Aims. The aim of this study was to evaluate the clinical and radiological
outcome of using an anatomical short-stem shoulder prosthesis to
treat primary osteoarthritis of the glenohumeral joint. Patients and Methods. A total of 66 patients (67 shoulders) with a mean age of 76 years
(63 to 92) were available for clinical and radiological follow-up
at two different timepoints (T1, mean 2.6 years, . sd. 0.5;
T2, mean 5.3 years,. sd. 0.7). Postoperative radiographs
were analyzed for stem angle, cortical contact, and filling ratio
of the stem. Follow-up radiographs were analyzed for timing and
location of bone adaptation (cortical bone narrowing, osteopenia,
spot welds, and condensation lines). The bone adaptation was classified
as low (between zero and three features of bone remodelling around
the humeral stem) or high (four or more features). Results. The mean Constant score improved significantly from 28.5 (. sd. 11.6)
preoperatively to 75.5 (. sd. 8.5) at T1 (p < 0.001) and
remained stable over time (T2: 76.6, . sd. 10.2). No stem
loosening was seen. High bone adaptation was present in 42% of shoulders
at T1, with a slight decrease to 37% at T2. Cortical bone narrowing
and osteopenia in the region of the calcar decreased from 76% to
66% between T1 and T2. Patients with high bone adaptation had a
significantly higher mean
We studied the radiographs of 211 low-friction arthroplasties, followed for five to 15 years after operation. The first 92 simple hemispherical sockets were fixed with an old technique: eburnated bone in the acetabular roof was removed and only a few large anchor holes were bored for cement fixation. With the next 119 sockets, 111 of which were flanged, the eburnated and subchondral bone was preserved and multiple small anchor holes were used. The modified technique and the use of flanged sockets significantly improved the late radiological findings as regards socket demarcation and wear. On the femoral side, the intramedullary canal
The purpose of this study was to report bone adaptive changes after anatomical total shoulder arthroplasty (TSA) using a standard-length hydroxyapatite (HA)-coated humeral component, and to report on a computer-based analysis of radiographs to determine changes in peri-implant bone density objectively. A total of 44 TSAs, performed between 2011 and 2014 using a cementless standard-length humeral component proximally coated with HA, were included. There were 23 males and 21 females with a mean age of 65 years (17 to 65). All shoulders had good quality radiographs at six weeks and five years postoperatively. Three observers graded bone adaptive changes. All radiographs were uploaded into a commercially available photographic software program. The grey value density of humeral radiological areas was corrected to the grey value density of the humeral component and compared over time.Aims
Methods
Shoulder arthroplasty using short humeral components is becoming increasingly popular. Some such components have been associated with relatively high rates of adverse radiological findings. The aim of this retrospective review was to evaluate the radiological humeral bone changes and mechanical failure rates with implantation of a short cementless humeral component in anatomical (TSA) and reverse shoulder arthroplasty (RSA). A total of 100 shoulder arthroplasties (35 TSA and 65 RSA) were evaluated at a mean of 3.8 years (3 to 8.3). The mean age at the time of surgery was 68 years (31 to 90). The mean body mass index was 32.7 kg/m2 (17.3 to 66.4).Aims
Patients and Methods