The purpose of this prospective, randomised study
was to evaluate the clinical and radiological results comparing the
identical cemented or cementless NexGen total knee prostheses implanted
bilaterally in the same patient. Sequential simultaneous bilateral
total knee replacements were performed in 50 patients (100 knees).
There were 39 women and 11 men with a mean age of 58.4 years (51
to 67) who received a cemented prosthesis in one knee and a cementless
prosthesis in the other. The mean follow-up was 13.6 years (13 to
14). At final review, the mean Knee Society scores (96.2 (82 to
100)
We report the long-term survival of a prospective randomised consecutive series of 501 primary knee replacements using the press-fit condylar posterior cruciate ligament-retaining prosthesis. Patients received either cemented (219 patients, 277 implants) or cementless (177 patients, 224 implants) fixation. Altogether, 44 of 501 knees (8.8%) underwent revision surgery (24 cemented This single-surgeon series, with no loss to follow-up, provides reliable data of the revision rates of one of the most commonly-used total knee replacements. The survival of the press-fit condylar total knee replacement remained good at 15 years, irrespective of the method of fixation.
The June 2015 Knee Roundup360 looks at: Cruciate substituting
Our aim was to determine the success rate of repeated debridement and two-stage cementless revision arthroplasty according to the type of infected total hip replacement (THR). We enrolled 294 patients (294 hips) with an infected THR in the study. There were 222 men and 72 women with a mean age of 55.1 years (24.0 to 78.0). The rate of control of infection after the initial treatment and after repeated debridement and two-stage revisions was determined. The clinical (Harris hip score) and radiological results were evaluated. The mean follow-up was 10.4 years (5.0 to 14.0). The eventual rate of control of infection was 100.0% for early superficial post-operative infection, 98.4% for early deep post-operative infection, 98.5% for late chronic infection and 91.0% for acute haematogenous infection. Overall, 288 patients (98%) maintained a functioning THR at the latest follow-up. All the allografts appeared to be united and there were no failures. These techniques effectively controlled infection and maintained a functional THR with firm fixation in most patients. Repeated debridement and two-stage or repeated two-stage revisions further improved the rate of control of infection after the initial treatment and increased the likelihood of maintaining a functional THR.
This was a randomised controlled trial studying
the safety of a new short metaphyseal fixation (SMF) stem. We hypothesised
that it would have similar early clinical results and micromovement
to those of a standard-length tapered Synergy metaphyseal fixation
stem. Using radiostereometric analysis (RSA) we compared the two
stems in 43 patients. A short metaphyseal fixation stem was used
in 22 patients and a Synergy stem in 21 patients. No difference
was found in the clinical outcomes pre- or post-operatively between
groups. RSA showed no significant differences two years post-operatively
in mean micromovement between the two stems (except for varus/valgus tilt
at p = 0.05) (subsidence 0.94 mm ( Cite this article:
We have reviewed the rate of revision of fully cemented, hybrid and uncemented primary total hip replacements (THRs) registered in the New Zealand Joint Registry between 1999 and December 2006 to determine whether there was any statistically significant difference in the early survival and reason for revision in these different types of fixation. The percentage rate of revision was calculated per 100 component years and compared with the reason for revision, the type of fixation and the age of the patients. Of the 42 665 primary THRs registered, 920 (2.16%) underwent revision requiring change of at least one component. Fully-cemented THRs had a lower rate of revision when considering all causes for failure (p <
0.001), but below the age of 65 years uncemented THRs had a lower rate (p <
0.01). The rate of revision of the acetabular component for aseptic loosening was less in the uncemented and hybrid groups compared with that in the fully cemented group (p <
0.001), and the rate of revision of cemented and uncemented femoral components was similar, except in patients over 75 years of age in whom revision of cemented femoral components was significantly less frequent (p <
0.02). Revision for infection was more common in patients aged below 65 years and in cemented and hybrid THRs compared with cementless THRs (p <
0.001). Dislocation was the most common cause of revision for all types of fixation and was more frequent in both uncemented acetabular groups (p <
0.001). The experience of the surgeon did not affect the findings. Although cemented THR had the lowest rate of revision for all causes in the short term (90 days), uncemented THR had the lowest rate of aseptic loosening in patients under 65 years of age and had rates comparable with international rates of aseptic loosening in those over 65 years.
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:
We compared peri-prosthetic bone mineral density between identical cemented and cementless LCS rotating platform total knee arthroplasties. Two matched cohorts had dual energy x-ray absorptiometry scans two years post-operatively using a modified validated densitometric analysis protocol, to assess peri-prosthetic bone mineral density. The knee that was not operated on was also scanned to enable the calculation of a relative bone mineral density difference. Oxford Knee and American Knee Society scores were comparable in the two cohorts. Statistical analysis revealed no significant difference in absolute, or relative peri-prosthetic bone mineral density with respect to the method of fixation. However, the femoral peri-prosthetic bone mineral density and relative bone mineral density difference were significantly decreased, irrespective of the method of fixation, particularly in the anterior distal portion of the femur, with a mean reduction in relative bone mineral density difference of 27%. There was no difference in clinical outcome between the cemented and cementless LCS total knee arthroplasty. However, both produce stress-shielding around the femoral implants. This leads us to question the use of more expensive cementless total knee components.
The aims of this retrospective study were to
compare the mid-term outcomes following revision total knee replacement
(TKR) in 76 patients (81 knees) <
55 years of age with those
of a matched group of primary TKRs based on age, BMI, gender and
comorbid conditions. We report the activity levels, functional scores,
rates of revision and complications. Compared with patients undergoing
primary TKR, those undergoing revision TKR had less improvement
in the mean Knee Society function scores (8.14 (–55 to +60) Young patients undergoing revision TKR should be counselled that
they can expect somewhat less improvement and a higher risk of complications
than occur after primary TKR. Cite this article:
Acetabular bone loss is a challenging problem
facing the revision total hip replacement surgeon. Reconstruction
of the acetabulum depends on the presence of anterosuperior and
posteroinferior pelvic column support for component fixation and
stability. The Paprosky classification is most commonly used when
determining the location and degree of acetabular bone loss. Augments
serve the function of either providing primary construct stability
or supplementary fixation. When a pelvic discontinuity is encountered we advocate the use
of an acetabular distraction technique with a jumbo cup and modular
porous metal acetabular augments for the treatment of severe acetabular
bone loss and associated chronic pelvic discontinuity. Cite this article:
We assessed the orientation of the acetabular
component in 1070 primary total hip arthroplasties with hard-on-soft, small
diameter bearings, aiming to determine the size and site of the
target zone that optimises outcome. Outcome measures included complications,
dislocations, revisions and ΔOHS (the difference between the Oxford
Hip Scores pre-operatively and five years post-operatively). A wide
scatter of orientation was observed (2 This study demonstrated that with traditional technology surgeons
can only reliably achieve a target zone of ±15°. As the optimal
zone to diminish the risk of dislocation is also ±15°, surgeons
should be able to achieve this. This is the first study to demonstrate
that optimal orientation of the acetabular component improves the
functional outcome. However, the target zone is small (± 5°) and
cannot, with current technology, be consistently achieved. Cite this article:
This systematic review and meta-analysis was conducted to determine
the mid- to long-term clinical outcomes for a medial-pivot total
knee replacement (TKR) system. The objectives were to synthesise
available survivorship, Knee Society Scores (KSS), and reasons for
revision for this system. A systematic search was conducted of two online databases to
identify sources of survivorship, KSS, and reasons for revision.
Survivorship results were compared with values in the National Joint
Registry of England, Wales, and Northern Ireland (NJR).Objectives
Methods
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:
Cementless femoral stems are currently preferred
for total hip replacement (THR) in the United States. Improvements
in stem design, instrumentation and surgical technique have made
this technology highly successful, reproducible, and applicable
to the vast majority of patients requiring a THR. However, there
are ongoing developments in some aspects of stem design that influence
clinical results, the incidence of complications and their inherent adaptability
in accommodating the needs of individual patients. Here we examine
some of these design features. Cite this article:
Tapered, fluted, modular, titanium stems are
increasingly popular in the operative management of Vancouver B2 and
selected B3 peri-prosthetic femoral fractures. We have reviewed
the results at our institution looking at stem survival and clinical
outcomes and compared this with reported outcomes in the literature.
Stem survival at a mean of 54 months was 96% in our series and 97%
for combined published cases. Review of radiology showed maintenance
or improvement of bone stock in 89% of cases with high rates of
femoral union. Favourable clinical outcome scores have reported
by several authors. No difference in survival or clinical scores
was observed between B2 and B3 fractures. Tapered stems are a useful
option in revision for femoral fracture across the spectrum of femoral
bone deficiency. Cite this article:
Hip replacement is a very successful operation and the outcome is usually excellent. There are recognised complications that seem increasingly to give rise to litigation. This paper briefly examines some common scenarios where litigation may be pursued against hip surgeons. With appropriate record keeping, consenting and surgical care, the claim can be successfully defended if not avoided. We hope this short summary will help to highlight some common pitfalls. There is extensive literature available for detailed study.
Many different lengths of stem are available
for use in primary total hip replacement, and the morphology of
the proximal femur varies greatly. The more recently developed shortened
stems provide a distribution of stress which closely mimics that
of the native femur. Shortening the femoral component potentially
comes at the cost of decreased initial stability. Clinical studies
on the performance of shortened cemented and cementless stems are promising,
although long-term follow-up studies are lacking. We provide an
overview of the current literature on the anatomical features of
the proximal femur and the biomechanical aspects and clinical outcomes
associated with the length of the femoral component in primary hip
replacement, and suggest a classification system for the length
of femoral stems. Cite this article:
The October 2013 Knee Roundup360 looks at: Make it easy, release the MCL; Do patients remember clinical information in day surgery?; Osteoarthritis and arthroscopy?; How best to double your bundles; When to operate for infection; Cementless unicompartment knee replacement?; Tibial tubercle-trochlear groove confusion; Tarts, cherries and osteoarthritis
We randomised 62 knees to receive either cemented or cementless versions of the Oxford unicompartmental knee replacement. The implants used in both arms of the study were similar, except that the cementless components were coated with porous titanium and hydroxyapatite. The tibial interfaces were studied with fluoroscopically-aligned radiographs. At one year there was no difference in clinical outcome between the two groups. Narrow radiolucent lines were seen at the bone-implant interfaces in 75% of cemented tibial components. These were partial in 43%, and complete in 32%. In the cementless implants, partial radiolucencies were seen in 7% and complete radiolucencies in none. These differences are statistically significant (p <
0.0001) and imply satisfactory bone ingrowth into the cementless implants.