The risk of articular penetration during tibial nailing is well known, but the incidence of unrecognised damage to joint cartilage has not been described. We have identified this complication in the treatment of tibial fractures, described the
Although the importance of lateral femoral wall
integrity is increasingly being recognised in the treatment of intertrochanteric
fracture, little attention has been put on the development of a
secondary post-operative fracture of the lateral wall. Patients
with post-operative fractures of the lateral wall were reported
to have high rates of re-operation and complication. To date, no
predictors of post-operative lateral wall fracture have been reported.
In this study, we investigated the reliability of lateral wall thickness
as a predictor of lateral wall fracture after dynamic hip screw
(DHS) implantation. A total of 208 patients with AO/OTA 31-A1 and -A2 classified
intertrochanteric fractures who received internal fixation with
a DHS between January 2003 and May 2012 were reviewed. There were
103 men and 150 women with a mean age at operation of
78 years (33 to 94). The mean follow-up was 23 months (6 to 83).
The right side was affected in 97 patients and the left side in
111. Clinical information including age, gender, side, fracture
classification, tip–apex distance, follow-up time, lateral wall
thickness and outcome were recorded and used in the statistical
analysis. Fracture classification and lateral wall thickness significantly
contributed to post-operative lateral wall fracture (both p <
0.001). The lateral wall thickness threshold value for risk of developing
a secondary lateral wall fracture was found to be 20.5 mm. To our knowledge, this is the first study to investigate the
risk factors of post-operative lateral wall fracture in intertrochanteric
fracture. We found that lateral wall thickness was a reliable predictor
of post-operative lateral wall fracture and conclude that intertrochanteric
fractures with a lateral wall thickness <
20.5 mm should not
be treated with DHS alone. Cite this article:
Percutaneous stabilisation of tibial fractures by locking plates has become an accepted form of osteosynthesis. A potential disadvantage of this technique is the risk of damage to the neurovascular bundles in the anterior and peroneal compartments. Our aim in this anatomical study was to examine the relationship of the deep peroneal nerve to a percutaneously-inserted Less Invasive Stabilisation System tibial plate in the lower limbs of 18 cadavers. Screws were inserted through stab incisions. The neurovascular bundle was dissected to reveal its relationship to the plate and screws. In all cases, the deep peroneal nerve was in direct contact with the plate between the 11th and the 13th holes. In ten specimens the nerve crossed superficial to the plate, in six it was interposed between the plate and the bone and in the remaining two specimens it coursed at the edge of the plate. Percutaneous insertion of plates with more than ten holes is not recommended because of the risk of injury to the neurovascular structures. When longer plates are required we suggest distal exposure so that the neurovascular bundle may be displayed and protected.