scholarly journals Patellofemoral Joint Replacement and Nickel Allergy: An Unusual Presentation

2015 ◽  
Vol 2015 ◽  
pp. 1-4 ◽  
Author(s):  
Farhan Syed ◽  
Edward Jenner ◽  
Mohammad Faisal

Metal allergy is an unusual complication of joint replacement that may cause aseptic loosening and necessitate joint revision surgery. We present the case of nickel allergy causing aseptic loosening following patellofemoral joint replacement (PFJR) in a 54-year-old male. Joint revision surgery to a nickel-free total knee replacement was performed with good results. Our literature review shows that there is no evidence to guide the management of metal allergy in PFJR. The evidence from studies of total knee replacement is limited to retrospective case series and case reports and gives contradictory recommendations. The optimal management strategy for metal allergy in PFJR is not clear. We recommend allergy testing in patients with history of metal allergy and use of an allergen-free implant in those with positive tests. As there is no gold standard test to establish metal allergy, the choice of test should be guided by availability and recommendation from the local unit of dermatology and allergy testing. We recommend investigation for metal allergy in patients with implant loosening where other causes have been excluded.

2020 ◽  
Vol 12 (1) ◽  
Author(s):  
Mariam Ahmad Alameri ◽  
Syed Azhar bin Syed Sulaiman ◽  
Abdullah Moh’d Talaat Ashour ◽  
Ma’ad Faisal Al-Saati

Abstract Background Acute pain in post joint replacement surgeries is common, which makes the management of acute pain following joint replacement surgeries to be very important. Thus, this study was conducted to evaluate acute pain management of post TKR surgeries. Results Patients with negative pain management index (PMI) scores were classified as receiving inadequate analgesic treatment for their pain. Zero PMI was the most frequent score among the others with 195 (80.6%). The rest were − 1 (11 (4.5%)), 1 (27 (11.2%)), and 2 (9 (3.7%)), respectively. Only 4.5% (11/242) patients have negative PMI score, which could be considered as inadequate pain management in which these patients received inadequate analgesic treatment. Conclusion Acute pain management in post-TKR surgeries in both medical centers achieved an acceptable level, and majority of patients received an adequate analgesia in post-TKR surgeries.


2017 ◽  
Vol 44 (11) ◽  
pp. 1723-1726 ◽  
Author(s):  
Jasvinder A. Singh ◽  
Michelle M. Dowsey ◽  
Michael Dohm ◽  
Susan M. Goodman ◽  
Amye L. Leong ◽  
...  

Objective.Discussion and endorsement of the OMERACT total joint replacement (TJR) core domain set for total hip replacement (THR) and total knee replacement (TKR) for endstage arthritis; and next steps for selection of instruments.Methods.The OMERACT TJR working group met at the 2016 meeting at Whistler, British Columbia, Canada. We summarized the previous systematic reviews, the preliminary OMERACT TJR core domain set and results from previous surveys. We discussed preliminary core domains for TJR clinical trials, made modifications, and identified challenges with domain measurement.Results.Working group participants (n = 26) reviewed, clarified, and endorsed each of the inner and middle circle domains and added a range of motion domain to the research agenda. TJR were limited to THR and TKR but included all endstage hip and knee arthritis refractory to medical treatment. Participants overwhelmingly endorsed identification and evaluation of top instruments mapping to the core domains (100%) and use of subscales of validated multidimensional instruments to measure core domains for the TJR clinical trial core measurement set (92%).Conclusion.An OMERACT core domain set for hip/knee TJR trials has been defined and we are selecting instruments to develop the TJR clinical trial core measurement set to serve as a common foundation for harmonizing measures in TJR clinical trials.


2015 ◽  
Vol 9 (1) ◽  
pp. 45-48 ◽  
Author(s):  
Robin E Westerbeek ◽  
Rosalie P.H Derks ◽  
Bas J.G.L Zonneveld ◽  
Hans-Peter W. van Jonbergen

Patellofemoral joint replacement is a successful treatment option for isolated patellofemoral osteoarthritis. The short and mid-term outcomes are related to malposition and unexplained pain. Whether external rotation of the femoral component in isolated patellofemoral joint replacement is required is unclear. The primary aim of this study is to determine the CT-measured femoral component rotation of patellofemoral joint replacement relative to the transepicondylar axis. The secondary aim is to correlate the CT-measured femoral component rotation with the clinical outcomes at 1-year follow-up as assessed with the KOOS questionnaire. We designed a prospective observational study with medical research ethics committee and institutional review board approval. A total of 40 patients who will be treated with patellofemoral joint replacement for isolated patellofemoral osteoarthritis will be included. Intra-operatively, rotation of the femoral component will be assessed using anatomical landmarks including the epicondylar axis, Whiteside’s line, and lower leg axis. The aim is to insert the femoral component between 3 and 6 degrees external rotation relative to the transepicondylar axis. Two experienced musculoskeletal radiologists will measure the angle between the transepicondylar axis and the femoral component, two to three days after surgery. The primary outcome is the CT-based femoral component rotation of the prosthesis relative to the transepicondylar axis. The secondary outcome is the patient reported KOOS questionnaire at 1-year follow-up. Successful completion of this study will provide data on the actual amount of femoral component rotation in patellofemoral joint replacement, and its relationship with clinical results. (Netherlands Trial Register NTR4175).


The Knee ◽  
2014 ◽  
Vol 21 (1) ◽  
pp. 138-141 ◽  
Author(s):  
N. Al-Hadithy ◽  
R. Patel ◽  
B. Navadgi ◽  
S. Deo ◽  
D. Hollinghurst ◽  
...  

Author(s):  
Morshed Khandaker ◽  
Onur Can Kalay ◽  
Fatih Karpat ◽  
Amgad Haleem ◽  
Wendy Williams ◽  
...  

Abstract A method to improve the mechanical fixation of a total knee replacement (TKR) implant is clinically important and is the purpose of this study. More than one million joint replacement procedures are performed in people each year in the United States, and experts predict the number to increase six-fold by the year 2030. Whether cemented or uncemented, joint prostheses may destabilize over time and necessitate revision. Approximately 40,000 hip arthroplasty surgeries have to be revised each year and the rate is expected to increase by approximately 140% (and by 600% for total knee replacement) over the next 25 years. In veterinary surgery, joint replacement has a long history and the phenomenon of surgical revision is also well recognized. For the betterment of both people and animals, improving the longevity of arthroplasty devices is of the utmost clinical importance, and towards that end, several strategies are under investigation. One approach that we explore in the present research is to improve the biomechanical performance of cemented implant systems by altering the implant surface architecture in a way that facilitates its cement bonding capacity. Beginning with the Charnley system, early femoral stems were polished smooth, but a number of subsequent designs have featured a roughened surface — created with bead or grit blasting — to improve cement bonding. Failure at the implant-cement interface remains an issue with these newer designs, leading us to explore in this present research an alternate, novel approach to surface alteration — specifically, laser microgrooving. This study used various microgrooves architectures that is feasible using a laser micromachining process on a tibia tray (TT) for the goat TKR. Developing the laser microgrooving (LM) procedure, we hypothesized feasibility in producing parallel microgrooves of precise dimensions and spacing on both flat and round metallic surfaces. We further hypothesized that laser microgrooving would increase surface area and roughness of the cement interface of test metallic implants and that such would translate into an improved acute mechanical performance as assessed in vitro under both static and cyclic loads. The objective was to develop a computational model to determine the effect of LIM on the tibial tray to the mechanical stimuli distributions from implant to bone using the finite element method. This study designed goat TT 3D solid model from a computer topography (CT) images, out of which three different laser microgrooves were engraved on TT sample by varying depth, height and space between two adjacent grooves. The simulation test results concluded that microgrooves acchitecures positively influence microstrain behavior around the implant/bone interfaces. There is a higher amount of strain observed for microgroove implant/bone samples compared to non-groove implant/bone samples. Thus, the laser-induced microgrooves have the potential to be used clinically in TKR components.


2021 ◽  
Author(s):  
Weishen Chen ◽  
Guoyan Xian ◽  
Minghui Gu ◽  
Baiqi Pan ◽  
Xiaoyu Wu ◽  
...  

Aseptic loosening caused by peri-implant osteolysis (PIO) is a common complication after joint replacement, and there is still no better treatment than revision surgery. The wear particle-induced inflammation response, especially...


2019 ◽  
Vol 5 (3) ◽  
pp. 296-300
Author(s):  
Fernando Diaz-Dilernia ◽  
Julian Costantini ◽  
Tomas I. Nicolino ◽  
Marisa del Lujan Sanchez ◽  
Lisandro Carbo

The Knee ◽  
2020 ◽  
Vol 27 (5) ◽  
pp. 1519-1524
Author(s):  
Stefano Marco Paolo Rossi ◽  
Loris Perticarini ◽  
Mario Mosconi ◽  
Matteo Ghiara ◽  
Francesco Benazzo

2010 ◽  
Vol 92-B (1) ◽  
pp. 56-60 ◽  
Author(s):  
M. Odumenya ◽  
M. L. Costa ◽  
N. Parsons ◽  
J. Achten ◽  
M. Dhillon ◽  
...  

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