1.Application progress of customized steel plates in osteotomy and orthopedic treatment of knee osteoarthritis.
Jingkun JIA ; Jianxiong MA ; Xinlong MA
Chinese Journal of Reparative and Reconstructive Surgery 2025;39(12):1586-1590
OBJECTIVE:
To review the application progress of customized steel plates in osteotomy and orthopedic treatment for knee osteoarthritis (KOA), and provide reference for orthopedic surgeons and researchers.
METHODS:
Extensive review of the literature on customized steel plates for osteotomies and knee-preserving surgeries for KOA, 2015-2025, with an overview of the principles of customized steel plate design, clinical applications, and future directions, describing their advantages and shortcomings.
RESULTS:
Customized steel plates have demonstrated many advantages in osteotomy and orthopedic treatment of KOA, which not only enhance surgical outcomes and optimize mechanical properties, but also reduce the incidence of postoperative complications. However, high cost, long manufacturing period, and selection of patient indications are still important factors restricting their use.
CONCLUSION
Customized steel plates show promising potential in treating KOA. Not only do they reduce surgical duration and enhance postoperative healing outcomes, but they also effectively lower the incidence of postoperative complications, thereby improving patients' quality of life.
Humans
;
Osteoarthritis, Knee/surgery*
;
Osteotomy/methods*
;
Bone Plates
;
Postoperative Complications/epidemiology*
;
Steel
;
Quality of Life
;
Treatment Outcome
;
Knee Joint/surgery*
2.Research progress on enhanced recovery after posterior cruciate ligament reconstruction.
Zhengliang SHI ; Yanlin LI ; Zhaohui RUAN ; Hongmai YANG ; Kaiquan LI ; Ping YUAN ; Wenting TANG ; Rui HAN
Chinese Journal of Reparative and Reconstructive Surgery 2025;39(12):1591-1599
OBJECTIVE:
To summarize research progress on enhanced recovery after posterior cruciate ligament (PCL) reconstruction, clarify the core contradictions, effective intervention methods, and evaluation shortcomings in current clinical practice, and provide theoretical support for optimizing clinical rehabilitation strategies.
METHODS:
Relevant domestic and international literature in recent years was systematically searched. The key technologies and challenges for enhanced recovery after PCL reconstruction were analyzed from three aspects: the core issues of enhanced recovery after PCL reconstruction, treatment strategies, and the post-reconstruction effectiveness evaluation system.
RESULTS:
Enhanced recovery after PCL reconstruction mainly faces two core problems. First, there is a balance dilemma between graft tendon protection and knee joint function recovery: the tensile capacity of the graft tendon is weak in the early postoperative period, so excessive weight-bearing easily leads to relaxation, while overly conservative immobilization causes muscle atrophy and joint adhesion. Second, the return-to-sport rate is significantly affected by injury type and treatment method: patients with combined multiple ligament or meniscus injuries have a much lower return-to-sport rate than those with isolated PCL injury, and the risk of return-to-sport failure is higher. Current research mainly promotes rehabilitation from two aspects: physical therapy and surgical technology. Physical therapy runs through the perioperative period: preoperatively, muscle strength training, swelling control, and maintenance of joint range of motion are used to optimize surgical conditions; postoperatively, phased intervention is implemented. Surgical technology focuses on minimally invasive and anatomical approaches: arthroscopic surgery reduces injury, double-bundle reconstruction and internal tension-relief technology improve stability, and modified tunnel positioning and special surgical methods avoid the risk of "Killer Turn". Postoperative functional evaluation adopts multi-dimensional indicators: subjective evaluation relies on scales such as Lysholm and International Knee Documentation Committee (IKDC); objective evaluation assesses stability through Telos stress test and posterior drawer test; imaging evaluation takes MRI as the core; psychological evaluation is assisted by the Tampa scale of kinesiophobia-11 (TSK-11). However, there are obvious shortcomings, such as the lack of PCL-specific evaluation tools.
CONCLUSION
Enhanced recovery after PCL reconstruction requires the integration of precise surgery, individualized rehabilitation, and comprehensive subjective and objective evaluation. In the future, biomaterials and digital technologies should be integrated to optimize the full-cycle management of PCL reconstruction, thereby improving functional recovery and the effect of return to sports.
Humans
;
Posterior Cruciate Ligament Reconstruction/rehabilitation*
;
Posterior Cruciate Ligament/injuries*
;
Recovery of Function
;
Knee Joint/physiopathology*
;
Knee Injuries/rehabilitation*
;
Return to Sport
;
Enhanced Recovery After Surgery
;
Tendons/transplantation*
;
Arthroscopy
3.Modified patellar triple surgery for early patellofemoral osteoarthritis.
China Journal of Orthopaedics and Traumatology 2025;38(5):517-524
OBJECTIVE:
To exploring the efficacy of modified patellar triple surgery (including arthroscopic lateral retinaculum release, modified medial patellofemoral ligament reconstruction, and modified Fulkerson osteotomy) in the treatment of early patellofemoral osteoarthritis.
METHODS:
A retrospective analysis was conducted on 57 patients with patellofemoral arthritis admitted from March 2018 to June 2022, including 22 males and 35 females;aged 22 to 45 years old, average (31.5±5.7) years old; disease course 2 to 8 years (3.7±2.2) years;19 on the left side and 38 on the right side. The tendon graft was taken from the long tendons of the ipsilateral tibia, and the lateral patellar support band release was performed arthroscopically, combined with modified medial patellofemoral ligament reconstruction and modified Fulkerson osteotomy. The changes of Q angle, patellar tilt angle, tibial tuberosity-femoral trochlear groove (TT-TG) and Lysholm knee joint scores before and 12 months after surgery were compared.
RESULTS:
All patient incisions healed in stageⅠ, and 57 patients were followed up for 12 to 36 with an average of (22.1±2.5) months. The Q angle, patellar inclination angle, and TT-TG values improved from (22.7±1.9)°, (29.2±2.0)°, and (23.3±1.4) mm before surgery to (14.6±2.2)°, (7.6±3.2)°, and (11.8±1.7) mm one year after surgery, with statistically significant differences (P<0.05). The Lysholm score increased from preoperative (65.1±8.7) to postoperative (86.8±7.2) at 1 year (P<0.05), with 41 cases being excellent, 15 cases being good, and 1 case being average.
CONCLUSION
The improvement of medial patellofemoral ligament reconstruction and lateral retinaculum release can correct the Q angle in early patellofemoral osteoarthritis, while the improvement of Fulkerson osteotomy can correct the TT-TG value, elevate the patella, relieve pressure on the patellofemoral joint, and alleviate anterior knee pain. The clinical efficacy is definite, providing ideas for the clinical treatment of patellofemoral osteoarthritis.
Humans
;
Male
;
Female
;
Adult
;
Middle Aged
;
Retrospective Studies
;
Osteoarthritis, Knee/surgery*
;
Patellofemoral Joint/surgery*
;
Patella/surgery*
;
Young Adult
;
Osteotomy
;
Arthroscopy
4.Progress on treatment of posterior angle injury of medial meniscus of knee joint under arthroscopy.
Shi-Xue LU ; Lei DING ; Qi CHEN ; You-Zhi XU ; Gan HUANG ; Jun LI
China Journal of Orthopaedics and Traumatology 2025;38(6):651-656
The injury of the posterior Angle of the medial meniscus of the knee joint is very common in clinic, and the arthroscopic treatment of the knee joint has been the first choice. However, there are many difficulties in arthroscopic treatment, such as narrow space in the medial posterior corner of the knee joint, insufficient space to deal with the injured meniscus, varion and lateral rotation under 30° flexion, release of the medial collateral ligament of the knee joint, and expansion of the knee joint cavity spinner, all of which could expose and expand the medial space of knee joint. Therefore, it is necessary to master and balance the use to avoid collateral injury. It is also necessary to determine the cause of meniscus injury during arthroscopic treatment, such as degenerative injury, simple meniscus repair and forming can hardly solve the pain of patients. Anterior cross injury is easy to cause instability of the knee joint, which is closely related to the injury of the posterior angle of the medial meniscus of the knee joint. In order to achieve the maximum therapeutic effect, physiological repair should be performed at the same time. There are various types of medial meniscus posterior angle injury, among which the Ramp injury, root fracture and laminae meniscus injury are greatly affected by joint degeneration, narrow knee space or knee stability, and all influencing factors should be fully considered in treatment.
Humans
;
Arthroscopy/methods*
;
Tibial Meniscus Injuries/surgery*
;
Knee Joint/surgery*
;
Menisci, Tibial/surgery*
;
Knee Injuries/surgery*
5.Evaluation of early efficacy of computer-assisted production of patient specific instrumentation osteotomy plate in unicompartmental knee arthroplasty.
Yu DENG ; Xin-Wen BAI ; Zhi ZHAO
China Journal of Orthopaedics and Traumatology 2025;38(7):687-692
OBJECTIVE:
To evaluate the early efficacy of computer-assisted production of patient specific instrumentation(PSI) osteotomy plate in unicompartmental knee arthroplasty.
METHODS:
A retrospective analysis was conducted on 22 patients with knee osteoarthritis who underwent unicompartmental knee arthroplasty using computer-assisted production of PSI osteotomy plate between January 2022 and November 2022. The study included 1 male and 21 females, ranged from 59.8 to 76.5 years old with an average of (68.1±6.3) years old. Surgical time, intraoperative blood loss, incision length, spacer thickness, postoperative complications, postoperative femoral component varus and valgus angle (FVVA), femoral component flexion and extension angle (FFEA), tibial component varus and valgus angle (TVVA), tibial component posterior slope angle (TPSA), hip-knee-ankle mechanical angle (HKAA), and preoperative and postoperative 1-month, 3-month Hospital for Special Surgery knee-rating (HSS) and American Knee Society Score (KSS) were measured.
RESULTS:
The surgical time was (65.18±6.05) minutes, blood loss was (9.32±5.44) g·L-1, incision length was (10.34±0.84) cm, and spacer thickness was (3.55±0.86) mm. The FVVA was (1.20±3.69)°, FFEA was (8.17±2.13)°, TVVA was (2.86±1.86)°, TPSA was (2.89±1.18)°, and HKAA was (183.15±1.46)°. The preoperative HSS score was (64.00±2.78) points, and KSS score was (Knee:59.09±6.16;Function:47.13±5.01). The postoperative 1-month HSS score was (74.91±3.57) points, and KSS score was (Knee:73.91±4.72;Function:65.46±6.38). The postoperative 3-month HSS score was (85.00±3.25) points, and KSS score was (Knee:83.00±2.88;Function:76.73±5.10). The comparison of preoperative and postoperative 1-month and 3-month HSS and KSS scores showed a statistically significant difference(P<0.05).
CONCLUSION
The early clinical efficacy of computer-assisted production of PSI osteotomy plate in unicompartmental knee arthroplasty for the treatment of knee osteoarthritis is satisfactory. This technique can simplify surgical procedures, improve the accuracy of osteotomy and implant placement, and help shorten the learning curve.
Humans
;
Male
;
Female
;
Arthroplasty, Replacement, Knee/methods*
;
Middle Aged
;
Aged
;
Osteotomy/methods*
;
Retrospective Studies
;
Bone Plates
;
Osteoarthritis, Knee/surgery*
;
Surgery, Computer-Assisted/methods*
;
Knee Joint/surgery*
6.Comparison study on short-term efficacy between ROSA orthopedic surgical robotic-assisted and traditional manual total knee arthroplasty.
Jia-Liang HU ; Rui-Xiang MA ; Maimaitiabula ABASI ; Chen ZHU
China Journal of Orthopaedics and Traumatology 2025;38(10):1009-1018
OBJECTIVE:
To compare the short-term clinical outcomes and radiographic results of robotic-assisted total knee arthroplasty (RATKA) using the ROSA robot with those of traditional total knee arthroplasty (TKA).
METHODS:
A retrospective analysis was conducted on 55 patients who underwent unilateral TKA due to end-stage knee osteoarthritis(KOA), defined as Kellgren-Lawrence grade Ⅲ or Ⅳ, between June 2024 and December 2024. The patients were divided into two groups based on the surgical approach:the RATKA group and the conventional TKA group. The RATKA group included 25 patients, consisting of 6 males and 19 females, aged from 46 to 84 years old with a mean of ( 65.20±1.93 ) years old. Among them, 11 cases involved the left knee and 14 cases involved the right knee. The traditional TKA group included 30 patients, consisting of 5 males and 25 females, aged from 57 to 85 years old with an average of (68.73±1.36) years old. Among them, 13 cases involved the left knee and 17 cases involved the right knee. Operation time, total perioperative blood loss, and postoperative complications were compared between the two groups. Radiographic evaluation included preoperative and postoperative hip-knee-ankle (HKA) angle, and postoperative lateral tibial component angle (LTC), frontal femoral component angle (FFC), sagittal lateral femoral component angle(LFC), and frontal tibial component (FTC), for the assessment of lower extremity mechanical axis and prosthesis position. The American Knee Society score(KSS), visual analogue scale(VAS) for pain, and range of motion (ROM) of the knee joint preoperatively and postoperatively were compared between the two groups to evaluate the short-term clinical efficacy.
RESULTS:
All surgeries in both groups were successfully completed without intraoperative vascular or nerve injury. Primary wound healing (GradeⅠ) was achieved in all cases, and no infection occurred during follow-up. A total of 55 patients completed the follow-up, with a follow-up duration ranging from 3 to 6 months with a mean of (4.0±1.1) months. The average operation time was (106.56±9.70) minutes in the RATKA group and (90.10±10.97) minutes in the traditional TKA group, with a statistically significant difference between the two groups (P<0.05). However, there was no statistically significant difference in the total perioperative blood loss between the two groups(P>0.05). Postoperative X-ray examinations showed that the prosthesis was well-positioned in all patients of both groups, with no signs of prosthesis loosening or dislocation. On the 1st day postoperatively, the HKA and FFC angle in the RATKA group were (179.25±2.50)° and (89.24±1.58)°, while those in the traditional TKA group were (177.68±2.73)° and (88.25±1.91)°, both showing statistically significant differences(P<0.05). In contrast, there were no statistically significant differences in the FTC, LTC, or LFC angles between the two groups(P>0.05). At 1 month and 3 months postoperatively, the ROM values were (110.68±4.92)° and (117.28±4.91)° in the RATKA group, and (106.25±6.89)° and (113.43±7.91)° in the traditional TKA group, both showing statistically significant difference(P<0.05). Nevertheless, there were no statistically significant differences in the VAS (both at rest and during movement) or KSS between the two groups at 1 month and 3 months postoperatively(P>0.05). Compared with the preoperative data, both groups showed significant improvements in the HKA angle, VAS(at rest and during movement), knee ROM, and KSS (both clinical and functional scores) postoperatively, with statistically significant differences(P<0.05).
CONCLUSION
Compared to traditional TKA, ROSA robotic system-assisted TKA in patients with severe knee osteoarthritis achieved superior accuracy in prosthesis positioning and lower limb mechanical axis restoration, showing satisfactory clinical outcomes. Although short-term outcomes are favorable, long-term clinical efficacy requires further investigation.
Humans
;
Male
;
Female
;
Arthroplasty, Replacement, Knee/methods*
;
Aged
;
Middle Aged
;
Aged, 80 and over
;
Robotic Surgical Procedures/methods*
;
Retrospective Studies
;
Osteoarthritis, Knee/surgery*
;
Treatment Outcome
;
Knee Joint/physiopathology*
7.Comparative study on gait function one year after HURWA robotic-assisted and MAKO robotic-assisted total knee arthroplasty based on MediaPipe motion capture.
Ming ZHANG ; Hao-Chong ZHANG ; Hao-Yue WANG ; Xiang LI
China Journal of Orthopaedics and Traumatology 2025;38(10):1019-1026
OBJECTIVE:
To systematically assess the differences in gait parameters and clinical efficacy between HURWA robot-assisted total knee arthroplasty(TKA) and MAKO robotic-assisted TKA during the 1-year postoperative follow-up period.
METHODS:
From November 2023 to March 2024, 40 patients with unilateral knee osteoarthritis were enrolled and randomly divided into two groups:HURWA robotic-assisted TKA group(HURWA group) and MAKO robotic-assisted TKA group (MAKO group) using a random number table. In the HURWA group, there were 20 patients, comprising 5 males and 15 females, with an age range of 59 to 79 years old with a mean age of (69.45±4.36) years old, and body mass index(BMI) ranging from 22.96 to 33.87 kg·m-2 with a mean BMI of (27.28±3.12) kg·m-2. In the MAKO group, there were also 20 patients, consisting of 4 males and 16 females, with an age range of 58 to 80 years old with an average of (67.50±6.88) years old, BMI ranging from 25.39 to 29.30 kg·m-2 with an average of(26.86 ±1.23) kg·m-2. To comprehensively evaluate the improvement in knee joint function, the Western Ontario and McMaster Universities osteoarthritis index (WOMAC) and American Knee Society score (KSS) were used for clinical efficacy evaluation. In gait analysis, an innovative computer vision-based human pose estimation framework, MediaPipe, was used to quantitatively measure the spatiotemporal parameters (such as walking speed, step frequency, stride length, step width, etc.) and kinematic parameters (such as gait cycle, stance time, stance phase, swing time, swing phase, knee joint active flexion angle, etc.) of both groups preoperatively and 1 year postoperatively. A dynamic evaluation of the maximum hip flexion and knee flexion angles during functional activities (such as squatting) was also conducted to fully reflect the recovery of patients' motor function.
RESULTS:
There were no significant differences in the WOMAC and KSS scores between the HURWA robotic-assisted TKA group and the MAKO robotic-assisted TKA group preoperatively and 1 year postoperatively (P>0.05). In terms of gait function, there were no significant differences in the spatiotemporal parameters (including walking speed, step frequency, stride length, step width, etc.) and kinematic parameters(such as gait cycle, stance time, stance phase, swing time, swing phase, knee joint active flexion angle, etc.) between the two groups preoperatively and 1 year postoperatively(P>0.05).
CONCLUSION
Both HURWA robot-assisted TKA and MAKO robot-assisted TKA demoonstrated equivalent outcones in terms of functional recovery and gait improvement 1 year postoperatively.
Humans
;
Male
;
Female
;
Arthroplasty, Replacement, Knee/methods*
;
Aged
;
Middle Aged
;
Gait
;
Robotic Surgical Procedures/methods*
;
Osteoarthritis, Knee/physiopathology*
;
Aged, 80 and over
;
Knee Joint/physiopathology*
;
Motion Capture
8.Impact of posterior cruciate ligament resection on the elasticity of the periarticular soft tissue sleeve in the knee joint.
Yun-Feng ZHANG ; De-Jin YANG ; Zhao-Lun WANG ; Yi-Xin ZHOU ; Hao TANG ; Xiang-Dong WU ; Han-Long ZHENG
China Journal of Orthopaedics and Traumatology 2025;38(10):1055-1060
OBJECTIVE:
To evaluate the effects of posterior cruciate ligament(PCL) resection on soft tissue elasticity and knee stability in total knee arthroplasty(TKA).
METHODS:
Six adult cadaveric knee specimens (involving 10 knees) were included in the study. With the assistance of the robotic system(TiRobot Recon, TINAVI, Beijing), total knee arthroplasty (TKA) was performed sequentially using cruciate retaining (CR) prostheses and posterior stabilizing (PS) prostheses. Between the two surgical procedures, the femoral and tibial osteotomy surfaces were not altered;only the posterior cruciate ligament (PCL) was resected and the intercondylar fossa was treated. After installing the femoral trial component, a soft tissue balance solver was used to apply tension ranging from 30 N to 90 N in 5 N increments at 0°, 10°, and 90° of knee flexion. Meanwhile, the medial and lateral joint gaps were measured synchronously. Based on the tension-gap coupling data, the equivalent elastic coefficients of the medial and lateral soft tissue sleeves at different knee flexion angles, as well as the range of the joint line convergence angle (JLCA) under fixed varus-valgus stress, were calculated. Additionally, the gap balance status under 80 N of tension was analyzed. Self-control comparisons of each indicator were conducted before and after PCL resection to analyze the change patterns.
RESULTS:
After PCL resection, in the fully extended position (knee flexion 0°). The medial equivalent elastic coefficient was 32.2 (25.7, 63.3) N·mm-1 for the CR prosthesis and 27.7 (22.0, 51.9) N·mm-1 for the PS prosthesis, and the statistically significant difference (P=0.013). The range of JLCA was 0.41°(0.26, 0.55)° for the CR prosthesis, which was smaller than 0.75° (0.40, 0.98)° for the PS prosthesis, and the difference was statistically significant(P=0.041). At 90° of knee flexion, the medial joint gap was 10.7(10.1, 11.7) mm for the CR prosthesis, which was smaller than 12.1(10.9, 15.1) mm for the PS prosthesis, with a statistically significant difference(P=0.011). No statistically significant differences were observed in other joint gaps.
CONCLUSION
PCL resection reduces the rigidity of the medial soft tissues in the fully extended knee and increases the medial joint gap in the flexed position, thereby affecting knee stability and balance. This finding suggests that PS and CR prostheses may require different morphological designs, and there should be differences in indications and osteotomy strategies between CR-TKA and PS-TKA. CR-TKA is more suitable for patients with preoperative medial soft tissue laxity.
Humans
;
Posterior Cruciate Ligament/physiopathology*
;
Knee Joint/physiopathology*
;
Arthroplasty, Replacement, Knee
;
Elasticity
;
Male
;
Female
;
Middle Aged
;
Aged
;
Biomechanical Phenomena
;
Adult
9.Machine learning models established to distinguish OA and RA based on immune factors in the knee joint fluid.
Qin LIANG ; Lingzhi ZHAO ; Yan LU ; Rui ZHANG ; Qiaolin YANG ; Hui FU ; Haiping LIU ; Lei ZHANG ; Guoduo LI
Chinese Journal of Cellular and Molecular Immunology 2025;41(4):331-338
Objective Based on 25 indicators including immune factors, cell count classification, and smear results of the knee joint fluid, machine learning models were established to distinguish between osteoarthritis (OA) and rheumatoid arthritis (RA). Methods 100 OA and 40 RA patients scheduled for total knee arthroplasty were enrolled respectively. Each patient's knee joint fluid was collected preoperatively. Nucleated cells were counted and classified. The expression levels of immune factors, including tumor necrosis factor alpha (TNF-α), interleukin-1 beta (IL-1β), IL-6, IL-8, IL-15, matrix metalloproteinase 3 (MMP3), MMP9, MMP13, rheumatoid factor (RF), serum amyloid A (SAA), C-reactive protein (CRP), and others were measured. Smears and microscopic classification of all the immune factors were performed. Independent influencing factors for OA or RA were identified using univariate binary logistic regression, Lasso regression, and multivariate binary logistic regression. Based on the independent influencing factors, three machine learning models were constructed which are logistic regression, random forest, and support vector machine. Receiver operating characteristic curve (ROC), calibration curve and decision curve analysis (DCA) were used to evaluate and compare the models. Results A total of 5 indicators in the knee joint fluid were screened out to distinguish OA and RA, which were IL-1β(odds ratio(OR)=10.512, 95× confidence interval (95×CI) was 1.048-105.42, P=0.045), IL-6 (OR=1.007, 95×CI was 1.001-1.014, P=0.022), MMP9 (OR=3.202, 95×CI was 1.235-8.305, P=0.017), MMP13 (OR=1.002, 95× CI was 1-1.004, P=0.049), and RF (OR=1.091, 95×CI was 1.01-1.179, P=0.026). According to the results of ROC, calibration curve and DCA, the accuracy (0.979), sensitivity (0.98) and area under the curve (AUC, 0.996, 95×CI was 0.991-1) of the random forest model were the highest. It has good validity and feasibility, and its distinguishing ability is better than the other two models. Conclusion The machine learning model based on immune factors in the knee joint fluid holds significant value in distinguishing OA and RA. It provides an important reference for the clinical early differential diagnosis, prevention and treatment of OA and RA.
Humans
;
Arthritis, Rheumatoid/metabolism*
;
Machine Learning
;
Male
;
Female
;
Middle Aged
;
Aged
;
Synovial Fluid/immunology*
;
Osteoarthritis, Knee/metabolism*
;
Knee Joint/metabolism*
;
ROC Curve
;
Diagnosis, Differential
10.Virtual cutting-based morphological differences in osteoarthritic and healthy knees: Implications for total knee arthroplasty prosthesis design.
Bin YU ; Yu ZHANG ; Dongdong CAO ; Jinchang HAN ; Weiyong WU ; Chao ZHANG ; Aifeng LIU
Chinese Journal of Traumatology 2025;28(6):436-444
PURPOSE:
End-stage knee osteoarthritis (OA) patients are the primary candidates for total knee arthroplasty (TKA). However, most morphological refinements of TKA prosthesis are based on anatomical data from the knees of healthy individuals. This study aimed to determine whether differences exist in key bony morphological characteristics of the distal femur and proximal tibia between osteoarthritic knees and healthy knees.
METHODS:
This was a retrospective cross-sectional observational study with a case-control design. Patients who were aged ≥ 50 years, had no history of trauma, fracture, or surgery in the studied knee, and had no obvious knee flexion contracture were included in this study by CT scans. Patients who met the American College of Rheumatology clinical criteria for knee OA were included in the study group. Kellgren-Lawrence grade III or IV knees were studied (for bilateral cases, the more severely affected knee was chosen). Patients who presented with unilateral knee pain or trauma were included in the control group, with CT scans from the opposite (asymptomatic) knee used for analyzing. The studied knee had a Kellgren-Lawrence grade of 0 or I and showed no abnormalities upon physical examination. Archived knee CT scans from 160 patients were divided into 2 groups: the study group (80 moderate-to-severe OA knees) and the control group (80 healthy knees). After 3-dimensional reconstruction and virtual cutting using a CT workstation, 13 morphological parameters of the distal femur and proximal tibia were compared between the 2 groups using independent-samples t-tests.
RESULTS:
No significant group differences in the femoral anteroposterior dimension (p = 0.797), height of the lateral femoral condyle (p = 0.268), posterior condylar angle (p = 0.240), tibial anteroposterior dimension (p = 0.536), or tibial lateral anteroposterior dimension (p = 0.702) were observed. However, the femoral mediolateral dimension (p = 0.002), distal femoral aspect ratio (femoral mediolateral dimension/femoral anteroposterior dimension) (p < 0.001), height of the femoral trochlear groove (p < 0.001), height of the medial femoral condyle (p < 0.001), tibial mediolateral dimension (p = 0.001), proximal tibial aspect ratio (tibial mediolateral dimension/tibial anteroposterior dimension) (p = 0.004), tibial medial anteroposterior dimension (p = 0.005), and tibial asymmetry ratio (tibial medial anteroposterior dimension/tibial lateral anteroposterior dimension) (p = 0.006) were all significantly greater in the study group.
CONCLUSION
Knees with moderate-to-severe OA are significantly wider than healthy knees, and OA is a risk factor for increased tibial platform asymmetry. When refining the morphological parameters of TKA prostheses, the specific bony morphological characteristics of OA knees should be taken into account to reduce the potential risk of femoral or tibial component underhang and facilitate optimal balance between tibial component fit and rotational alignment.
Humans
;
Osteoarthritis, Knee/pathology*
;
Male
;
Female
;
Cross-Sectional Studies
;
Retrospective Studies
;
Arthroplasty, Replacement, Knee
;
Middle Aged
;
Aged
;
Case-Control Studies
;
Prosthesis Design
;
Knee Prosthesis
;
Femur/anatomy & histology*
;
Tibia/anatomy & histology*
;
Tomography, X-Ray Computed
;
Knee Joint/diagnostic imaging*

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