PubMed Health⌕ Search

PubMed · 15826615

Where to split plaster casts.

Abstract

Plaster casts are often split to accommodate swelling following injury. This is not influenced by the axis of the split. The aim of this study was to compare the mechanical properties of plasters split along different axes. Full plasters were applied to mannequin forearms, and then split along dorsal, volar, radial or ulnar sides. Following this the plasters were loaded in a dorsal direction. We found that of all the axes tested, the dorsal split was the best for maintaining fracture reduction (p = 0.001).

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Dominic M Nielsen, David M Ricketts. 2005. Where to split plaster casts.. https://doi.org/10.1016/j.injury.2004.11.021

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Ultrasound: a helpful technique in the analysis of congenital vertical talus. A case report.

Congenital vertical talus is a rare condition. In newborns, the diagnosis is evident in severe forms, but it can be difficult to confirm in mild ones. Non-ossified tarsal navicular cannot be visualized on standard roentgenograms until it is ossified. This work demonstrates that ultrasound is helpful in the early diagnosis of congenital vertical talus and in the evaluation of the therapeutic concept and effects.

Casts, Surgical↗

Above and below-the-elbow plaster casts for distal forearm fractures in children. A randomized controlled trial.

BACKGROUND: Closed fractures of the distal third of the forearm are the most common fractures of childhood, but the method of immobilization after closed reduction is controversial. This study was undertaken to determine whether below-the-elbow casts are as effective as above-the-elbow casts in immobilizing these types of fractures and to identify patient and treatment considerations that are related to loss of reduction. METHODS: We designed a blinded, randomized, controlled trial. The criteria for reduction and remanipulation were set a priori. The primary outcome measure was fracture immobilization as reflected by reangulation in the cast and by the need for remanipulation. Exploratory analysis with use of stepwise logistic regression analysis was undertaken to search for factors predictive of loss of reduction. RESULTS: A total of 102 children were enrolled in the study and were allocated to two groups: the above-the-elbow cast group (fifty-six children) and the below-the-elbow cast group (forty-six children). The mean age was 8.6 years, and sixty-one patients were boys. The groups did not differ with respect to the initial fracture angulation, postreduction angulation, reangulation during cast immobilization, and angulation of the fracture at the time of cast removal. In the above-the-elbow cast group, twenty-three (42%) of fifty-five children with adequate radiographs met the criteria for remanipulation compared with fourteen (31%) of forty-five children with adequate radiographs in the below-the-elbow cast group (p = 0.27); only four of these thirty-seven children actually underwent remanipulation. Children with fractures of both the radius and ulna (p = 0.01) and those with residual angulation after reduction (p = 0.0001) were at the highest risk of meeting the criteria for remanipulation. The rates of complications related to the cast did not differ between the groups. CONCLUSIONS: Below-the-elbow casts perform as well as above-the-elbow casts in maintaining reduction of fractures in the distal third of the forearm in children, and the complication rates are similar. Factors that are associated with a higher risk of loss of reduction include combined radial and ulnar fractures and residual angulation of the fracture after the initial reduction.

Casts, Surgical↗

Ponseti technique for the correction of idiopathic clubfeet presenting up to 1 year of age. A preliminary study in children with untreated or complex deformities.

INTRODUCTION: The aim of this study is to evaluate the effectiveness of the Ponseti method in children presenting before 1 year of age with either untreated or complex (initially treated unsuccessfully by other conservative methods) idiopathic clubfeet. PATIENTS AND METHODS: The authors report 134 feet of 92 patients with Dimeglio grade 2, 3, or 4 deformities treated with the Ponseti method. Twenty-four percent of feet were of complex deformities at initial presentation to the authors' clinics. RESULTS: At a mean follow-up of 46 months (range 24-89) we avoided joint release surgery in 97% of feet. Sixty-seven percent required a percutaneous tenotomy of the Achilles tendon. Relapse rate was 31% (41 feet). We treated 2 relapses by restarting the use of orthosis, 17 with re-casting, 18 with anterior tibial tendon transfer following a second relapse, and 4 feet with extensive joint surgery. Compliance with the use of orthosis was identified as the most important risk factor (P<0.0001) for relapses. Previous unsuccessful treatment attempts by other conservative methods did not adversely affect the results unless the cases had iatrogenic deformities. Cases with iatrogenic deformities from previous treatment had a significantly increased risk of non-compliance and relapse. Experience of the treating surgeon and cast complications were also related to relapses. CONCLUSION: Our results show that the Ponseti technique is reproducible and effective in children at least up to 12 months of age. It can also produce good correction in children presenting with complex idiopathic deformities. Therefore, extensive joint releases should not be considered immediately in such cases. The treating surgeon should be meticulous in using the technique and ensure compliance to foot abduction brace in order to avoid recurrences.

Casts, Surgical↗