Large femoral heads have been used with increasing
frequency over the last decade. The prime reason is likely the effect
of large heads on stability. The larger head neck ratio, combined
with the increased jump distance of larger heads result in a greater
arc of impingement free motion, and greater resistance to dislocation
in a provocative position. Multiple studies have demonstrated clear
clinical efficacy in diminishing dislocation rates with the use
of large femoral heads. With crosslinked polyethylene, wear has
been shown to be equivalent between larger and smaller heads. However,
the stability advantages of increasing diameter beyond 38 mm have
not been clearly demonstrated. More importantly, recent data implicates
large heads in the increasing prevalence of groin pain and psoas impingement.
There are clear benefits with larger femoral head diameters, but
the advantages of diameters beyond 38 mm have not yet been demonstrated
clinically.
Surgical interventions consisting of internal
fixation (IF) or total hip replacement (THR) are required to restore
patient mobility after hip fractures. Conventionally, this decision
was based solely upon the degree of fracture displacement. However,
in the last ten years, there has been a move to incorporate patient
characteristics into the decision making process. Research demonstrating
that joint replacement renders superior functional results when compared
with IF, in the treatment of displaced femoral neck fractures, has
swayed the pendulum in favour of THR. However, a high risk of dislocation
has always been the concern. Fortunately, there are newer technologies
and alternative surgical approaches that can help reduce the risk
of dislocation. The authors propose an algorithm for the treatment
of femoral neck fractures: if minimally displaced, in the absence
of hip joint arthritis, IF should be performed; if arthritis is
present, or the fracture is displaced, then THR is preferred. Cite this article:
We present a case of early retrieval of an Oxinium femoral head and corresponding polyethylene liner where there was significant surface damage to the head and polyethylene. The implants were retrieved at the time of revision surgery to correct leg-length discrepancy just 48 hours after the primary hip replacement. Appropriate analysis of the retrieved femoral head demonstrated loss of the Oxinium layer with exposure of the underlying substrate and transfer of titanium from the acetabular shell at the time of a reduction of the index total hip replacement. In addition, the level of damage to the polyethylene was extensive despite only 48 hours The purpose of this report is to highlight the care that is required at the time of reduction, especially with these hard femoral counter-faces such as Oxinium. To our knowledge, the damage occurring at the time of reduction has not been previously reported following the retrieval of an otherwise well-functioning hip replacement.
Non-traumatic osteonecrosis of the femoral head
is a potentially devastating condition, the prevalence of which
is increasing. Many joint-preserving forms of treatment, both medical
and surgical, have been developed in an attempt to slow or reverse
its progression, as it usually affects young patients. However, it is important to evaluate the best evidence that is
available for the many forms of treatment considering the variation
in the demographics of the patients, the methodology and the outcomes
in the studies that have been published, so that it can be used
effectively. The purpose of this review, therefore, was to provide an up-to-date,
evidence-based guide to the management, both non-operative and operative,
of non-traumatic osteonecrosis of the femoral head. Cite this article:
The use of large-diameter metal-on-metal (MoM)
components in total hip arthroplasty (THA) is associated with an increased
risk of early failure due to adverse local tissue reaction to metal
debris (ARMD) in response to the release of metal ions from the
bearing couple and/or head-neck taper corrosion. The aim of this
paper was to present a review of the incidence and natural history
of ARMD and the forms of treatment, with a focus on the need for
and extent of resection or debulking of the pseudotumour. An illustrative
case report is presented of a patient with an intra-pelvic pseudotumour
associated with a large diameter MoM THA, which was treated successfully
with revision of the bearing surface to a dual mobility couple and
retention of the well-fixed acetabular and femoral components. The
pseudotumour was left Cite this article:
The purpose of this study was to compare the
amount of acetabular bone removed during hip resurfacing (HR) and cementless
total hip replacement (THR), after controlling for the diameter
of the patient’s native femoral head. Based on a power analysis,
64 consecutive patients (68 hips) undergoing HR or THR were prospectively
enrolled in the study. The following data were recorded intra-operatively:
the diameter of the native femoral head, the largest reamer used,
the final size of the acetabular component, the size of the prosthetic
femoral head and whether a decision was made to increase the size
of the acetabular component in order to accommodate a larger prosthetic femoral
head. Results were compared using two-sided, independent samples
Student’s
The ‘jumbo’ acetabular component is now commonly
used in acetabular revision surgery where there is extensive bone
loss. It offers high surface contact, permits weight bearing over
a large area of the pelvis, the need for bone grafting is reduced
and it is usually possible to restore centre of rotation of the
hip. Disadvantages of its use include a technique in which bone
structure may not be restored, a risk of excessive posterior bone
loss during reaming, an obligation to employ screw fixation, limited
bone ingrowth with late failure and high hip centre, leading to increased
risk of dislocation. Contraindications include unaddressed pelvic
dissociation, inability to implant the component with a rim fit,
and an inability to achieve screw fixation. Use in acetabulae with
<
50% bone stock has also been questioned. Published results
have been encouraging in the first decade, with late failures predominantly because
of polyethylene wear and aseptic loosening. Dislocation is the most
common complication of jumbo acetabular revisions, with an incidence
of approximately 10%, and often mandates revision. Based on published results,
a hemispherical component with an enhanced porous coating, highly
cross-linked polyethylene, and a large femoral head appears to represent
the optimum tribology for jumbo acetabular revisions. Cite this article:
Increased femoral head size may reduce dislocation rates following total hip replacement. The National Joint Registry for England and Wales has highlighted a statistically significant increase in the use of femoral heads ≥ 36 mm in diameter from 5% in 2005 to 26% in 2009, together with an increase in the use of the posterior approach. The aim of this study was to determine whether rates of dislocation have fallen over the same period. National data for England for 247 546 procedures were analysed in order to determine trends in the rate of dislocation at three, six, 12 and 18 months after operation during this time. The 18-month revision rates were also examined. Between 2005 and 2009 there were significant decreases in cumulative dislocations at three months (1.12% to 0.86%), six months (1.25% to 0.96%) and 12 months (1.42% to 1.11%) (all p <
0.001), and at 18 months (1.56% to 1.31%) for the period 2005 to 2008 (p <
0.001). The 18-month revision rates did not significantly change during the study period (1.26% to 1.39%, odds ratio 1.10 (95% confidence interval 0.98 to 1.24), p = 0.118). There was no evidence of changes in the coding of dislocations during this time. These data have revealed a significant reduction in dislocations associated with the use of large femoral head sizes, with no change in the 18-month revision rate.
Most published randomised controlled trials which
compare the rates of wear of conventional and cross-linked (XL) polyethylene
(PE) in total hip arthroplasty (THA) have described their use with
a cementless acetabular component. We conducted a prospective randomised study to assess the rates
of penetration of two distinct types of PE in otherwise identical
cemented all-PE acetabular components. A total of 100 consecutive patients for THA were randomised to
receive an acetabular component which had been either highly XL
then remelted or moderately XL then annealed. After a minimum of eight years follow-up, 38 hips in the XL group
and 30 hips in the annealed group had complete data (mean follow-up
of 9.1 years (7.6 to 10.7) and 8.7 years (7.2 to 10.2), respectively).
In the XL group, the steady state rate of penetration from one year
onwards was -0.0002 mm/year ( These results show that the yearly linear rate of femoral head
penetration can be significantly reduced by using a highly XLPE
cemented acetabular component. Cite this article:
We report patient-reported outcomes and complications
associated with contemporary periacetabular osteotomy (PAO) surgery
in treating symptomatic acetabular dysplasia and compare these outcomes
with total hip arthroplasty (THA) in patients with similar demographic
details. Two consecutive cohorts included patients between aged
18 to 40 years who had undergone either PAO (100 hips; 24 male,
76 female) or THA (55 hips; 18 male, 37 female). At a mean follow-up
of 5.9 years (2 to 13), there was significant improvement in the
modified Harris hip pain (p <
0.001, PAO and p <
0.001, THA),
function (p <
0.001, PAO and p = 0.001, THA), and total scores
(p <
0.001, PAO and p <
0.001, THA) within each cohort. There
were no significant differences in the clinical outcome scores between
the groups. Complication rates were low and similar in each cohort
(p = 0.68). Similar to THA, contemporary PAO surgery is a clinically
effective procedure that improves function and activity levels,
provides pain relief and is associated with an acceptable complication
rate. Cite this article:
Dislocation remains among the most common complications
of, and reasons for, revision of both primary and revision total
hip replacements (THR). Hence, there is great interest in maximising
stability to prevent this complication. Head size has been recognised
to have a strong influence on the risk of dislocation post-operatively.
As femoral head size increases, stability is augmented, secondary
to an increase in impingement-free range of movement. Larger head
sizes also greatly increase the ‘jump distance’ required for the
head to dislocate in an appropriately positioned cup. Level-one
studies support the use of larger diameter heads as they decrease
the risk of dislocation following primary and revision THR. Highly cross-linked
polyethylene has allowed us to increase femoral head size, without
a marked increase in wear. However, the thin polyethylene liners
necessary to accommodate larger heads may increase the risk of liner
fracture and larger heads have also been implicated in causing soft-tissue
impingement resulting in groin pain. Larger diameter heads also
impart larger forces on the femoral trunnion, which may contribute
to corrosion, metal release, and adverse local tissue reactions.
Alternative large bearings including large ceramic heads and dual
mobility bearings may mitigate some of these risks, and several
of these devices have been used with clinical success. Cite this article:
We have reviewed 70 Harris-Galante uncemented acetabular components implanted as hybrid hip replacements with cemented stems between 1991 and 1995 in 53 patients whose mean age was 40 years (19 to 49). The mean follow-up was for 13.6 years (12 to 16) with no loss to follow-up. We assessed the patients both clinically and radiologically. The mean Oxford hip score was 20 (12 to 46) and the mean Harris hip score 81 (37 to 100) at the final review. Radiologically, 27 hips (39%) had femoral osteolysis, 13 (19%) acetabular osteolysis, and 31 (44%) radiolucent lines around the acetabular component. Kaplan-Meier survival curves were constructed for the outcomes of revision of the acetabular component, revision of the component and polyethylene liner, and impending revision for progressive osteolysis. The cumulative survival for revision of the acetabular component was 94% (95% confidence interval 88.4 to 99.7), for the component and liner 84% (95% confidence interval 74.5 to 93.5) and for impending revision 55.3% (95% confidence interval 40.6 to 70) at 16 years. Uncemented acetabular components with polyethylene liners undergo silent lysis and merit regular long-term radiological review.
Previous studies of failure mechanisms leading
to revision total knee replacement (TKR) performed between 1986 and
2000 determined that many failed early, with a disproportionate
amount accounted for by infection and implant-associated factors
including wear, loosening and instability. Since then, efforts have
been made to improve implant performance and instruct surgeons in
best practice. Recently our centre participated in a multi-centre evaluation
of 844 revision TKRs from 2010 to 2011. The purpose was to report
a detailed analysis of failure mechanisms over time and to see if
failure modes have changed over the past 10 to 15 years. Aseptic
loosening was the predominant mechanism of failure (31.2%), followed
by instability (18.7%), infection (16.2%), polyethylene wear (10.0%),
arthrofibrosis (6.9%) and malalignment (6.6%). The mean time to
failure was 5.9 years (ten days to 31 years), 35.3% of all revisions
occurred at less than two years, and 60.2% in the first five years.
With improvements in implant and polyethylene manufacture, polyethylene
wear is no longer a leading cause of failure. Early mechanisms of
failure are primarily technical errors. In addition to improving
implant longevity, industry and surgeons must work together to decrease
these technical errors. All reports on failure of TKR contain patients
with unexplained pain who not infrequently have unmet expectations.
Surgeons must work to achieve realistic patient expectations pre-operatively,
and therefore, improve patient satisfaction post-operatively. Cite this article:
Arthritis of the hip in the young adult can be a disabling condition. Recent years have witnessed extensive research related to the management of this condition. This article reviews the current status with regard to aetiology, diagnosis and treatment of arthritis of the hip in the young adult.
There is little in the literature on the level
of participation in sports which patients undertake after total
hip replacement (THR). Our aims in this study were to determine
first, the level of sporting activity, second, the predictive factors
for returning to sporting activity, and third, the correlation between
participation in sports and satisfaction after THR. We retrospectively
identified 815 patients who had undergone THR between 1995 and 2005. All
were asked to complete a self-administered questionnaire regarding
their sporting activity. A total of 571 patients (71%) met the inclusion
criteria and completed the evaluation. At a mean follow-up of 9.8
years ( In conclusion, we found that most patients participate in sporting
activity after THR, regardless of the advice of their surgeon, and
that there is a correlation between the level of participation and
pre-operative function, motivation, duration of symptoms and post-operative
satisfaction. Cite this article:
We carried out a prospective randomised study designed to compare the penetration rate of acetabular polyethylene inserts of identical design but different levels of cross-linking at a minimum of four years follow-up. A total of 102 patients (102 hips) were randomised to receive either highly cross-linked Durasul, or contemporary Sulene polyethylene inserts at total hip replacement. A single blinded observer used the Martell system to assess penetration of the femoral head. At a mean follow-up of 4.9 years (4.2 to 6.1) the mean femoral head penetration rate was 0.025 mm/year (
Large ceramic femoral heads offer several advantages
that are potentially advantageous to patients undergoing both primary
and revision total hip replacement. Many high-quality studies have
demonstrated the benefit of large femoral heads in reducing post-operative instability.
Ceramic femoral heads may also offer an advantage in reducing polyethylene wear
that has been reported Cite this article: Bone Joint J 2013;95-B, Supple A:63–6.
The treatment of hip dysplasia should be customised
for patients individually based on radiographic findings, patient
age, and the patient’s overall articular cartilage status. In many
patients, restoration of hip anatomy as close to normal as possible
with a PAO is the treatment of choice. Cite this article: