The most common injury in rugby resulting in
spinal cord injury (SCI) is cervical facet dislocation. We report
on the outcome of a series of 57 patients with acute SCI and facet
dislocation sustained when playing rugby and treated by reduction
between 1988 and 2000 in Conradie Hospital, Cape Town. A total of
32 patients were completely paralysed at the time of reduction.
Of these 32, eight were reduced within four hours of injury and
five of them made a full recovery. Of the remaining 24 who were
reduced after four hours of injury, none made a full recovery and only
one made a partial recovery that was useful. Our results suggest
that low-velocity trauma causing SCI, such as might occur in a rugby
accident, presents an opportunity for secondary prevention of permanent
SCI. In these cases the permanent damage appears to result from
secondary injury, rather than primary mechanical spinal cord damage.
In common with other central nervous system injuries where ischaemia
determines the outcome, the time from injury to reduction, and hence
reperfusion, is probably important. In order to prevent permanent neurological damage after rugby
injuries, cervical facet dislocations should probably be reduced
within four hours of injury.
We describe a case of type-I Arnold-Chiari malformation in a 27-year-old woman who presented on two separate occasions with an apparent whiplash injury. She developed debilitating symptoms after two apparently
Osteolysis, secondary to local and systemic physiological effects, is a major challenge in total hip arthroplasty (THA). While osteolytic defects are commonly observed in long-term follow-up, how such lesions alter the distribution of stress is unclear. The aim of this study was to quantitatively describe the biomechanical implication of such lesions by performing subject-specific finite-element (FE) analysis on patients with osteolysis after THA. A total of 22 hemipelvis FE models were constructed in order to assess the transfer of load in 11 patients with osteolysis around the acetabular component of a THA during slow walking and a fall onto the side. There were nine men and two women. Their mean age was 69 years (55 to 81) at final follow-up. Changes in peak stress values and loads to fracture in the presence of the osteolytic defects were measured.Aims
Patients and Methods
We report the outcome of 39 patients who underwent
a modified Pauwels’ intertrochanteric osteotomy for nonunion of
a femoral neck fracture following failed osteosynthesis. There were
31 men and eight women with a mean age of 47.2 years (34 to 59).
By Pauwels’ classification, there were 11 Type II fractures and
28 Type III fractures. The mean follow-up was 7.9 years (2 to 19).
In the 11 patients whose initial treatment had been osteotomy, union was
achieved in nine (81.8%). In 28 patients whose initial treatment
had been with a lag screw or a dynamic hip screw, union was achieved
in 27 (96.4%). Limb lengths were equalised in 14 of 16 patients
(87.5%) with pre-operative shortening. The mean neck-shaft angle
improved significantly from 100.5° (80° to 120°) to 131.6° (120°
to 155°) (p = 0.004). The mean modified Harris hip score was 85.6
points (70 to 97) and the mean modified Merle d’Aubigné score was
14.3 (11 to 18). Good to excellent functional outcomes were achieved
in 32 patients (88.8%). A modified Pauwels’ intertrochanteric osteotomy
is a reliable method of treating ununited fractures of the femoral neck
following failed osteosynthesis: coxa vara and shortening can also
simultaneously be addressed. Cite this article