The aim of this study was to determine if uncemented acetabular polyethylene (PE) liner geometry, and lip size, influenced the risk of revision for instability or loosening. A total of 202,511 primary total hip arthroplasties (THAs) with uncemented acetabular components were identified from the National Joint Registry (NJR) dataset between 2003 and 2017. The effect of liner geometry on the risk of revision for instability or loosening was investigated using competing risk regression analyses adjusting for age, sex, American Society of Anesthesiologists grade, indication, side, institution type, surgeon grade, surgical approach, head size, and polyethylene crosslinking. Stratified analyses by surgical approach were performed, including pairwise comparisons of liner geometries.Aims
Methods
In the native hip, the hip capsular ligaments tighten at the limits of range of hip motion and may provide a passive stabilizing force to protect the hip against edge loading. In this study we quantified the stabilizing force vectors generated by capsular ligaments at extreme range of motion (ROM), and examined their ability to prevent edge loading. Torque-rotation curves were obtained from nine cadaveric hips to define the rotational restraint contributions of the capsular ligaments in 36 positions. A ligament model was developed to determine the line-of-action and effective moment arms of the medial/lateral iliofemoral, ischiofemoral, and pubofemoral ligaments in all positions. The functioning ligament forces and stiffness were determined at 5 Nm rotational restraint. In each position, the contribution of engaged capsular ligaments to the joint reaction force was used to evaluate the net force vector generated by the capsule.Aims
Methods
The aim of this study was to identify patient- and surgery-related
risk factors for sustaining an early periprosthetic fracture following
primary total hip arthroplasty (THA) performed using a double-tapered
cementless femoral component (Bi-Metric femoral stem; Biomet Inc.,
Warsaw, Indiana). A total of 1598 consecutive hips, in 1441 patients receiving
primary THA between January 2010 and June 2015, were retrospectively
identified. Level of pre-operative osteoarthritis, femoral Dorr
type and cortical index were recorded. Varus/valgus placement of
the stem and canal fill ratio were recorded post-operatively. Periprosthetic
fractures were identified and classified according to the Vancouver
classification. Regression analysis was performed to identify risk
factors for early periprosthetic fracture.Aims
Patients and Methods
In order to prevent dislocation of the hip after total hip arthroplasty
(THA), patients have to adhere to precautions in the early post-operative
period. The hypothesis of this study was that a protocol with minimal
precautions after primary THA using the posterolateral approach
would not increase the short-term (less than three months) risk
of dislocation. We prospectively monitored a group of unselected patients undergoing
primary THA managed with standard precautions (n = 109, median age
68.9 years; interquartile range (IQR) 61.2 to 77.3) and a group
who were managed with fewer precautions (n = 108, median age 67.2
years; IQR 59.8 to 73.2). There were no significant differences between
the groups in relation to predisposing risk factors. The diameter
of the femoral head ranged from 28 mm to 36 mm; meticulous soft-tissue
repair was undertaken in all patients. The medical records were
reviewed and all patients were contacted three months post-operatively
to confirm whether they had experienced a dislocation. Aims
Patients and Methods
Despite a lack of long-term follow-up, there
is an increasing trend towards using femoral heads of large diameter
in total hip replacement (THR), partly because of the perceived
advantage of lower rates of dislocation. However, increasing the
size of the femoral head is not the only way to reduce the rate
of dislocation; optimal alignment of the components and repair of
the posterior capsule could achieve a similar effect. In this prospective study of 512 cemented unilateral THRs (Male:Female
230:282) performed between 2004 and 2011, we aimed to determine
the rate of dislocation in patients who received a 22 mm head on
a 9/10 Morse taper through a posterior approach with capsular repair
and using the transverse acetabular ligament (TAL) as a guide for the
alignment of the acetabular component. The mean age of the patients
at operation was 67 years (35 to 89). The mean follow-up was 2.8
years (0.5 to 6.6). Pre- and post-operative assessment included
Oxford hip, Short Form-12 and modified University of California
Los Angeles and Merle D’Aubigne scores. The angles of inclination
and anteversion of the acetabular components were measured using
radiological software. There were four dislocations (0.78%), all
of which were anterior. In conclusion, THR with a 22 mm diameter head performed through
a posterior approach with capsular repair and using the TAL as a
guide for the alignment of the acetabular component was associated
with a low rate of dislocation. Cite this article:
Dislocation is one of the most common causes
of patient and surgeon dissatisfaction following hip replacement
and to treat it, the causes must first be understood. Patient factors
include age greater than 70 years, medical comorbidities, female
gender, ligamentous laxity, revision surgery, issues with the abductors,
and patient education. Surgeon factors include the annual quantity
of procedures and experience, the surgical approach, adequate restoration
of femoral offset and leg length, component position, and soft-tissue
or bony impingement. Implant factors include the design of the head
and neck region, and so-called skirts on longer neck lengths. There
should be offset choices available in order to restore soft-tissue
tension. Lipped liners aid in gaining stability, yet if improperly placed
may result in impingement and dislocation. Late dislocation may
result from polyethylene wear, soft-tissue destruction, trochanteric
or abductor disruption and weakness, or infection. Understanding
the causes of hip dislocation facilitates prevention in a majority
of instances. Proper pre-operative planning includes the identification
of patients with a high offset in whom inadequate restoration of
offset will reduce soft-tissue tension and abductor efficiency.
Component position must be accurate to achieve stability without impingement.
Finally, patient education cannot be over-emphasised, as most dislocations occur
early, and are preventable with proper instructions. Cite this article:
A moderator and panel of five experts led an
interactive session in discussing five challenging and interesting patient
case presentations involving surgery of the hip. The hip pathologies
reviewed included failed open reduction internal fixation of subcapital
femoral neck fracture, bilateral hip disease, evaluation of pain
after metal-on-metal hip arthroplasty, avascular necrosis, aseptic
loosening secondary to osteolysis and polyethylene wear, and management
of ceramic femoral head fracture.
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