This study aims to determine the proportion of patients with end-stage knee osteoarthritis (OA) possibly suitable for partial (PKA) or combined partial knee arthroplasty (CPKA) according to patterns of full-thickness cartilage loss and anterior cruciate ligament (ACL) status. A cross-sectional analysis of 300 consecutive patients (mean age 69 years (SD 9.5, 44 to 91), mean body mass index (BMI) 30.6 (SD 5.5, 20 to 53), 178 female (59.3%)) undergoing total knee arthroplasty (TKA) for Kellgren-Lawrence grade ≥ 3 knee OA was conducted. The point of maximal tibial bone loss on preoperative lateral radiographs was determined as a percentage of the tibial diameter. At surgery, Lachman’s test and ACL status were recorded. The presence of full-thickness cartilage loss within 16 articular surface regions (two patella, eight femoral, six tibial) was recorded.Aims
Methods
We aimed to obtain anthropometric data on Korean
knees and to compare these with data on commonly available total
knee arthroplasties (TKAs). The dimensions of the femora and tibiae
of 1168 knees were measured intra-operatively. The femoral components
were found to show a tendency toward mediolateral (ML) under-coverage
in small femurs and ML overhang in the large femurs. The ML under-coverage
was most prominent for the small prostheses. The ML/anteroposterior
(ML/AP) ratio of Korean tibiae was greater than that of tibial components. This study shows that, for different reasons, current TKAs do
not provide a reasonable fit for small or large Korean knees, and
that the ‘gender-specific’ and ‘stature-specific’ components help
for large Korean femurs but offer less satisfactory fits for small
femurs. Specific modifications of prostheses are needed for Asian
knees.
Peri-prosthetic patellar fracture following resurfacing
as part of total knee replacement (TKR) is an infrequent yet challenging
complication. This case-control study was performed to identify
clinical, radiological and surgical factors that increase the risk
of developing a spontaneous patellar fracture after TKR. Patellar
fractures were identified in 74 patients (88 knees) from a series
of 7866 consecutive TKRs conducted between 1998 and 2009. After excluding
those with a previous history of extensor mechanism realignment
or a clear traumatic event, a metal-backed patella, any uncemented
component or subsequent infection, the remaining 64 fractures were
compared with a matched group of TKRs with an excellent outcome
defined by the Knee Society score. The mean age of patients with
a fracture was 70 years (51 to 81) at the time of TKR. Patellar
fractures were detected at a mean of 13.4 months (2 to 84) after
surgery. The incidence of patellar fracture was found to be strongly
associated with the number of previous knee operations, greater
pre-operative mechanical malalignment, smaller post-operative patellar
tendon length, thinner post-resection patellar thickness, and a
lower post-operative Insall-Salvati ratio. An understanding of the risk factors associated with spontaneous
patellar fracture following TKR provides a valuable insight into
prevention of this challenging complication.
We prospectively randomised 78 patients into two groups, ‘drains’ or ‘no drains’ to assess the effectiveness of suction drains in reducing haematoma and effusion in the joint and its effect on wound healing after total knee replacement. Ultrasound was used to measure the formation of haematoma and effusion on the fourth post-operative day. This was a semi-quantitative assessment of volume estimation. There was no difference in the mean effusion between the groups (5.91 mm in the drain group versus 6.08 mm in the no-drain, p = 0.82). The mean amount of haematoma in the no-drain group was greater (11.07 mm versus 8.41 mm, p = 0.03). However, this was not clinically significant judged by the lack of difference in the mean reduction in the post-operative haemoglobin between the groups (drain group 3.4 g/dl; no-drain group 3.0 g/dl, p = 0.38). There were no cases of wound infection or problems with wound healing at six weeks in any patient. Our findings indicate that drains do not reduce joint effusion but do reduce haematoma formation. They have no effect on wound healing.