Aims.
Aims. The primary aim of this study was to determine the ten-year outcome following surgical treatment for
Aims. Hip arthroscopy has gained prominence as a primary surgical intervention for symptomatic
Aims.
There has been a marked increase in the number of hip arthroscopies performed over the past 16 years, primarily in the management of
Aims. Hip arthroscopy (HA) has become the treatment of choice for
Aims. The frequency of severe femoral retroversion is unclear in patients with
Aims. The purpose of this study was to evaluate the mid-term outcomes of autologous matrix-induced chondrogenesis (AMIC) for the treatment of larger cartilage lesions and deformity correction in hips suffering from symptomatic
The β-angle is a radiological tool for measuring the distance between the pathological head-neck junction and the acetabular rim with the hip in 90° of flexion in patients with
Objectives. The purpose of this study was to evaluate the existing literature from 2005 to 2016 reporting on the efficacy of surgical management of patients with
Open reduction of the prominence at the femoral head-neck junction in
There is a known association between
Conventional treatment of mild slipped capital femoral epiphysis consists of fixation in situ with wires or screws. Recent contributions to the literature suggest that even a mild slip may lead to early damage of the acetabular labrum and adjacent cartilage by abutment of a prominent femoral metaphysis. It has been suggested that the appropriate treatment in mild slipped capital femoral epiphysis should not only prevent further slipping of the epiphysis, but also address potential
Outcomes following different types of surgical intervention for
Objectives. The aim of this study was to systematically review the literature on measurement of muscle strength in patients with
Labral tears are commonly associated with
Aims. The prevalence of combined abnormalities of femoral torsion (FT) and tibial torsion (TT) is unknown in patients with
To evaluate how abnormal proximal femoral anatomy affects different femoral version measurements in young patients with hip pain. First, femoral version was measured in 50 hips of symptomatic consecutively selected patients with hip pain (mean age 20 years (SD 6), 60% (n = 25) females) on preoperative CT scans using different measurement methods: Lee et al, Reikerås et al, Tomczak et al, and Murphy et al. Neck-shaft angle (NSA) and α angle were measured on coronal and radial CT images. Second, CT scans from three patients with femoral retroversion, normal femoral version, and anteversion were used to create 3D femur models, which were manipulated to generate models with different NSAs and different cam lesions, resulting in eight models per patient. Femoral version measurements were repeated on manipulated femora.Aims
Methods
Aims. The purpose of this study was to evaluate spinopelvic mechanics from standing and sitting positions in subjects with and without
Aims. The effect of pelvic tilt (PT) and sagittal balance in hips with pincer-type
There have been considerable recent advances in the understanding and management of
Although the association between
Slipped upper femoral epiphysis (SUFE) is one
of the known causes of cam-type
Aims. Abnormal femoral torsion (FT) is increasingly recognized as an additional cause for
We retrospectively examined the long-term outcome of 96 asymptomatic hips in 96 patients with a mean age of 49.3 years (16 to 65) who had radiological evidence of
We reviewed the clinical outcome of arthroscopic femoral osteochondroplasty for cam
Over an eight-month period we prospectively enrolled 122 patients who underwent arthroscopic surgery of the hip for
The radiological evaluation of the anterolateral femoral head is an essential tool for the assessment of the cam type of
Deformity after slipped upper femoral epiphysis
(SUFE) can cause cam-type
Young adults with hip pain secondary to femoroacetabular
impingement (FAI) are rapidly being recognised as an important cohort
of orthopaedic patients. Interest in FAI has intensified over the
last decade since its recognition as a precursor to arthritis of
the hip and the number of publications related to the topic has
increased exponentially in the last decade. Although not all patients
with abnormal hip morphology develop osteoarthritis (OA), those
with FAI-related joint damage rapidly develop premature OA. There
are no explicit diagnostic criteria or definitive indications for
surgical intervention in FAI. Surgery for symptomatic FAI appears
to be most effective in younger individuals who have not yet developed
irreversible OA. The difficulty in predicting prognosis in FAI means
that avoiding unnecessary surgery in asymptomatic individuals, while
undertaking intervention in those that are likely to develop premature
OA poses a considerable dilemma. FAI treatment in the past has focused
on open procedures that carry a potential risk of complications. Recent developments in hip arthroscopy have facilitated a minimally
invasive approach to the management of FAI with few complications
in expert hands. Acetabular labral preservation and repair appears
to provide superior results when compared with debridement alone.
Arthroscopic correction of structural abnormalities is increasingly becoming
the standard treatment for FAI, however there is a paucity of high-level
evidence comparing open and arthroscopic techniques in patients
with similar FAI morphology and degree of associated articular cartilage damage.
Further research is needed to develop an understanding of the natural
course of FAI, the definitive indications for surgery and the long-term
outcomes. Cite this article:
There is an increased risk of fracture following
osteoplasty of the femoral neck for cam-type femoroacetabular impingement
(FAI). Resection of up to 30% of the anterolateral head–neck junction
has previously been considered to be safe, however, iatrogenic fractures
have been reported with resections within these limits. We re-evaluated
the amount of safe resection at the anterolateral femoral head–neck
junction using a biomechanically consistent model. In total, 28 composite bones were studied in four groups: control,
10% resection, 20% resection and 30% resection. An axial load was
applied to the adducted and flexed femur. Peak load, deflection
at time of fracture and energy to fracture were assessed using comparison
groups. There was a marked difference in the mean peak load to fracture
between the control group and the 10% resection group (p <
0.001).
The control group also tolerated significantly more deflection before
failure (p <
0.04). The mean peak load (p = 0.172), deflection
(p = 0.547), and energy to fracture (p = 0.306) did not differ significantly between
the 10%, 20%, and 30% resection groups. Any resection of the anterolateral quadrant of the femoral head–neck
junction for FAI significantly reduces the load-bearing capacity
of the proximal femur. After initial resection of cortical bone,
there is no further relevant loss of stability regardless of the
amount of trabecular bone resected. Based on our findings we recommend any patients who undergo anterolateral
femoral head–neck junction osteoplasty should be advised to modify
their post-operative routine until cortical remodelling occurs to
minimise the subsequent fracture risk. Cite this article:
We examined the morphology of mammalian hips asking whether evolution can explain the morphology of impingement in human hips. We describe two stereotypical mammalian hips, coxa recta and coxa rotunda. Coxa recta is characterised by a straight or aspherical section on the femoral head or head-neck junction. It is a sturdy hip seen mostly in runners and jumpers. Coxa rotunda has a round femoral head with ample head-neck offset, and is seen mostly in climbers and swimmers. Hominid evolution offers an explanation for the variants in hip morphology associated with impingement. The evolutionary conflict between upright gait and the birth of a large-brained fetus is expressed in the female pelvis and hip, and can explain pincer impingement in a coxa profunda. In the male hip, evolution can explain cam impingement in coxa recta as an adaptation for running.
The aim of this study was to examine the real time A total of 50 patients (83 hips) underwent 4D dynamic CT scanning
of the hip, producing real time osseous models of the pelvis and
femur being moved through flexion, adduction, and internal rotation.
The location and size of the cam deformity and its relationship
to the angle of flexion of the hip and pelvic tilt, and the position
of impingement were recorded.Aims
Patients and Methods
Advanced MRI cartilage imaging such as T1-rho
(T1ρ) for the diagnosis of early cartilage degradation prior to morpholgic
radiological changes may provide prognostic information in the management
of joint disease. This study aimed first to determine the normal
T1ρ profile of cartilage within the hip, and secondly to identify
any differences in T1ρ profile between the normal and symptomatic
femoroacetabular impingement (FAI) hip. Ten patients with cam-type
FAI (seven male and three female, mean age 35.9 years (28 to 48))
and ten control patients (four male and six female, mean age 30.6
years (22 to 35)) underwent 1.5T T1ρ MRI of a single hip. Mean T1ρ relaxation
times for full thickness and each of the three equal cartilage thickness
layers were calculated and compared between the groups. The mean
T1ρ relaxation times for full cartilage thickness of control and
FAI hips were similar (37.17 ms ( These results suggest that 1.5T T1ρ MRI can detect acetabular
hyaline cartilage changes in patients with FAI.
We have observed damage to the labrum as a result of repetitive acetabular impingement in non-dysplastic hips, in which the femoral neck appears to abut against the acetabular labrum and a non-spherical femoral head to press against the labrum and adjacent cartilage. In both mechanisms anatomical variations of the proximal femur may be a factor. We have measured the orientation of the femoral neck and the offset of the head at various circumferential positions, using MRI data from volunteers with no osteoarthritic changes on standard radiographs. Compared with the control subjects, paired for gender and age, patients showed a significant reduction in mean femoral anteversion and mean head-neck offset on the anterior aspect of the neck. This was consistent with the site of symptomatic impingement in flexion and internal rotation, and with lesions of the adjacent rim. Furthermore, when stratified for gender and age, and compared with the control group, the mean femoral head-neck offset was significantly reduced in the lateral-to-anterior aspect of the neck for young men, and in the anterolateral-to-anterior aspect of the neck for older women. For patients suspected of having impingement of the rim, anatomical variations in the proximal femur should be considered as a possible cause.
Orthopaedic surgeons have accepted various radiological
signs to be representative of acetabular retroversion, which is
the main characteristic of focal over-coverage in patients with
femoroacetabular impingement (FAI). Using a validated method for
radiological analysis, we assessed the relevance of these signs
to predict intra-articular lesions in 93 patients undergoing surgery
for FAI. A logistic regression model to predict chondral damage
showed that an acetabular retroversion index (ARI) >
20%, a derivative
of the well-known cross-over sign, was an independent predictor
(p = 0.036). However, ARI was less significant than the Tönnis classification
(p = 0.019) and age (p = 0.031) in the same model. ARI was unable
to discriminate between grades of chondral lesions, while the type
of cam lesion (p = 0.004) and age (p = 0.047) were able to. Other
widely recognised signs of acetabular retroversion, such as the
ischial spine sign, the posterior wall sign or the cross-over sign
were irrelevant according to our analysis. Regardless of its secondary
predictive role, an ARI >
20% appears to be the most clinically
relevant radiological sign of acetabular retroversion in symptomatic
patients with FAI. Cite this article:
A 30-year-old man presented with pain and limitation of movement of the right hip. The symptoms had failed to respond to conservative treatment. Radiographs and CT scans revealed evidence of impingement between the femoral head-neck junction and an abnormally large anterior inferior iliac spine. Resection of the hypertrophic anterior inferior iliac spine was performed which produced full painless restoration of function of the hip. Hypertrophy of the anterior inferior iliac spine as a cause of femoro-acetabular impingement has not previously been described.
Aims. Pelvic tilt is believed to affect the symptomology of osteoarthritis (OA) of the hip by alterations in joint movement, dysplasia of the hip by modification of acetabular cover, and
Aims. Acetabular retroversion is a recognized cause of
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