Proximal Humeral fractures are common injuries that are difficult to treat satisfactorily despite the variety of operative and conservative treatment options that are available. To make any real sense of the literature concerning the treatment of these injuries, it is important that the tools that clinicians use to assess clinical outcomes accurately reflect each patient’s level of symptoms and function.
Despite advances in Locking Plate (LP) design, distal femoral fractures remain challenging injuries to treat especially in the elderly where approximately 15–30% develop nonunions secondary to failure of fixation. Aim: To establish the mechanisms of nonunion in our patient population using two different LP systems.
Grip strength, pinch grip, wrist flexion, wrist extension, radial deviation, ulnar deviation, pronation and supination all showed graded improvement in the year following fracture, achieving a mean range of 73% to 95% of function compared to the contralateral side at 12 months. Wrist flexion and ulnar deviation showed near maximum improvement by 6 months, whereas the other variables continued to show significant improvement between 6 and 12 months. Logistic regression analysis suggested that improvement in wrist extension at four months was the best predictor of a good outcome at one year.
Pain – visual analogue scale (VAS) (0 = no pain, 10 = worst pain ever). Overall function – patients’ perception – VAS (0 = no function, 100 = full function). Objective: Strength – grip and pinch – measured objectively as a percentage of the uninjured side. Range of Motion – Flexion, extension, pronation and supination – measured objectively as percentages of the uninjured side. For the purpose of this analysis, the fractures were divided into intra- and extra-articular fracture patterns based on the initial pre-operative X-rays.
Subjectively 75% of patients had an excellent result with a pain VAS score of 0–1/10 (mean 0.9 for extra-articular and 1.2 for intra-articular) and an overall function VAS score of 9–10/10 (mean 92% for extra-articular and 86% for intra-articular). Objective outcome measures were also very good. The results for the extra-articular group showed a mean grip strength of 85%, a mean pinch grip of 91%, a mean flexion of 82%, a mean extension of 88%, a mean pronation of 98% and a mean supination of 98%. The results for intra-articular fractures showed a mean grip strength of 80%, a mean pinch grip of 88%, a mean flexion of 78%, a mean extension of 83%, a mean pronation of 94% and a mean supination of 93%.
This study confirmed excellent functional results comparable with other methods of fixation for extra-articular fractures, but it also showed good results with the more complex intra-articular fractures.