We aimed to determine whether cemented hemiarthroplasty
is associated with a higher post-operative mortality and rate of
re-operation when compared with uncemented hemiarthroplasty. Data
on 19 669 patients, who were treated with a hemiarthroplasty following
a fracture of the hip in a nine-year period from 2002 to 2011, were extracted
from NHS Scotland’s acute admission database (Scottish Morbidity
Record, SMR01). We investigated the rate of mortality at day 0,
1, 7, 30, 120 and one-year post-operatively using 12 case-mix variables
to determine the independent effect of the method of fixation. At
day 0, those with a cemented hemiarthroplasty had a higher rate
of mortality (p <
0.001) compared with those with an uncemented
hemiarthroplasty, equivalent to one extra death per 424 procedures.
By day one this had become one extra death per 338 procedures. Increasing
age and the five-year co-morbidity score were noted as independent
risk factors. By day seven, the cumulative rate of mortality was
less for cemented hemiarthroplasty though this did not reach significance
until day 120. The rate of re-operation was significantly higher
for uncemented hemiarthroplasty. Despite adjusting for 12 confounding
variables, these only accounted for 15% of the observed variability. The debate about the choice of the method of fixation for a hemiarthroplasty
with respect to the rate of mortality or the risk of re-operation
may be largely superfluous. Our results suggest that uncemented
hemiarthroplasties may have a role to play in elderly patients with
significant co-morbid disease. Cite this article:
The June 2014 Trauma Roundup360 looks at: BMP use increasing wound complication rates in trauma surgery; can we predict re-admission in trauma?; humeral bundle nailing; how best to treat high-angle femoral neck fractures?; hyperglycaemia and infection; simultaneous soft-tissue and bony repair in terrible triad injuries; metaphyseal malunion in the forearm leading to function restrictions; delayed fixation of the distal radius: not a bad option; and fasciotomies better with shoelaces
Damage to the cartilage of the distal radioulnar
joint frequently leads to pain and limitation of movement, therefore repair
of this joint cartilage would be highly desirable. The purpose of
this study was to investigate the fixation of scaffold in cartilage
defects of this joint as part of matrix-assisted regenerative autologous
cartilage techniques. Two
Femoral revision after cemented total hip replacement
(THR) might include technical difficulties, following essential cement
removal, which might lead to further loss of bone and consequently
inadequate fixation of the subsequent revision stem. Femoral impaction allografting has been widely used in revision
surgery for the acetabulum, and subsequently for the femur. In combination
with a primary cemented stem, impaction grafting allows for femoral
bone restoration through incorporation and remodelling of the impacted
morsellized bone graft by the host skeleton. Cavitary bone defects
affecting meta-physis and diaphysis leading to a wide femoral shaft,
are ideal indications for this technique. Cancellous allograft bone
chips of 1 mm to 2 mm size are used, and tapered into the canal
with rods of increasing diameters. To impact the bone chips into
the femoral canal a prosthesis dummy of the same dimensions of the definitive
cemented stem is driven into the femur to ensure that the chips
are very firmly impacted. Finally, a standard stem is cemented into
the neo-medullary canal using bone cement. To date several studies have shown favourable results with this
technique, with some excellent long-term results reported in independent
clinical centres worldwide. Cite this article:
We report our experience with glenohumeral arthrodesis
as a salvage procedure for epilepsy-related recurrent shoulder instability.
A total of six patients with epilepsy underwent shoulder fusion
for recurrent instability and were followed up for a mean of 39 months
(12 to 79). The mean age at the time of surgery was 31 years (22
to 38). Arthrodesis was performed after a mean of four previous
stabilisation attempts (0 to 11) in all but one patient in whom
the procedure was used as a primary treatment. All patients achieved
bony union, with a mean time to fusion of 2.8 months (2 to 7). There
were no cases of re-dislocation. One revision was undertaken for
loosening of the metalwork, and then healed satisfactorily. An increase
was noted in the mean subjective shoulder value, which improved
from 37 (5 to 50) pre-operatively to 42 (20 to 70) post-operatively
although it decreased in two patients. The mean Oxford shoulder
instability score improved from 13 pre-operatively (7 to 21) to
24 post-operatively (13 to 36). In our series, glenohumeral arthrodesis
eliminated recurrent instability and improved functional outcome. Fusion
surgery should therefore be considered in this patient population.
However, since the majority of patients are young and active, they
should be comprehensively counselled pre-operatively given the functional
deficit that results from the procedure. Cite this article:
The June 2014 Knee Roundup360 looks at: acute repair preferable in hamstring ruptures; osteoarthritis a given in ACL injury, even with reconstruction?; chicken and egg: patellofemoral dysfunction and hip weakness; meniscal root tears as bad as we thought; outcomes in the meniscus; topical NSAIDs have a measurable effect on synovitis; nailing for tibial peri-prosthetic fracture.
We carried out a systematic review of the literature
to evaluate the evidence regarding the clinical results of the Ilizarov
method in the treatment of long bone defects of the lower limbs. Only 37 reports (three non-randomised comparative studies, one
prospective study and 33 case-series) met our inclusion criteria.
Although several studies were unsatisfactory in terms of statistical
heterogeneity, our analysis appears to show that the Ilizarov method
of distraction osteogenesis significantly reduced the risk of deep
infection in infected osseous lesions (risk ratio 0.14 (95% confidence
interval (CI) 0.10 to 0.20), p <
0.001). However, there was a
rate of re-fracture of 5% (95% CI 3 to 7), with a rate of neurovascular
complications of 2.2% (95% CI 0.3 to 4) and an amputation rate of
2.9% (95% CI 1.4 to 4.4).The data was generally not statistically
heterogeneous. Where tibial defects were >
8 cm, the risk of re-fracture
increased (odds ratio 3.7 (95% CI 1.1 to 12.5), p = 0.036). The technique is demanding for patients, illustrated by the voluntary
amputation rate of 1.6% (95% CI 0 to 3.1), which underlines the
need for careful patient selection. Cite this article:
The sternoclavicular joint (SCJ) is a pivotal
articulation in the linked system of the upper limb girdle, providing
load-bearing in compression while resisting displacement in tension
or distraction at the manubrium sterni. The SCJ and acromioclavicular
joint (ACJ) both have a small surface area of contact protected
by an intra-articular fibrocartilaginous disc and are supported
by strong extrinsic and intrinsic capsular ligaments. The function
of load-sharing in the upper limb by bulky periscapular and thoracobrachial
muscles is extremely important to the longevity of both joints.
Ligamentous and capsular laxity changes with age, exposing both
joints to greater strain, which may explain the rising incidence
of arthritis in both with age. The incidence of arthritis in the
SCJ is less than that in the ACJ, suggesting that the extrinsic
ligaments of the SCJ provide greater stability than the coracoclavicular
ligaments of the ACJ. Instability of the SCJ is rare and can be difficult to distinguish
from medial clavicular physeal or metaphyseal fracture-separation:
cross-sectional imaging is often required. The distinction is important
because the treatment options and outcomes of treatment are dissimilar,
whereas the treatment and outcomes of ACJ separation and fracture
of the lateral clavicle can be similar. Proper recognition and treatment
of traumatic instability is vital as these injuries may be life-threatening.
Instability of the SCJ does not always require surgical intervention.
An accurate diagnosis is required before surgery can be considered,
and we recommend the use of the Stanmore instability triangle. Most
poor outcomes result from a failure to recognise the underlying
pathology. There is a natural reluctance for orthopaedic surgeons to operate
in this area owing to unfamiliarity with, and the close proximity
of, the related vascular structures, but the interposed sternohyoid
and sternothyroid muscles are rarely injured and provide a clear
boundary to the medial retroclavicular space, as well as an anatomical
barrier to unsafe intervention. This review presents current concepts of instability of the SCJ,
describes the relevant surgical anatomy, provides a framework for
diagnosis and management, including physiotherapy, and discusses
the technical challenges of operative intervention. Cite this article:
Valgus high tibial osteotomy for osteoarthritis of the medial compartment of the knee can be performed using medial opening- and lateral closing-wedge techniques. The latter have been thought to offer greater initial stability. We measured and compared the stability of opening- and closing-wedge osteotomies fixed by TomoFix plates using radiostereometry in a series of 42 patients in a prospective, randomised clinical trial. There were no differences between the opening- and closing-wedge groups in the time to regain knee function and full weight-bearing. Pain and knee function were significantly improved in both groups without any differences between them. All the osteotomies united within one year. Radiostereometry showed no clinically relevant movement of bone or differences between either group. Medial opening-wedge high tibial osteotomy secured by a TomoFix plate offers equal stability to a lateral closing-wedge technique. Both give excellent initial stability and provide significantly improved knee function and reduction in pain, although the opening-wedge technique was more likely to produce the intended correction.
Compression and absolute stability are important in the management of intra-articular fractures. We compared tension band wiring with plate fixation for the treatment of fractures of the olecranon by measuring compression within the fracture. Identical transverse fractures were created in models of the ulna. Tension band wires were applied to ten fractures and ten were fixed with Acumed plates. Compression was measured using a Tekscan force transducer within the fracture gap. Dynamic testing was carried out by reproducing cyclical contraction of the triceps of 20 N and of the brachialis of 10 N. Both methods were tested on each sample. Paired The mean compression for plating was 819 N ( During simulated movements, the mean compression was reduced in both groups, with tension band wiring at −14 N ( Pre-contoured plates provide significantly greater compression than tension bands in the treatment of transverse fractures of the olecranon, both over the whole fracture and specifically at the articular side of the fracture. In tension band wiring the overall compression was reduced and articular compression remained negligible during simulated contraction of the triceps, challenging the tension band principle.
The August 2012 Trauma Roundup360 looks at: pelvic fractures, thromboembolism and the Japanese; venous thromboembolism risk after pelvic and acetabular fractures; the displaced clavicular fracture; whether to use a nail or plate for the displaced fracture of the distal tibia; the dangers of snowboarding; how to predict the outcome of lower leg blast injuries; compressive external fixation for the displaced patellar fracture; broken hips in Morocco; and spinal trauma in mainland China.
Small animal models of fracture repair primarily investigate
indirect fracture healing via external callus formation. We present
the first described rat model of direct fracture healing. A rat tibial osteotomy was created and fixed with compression
plating similar to that used in patients. The procedure was evaluated
in 15 cadaver rats and then Objectives
Methods
Operative fixation is the treatment of choice for a rupture of the distal tendon of biceps. A variety of techniques have been described including transosseous sutures and suture anchors. The poor quality of the bone of the radial tuberosity might affect the load to failure of the tendon repair in early rehabilitation. The aim of this study was to determine the loads to failure of different
The purpose of this study was to assess the stability of a developmental pelvic reconstruction system which extends the concept of triangular osteosynthesis with fixation anterior to the lumbosacral pivot point. An unstable Tile type-C fracture, associated with a sacral transforaminal fracture, was created in synthetic pelves. The new concept was compared with three other constructs, including bilateral iliosacral screws, a tension band plate and a combined plate with screws. The pubic symphysis was plated in all cases. The pelvic ring was loaded to simulate single-stance posture in a cyclical manner until failure, defined as a displacement of 2 mm or 2°. The screws were the weakest construct, failing with a load of 50 N after 400 cycles, with maximal translation in the craniocaudal axis of 12 mm. A tension band plate resisted greater load but failure occurred at 100 N, with maximal rotational displacement around the mediolateral axis of 2.3°. The combination of a plate and screws led to an improvement in stability at the 100 N load level, but rotational failure still occurred around the mediolateral axis. The pelvic reconstruction system was the most stable construct, with a maximal displacement of 2.1° of rotation around the mediolateral axis at a load of 500 N.
The use of plate-and-cable constructs to treat periprosthetic fractures around a well-fixed femoral component in total hip replacements has been reported to have high rates of failure. Our aim was to evaluate the results of a surgical treatment algorithm to use these lateral constructs reliably in Vancouver type-B1 and type-C fractures. The joint was dislocated and the stability of the femoral component was meticulously evaluated in 45 type-B1 fractures. This led to the identification of nine (20%) unstable components. The fracture was considered to be suitable for single plate-and-cable fixation by a direct reduction technique if the integrity of the medial cortex could be restored. Union was achieved in 29 of 30 fractures (97%) at a mean of 6.4 months (3 to 30) in 29 type-B1 and five type-C fractures. Three patients developed an infection and one construct failed. Using this algorithm plate-and-cable constructs can be used safely, but indirect reduction with minimal soft-tissue damage could lead to shorter times to union and lower rates of complications.
We examined the association between patient-related factors and the risk of initial, short- and long-term implant failure after primary total hip replacement. We used data from the Danish Hip Arthroplasty Registry between 1 January 1995 and 31 December 2002, which gave us a total of 36 984 patients. Separate analyses were carried out for three follow-up periods: 0 to 30 days, 31 days to six months (short term), and six months to 8.6 years after primary total hip replacement (long term). The outcome measure was defined as time to failure, which included re-operation with open surgery for any reason. Male gender and a high Charlson co-morbidity index score were strongly predictive for failure, irrespective of the period of follow-up. Age and diagnosis at primary total hip replacement were identified as time-dependent predictive factors of failure. During the first 30 days after primary total hip replacement, an age of 80 years or more and hip replacement undertaken as a sequela of trauma, for avascular necrosis or paediatric conditions, were associated with an increased risk of failure. However, during six months to 8.6 years after surgery, being less than 60 years old was associated with an increased risk of failure, whereas none of the diagnoses for primary total hip replacement appeared to be independent predictors.
We studied, ten patients (11 elbows) who had
undergone 14 allograft-prosthesis composite reconstructions following
failure of a previous total elbow replacement with massive structural
bone loss. There were nine women and one man with a mean age of
64 years (40 to 84), who were reviewed at a mean of 75 months (24
to 213). One patient developed a deep infection after 26 months
and had the allograft-prosthesis composite removed, and two patients
had mild pain. The median flexion-extension arc was 100° (95% confidence
interval (CI) 76° to 124°). With the exception of the patient who
had the infected failure, all the patients could use their elbows
comfortably without splints or braces for activities of daily living.
The mean Mayo Elbow Performance Index improved from 9.5 (95% CI
4.4 to 14.7) pre-operatively to 74 (95% CI 62.4 to 84.9) at final
review. Radiologically, the rate of partial resorption was similar in
the humeral and ulnar allografts (three of six and four of eight,
respectively; p >
0.999). The patterns of resorption, however, were
different. Union at the host-bone-allograft junction was also different
between the humeral and ulnar allografts (one of six and seven of
eight showing union, respectively; p = 0.03). At medium-term follow-up, allograft-prosthesis composite reconstruction
appears to be a useful salvage technique for failed elbow replacements
with massive bone loss. The effects of allograft resorption and
host-bone-allograft junctional union on the longevity of allograft-prosthesis
composite reconstruction, however, remain unknown, and it is our
view that these patients should remain under long-term regular review.
We evaluated the biomechanical properties of two different methods of fixation for unstable fractures of the proximal humerus. Biomechanical testing of the two groups, locking plate alone (LP), and locking plate with a fibular strut graft (LPSG), was performed using seven pairs of human cadaveric humeri. Cyclical loads between 10 N and 80 N at 5 Hz were applied for 1 000 000 cycles. Immediately after cycling, an increasing axial load was applied at a rate of displacement of 5 mm/min. The displacement of the construct, maximum failure load, stiffness and mode of failure were compared. The displacement was significantly less in the LPSG group than in the LP group (p = 0.031). All maximum failure loads and measures of stiffness in the LPSG group were significantly higher than those in the LP group (p = 0.024 and p = 0.035, respectively). In the LP group, varus collapse and plate bending were seen. In the LPSG group, the humeral head cut out and the fibular strut grafts fractured. No broken plates or screws were seen in either group. We conclude that strut graft augmentation significantly increases both the maximum failure load and the initial stiffness of this construct compared with a locking plate alone.
Controversy surrounds the management of displaced
three- and four-part fractures of the proximal humerus. The percutaneous
Resch technique of stabilisation involves minimal soft-tissue dissection
and a reduced risk of stiffness and avascular necrosis. However,
it requires a second operation to remove Kirschner wires and the
humeral block. We describe a modification of this technique that
dispenses with the need for this second operation and relies on
a sequential pattern of screw placement. We report the outcome of
32 three- or four-part fractures of the proximal humerus treated
in this way at a mean follow-up of 3.8 years (2 to 8)). There were
14 men and 18 women with a mean age of 56 years (28 to 83). At final
follow-up the mean Oxford shoulder scores were 38 (31 to 44) and
39 (31 to 42), and the mean Constant scores were 79 (65 to 92) and
72 (70 to 80) for three- and four-part fractures, respectively. We
further analysed the results in patients aged <
60 years with
high-energy fractures and those aged ≥ 60 years with osteoporotic
fractures. There were no cases of nonunion or avascular necrosis. The results were good and comparable to those previously reported
for the Resch technique and other means of fixation for proximal
humeral fractures. We would recommend this modification of the technique
for the treatment of displaced three-part and four-part fractures
in patients both younger and older than 60 years of age.