elbow. X-rays show fracture and major osteolysis of the olecranon process with only some persistent bone at the insertion of the triceps tendon. The humeral condyles were subluxated posteriorly.

We performed a total elbow replacement with a GSB3 implant and reconstruction of the olecranon with two cancellous iliac bone strut fixed by 2.7 diameter screws to the proximal ulna. The triceps tendon with remnant olecranon bone chips was secured to the bone graft by tension band wiring. Postoperatively, the elbow was immobilized for 3 weeks.

With a follow up of more than 8 years the elbow is pain free with excellent function. The active range of motion of flexion – extension is 140° / −20°. The elbow is stable and triceps function is very satisfying authorizing the use of crutches. X-rays show good bony integration of the reconstructed olecranon process and no signs of loosening of the GSB3 implant.

The literature concerning olecranon reconstruction during total elbow arthroplasty in rheumatoid patients is very poor. Kamineni and Morrey reported on one case of olecranon reconstruction with strut allograft in revision total elbow arthroplasty with an unsatisfying result. Their fixation technique was different. We prefer an autograft whenever it is possible and we recommend our fixation technique using screws and tension band wiring.


Orthopaedic Proceedings
Vol. 87-B, Issue SUPP_II | Pages 117 - 118
1 Apr 2005
Chamas M Goubier J Coulet B zu Reckendorf GM Thaury M Allieu Y
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Purpose: Functional outcome after shoulder arthrodesis was evaluated to assess indications for the treatment of posttraumatic partial and total brachial plexus paralysis in adults.

Material and methods: Twenty-seven patients who underwent glenohumeral arthrodesis for posttraumatic brachial plexus paralysis were reviewed. Eleven had radicular paralysis (C5, C6 and C5, C6, C7) and sixteen total paralysis. All patients recovered active elbow flexion. Shoulder reinnervation had failed in eleven patients. Before the arthrodesis, 22 patients could no use their paralysed limb. Mean time between direct neurological surgery and arthrodesis was 30 months for partial paralyses and 20 months for total paralyses. Glenohumeal screw fixation was used for the arthrodesis which was associated with an external fixation in 21.

Results: Mean postoperative follow-up was 70 months. There were two cases of non-union which fused after revision and three cases of humerus fracture which occurred during the first six months after surgery. Pain related to inferior subluxation improved in six patients. There was no significant difference between the two groups for position of the fusion, or postoperative active motion (60° flexion, 60° abduction, 45° internal rotation and 7 to −9° external rotation). There was a significant difference in force which was greater for superior paralyses (11 kgf versus 7 kgf in flexion, 12 kfg versus 7 kgf in abduction, 6 kgf versus 2 kgf in external rotation and 11 kgf versus 4 kgf in internal rotation). The same was true for hand movement. The differences were statistically correlated with force of the pectoralis major.

Conclusion: Glenohumeral arthrodesis provides significant improvement in function in patients with supraclavicular brachial plexus paralysis, even with a paralytic hand. Arthrodesis also allows reorienting surgical reinnervation to other functions such as hand movement. Shoulder force and hand movement are directly correlated with force of the pectoralis major.