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1.
Chinese Journal of Reparative and Reconstructive Surgery ; (12): 964-969, 2023.
Artigo em Chinês | WPRIM | ID: wpr-1009009

RESUMO

OBJECTIVE@#To study the effectiveness of TightRope elastic fixation combined with functional total repair of the inferior tibiofibular ligament in the treatment of distal tibiofibular syndesmosis injury.@*METHODS@#The clinical data of 34 patients with distal tibiofibular syndesmosis injury who met the selection criteria between January 2020 and January 2022 were retrospectively analyzed, and they were divided into improved group (TightRope elastic fixation combined with functional total repair of inferior tibiofibular ligament) and control group (distal tibiofibular screw fixation) according to the surgical methods, with 17 cases in each group. There was no significant difference in age, gender, body mass index, fracture type, and other baseline data between the two groups (P>0.05). The operation time, intraoperative blood loss, and complications were recorded in the two groups. The American Orthopaedic Foot and Ankle Society (AOFAS) score, ankle metatarsal flexion and dorsal extension range of motion were used to evaluate the ankle function. The patient satisfaction survey was conducted at last follow-up.@*RESULTS@#All 34 patients were followed up 8-20 months, with a median of 13 months. The operation time and intraoperative blood loss in the improved group were significantly longer than that in the control group (P<0.05). In the improved group, no infection or poor reduction occurred, and only 1 patient had TightRope knot reaction at 6 months after operation. In the control group, there were 2 cases of poor reduction, 1 case of lower tibiofibular screw rupture, and 1 case of subcutaneous infection (cured after anti-infection treatment). There was no significant difference in the incidence of complications between the two groups (P>0.05). At last follow-up, the AOFAS score and ankle metatarsal flexion and dorsal extension range of motion of the improved group were significantly better than those of the control group (P<0.05). The satisfaction rates of patients in the improved group and the control group were 94.1% and 82.4%, respectively, showing significant difference (P<0.05).@*CONCLUSION@#TightRope elastic fixation combined with functional total repair of inferior tibiofibular ligament in the treatment of distal tibiofibular syndesmosis injury has sufficient fixation strength, and can achieve better effectiveness and joint function compared with traditional screw fixation.


Assuntos
Humanos , Articulação do Tornozelo/cirurgia , Perda Sanguínea Cirúrgica , Ligamentos/cirurgia , Procedimentos de Cirurgia Plástica , Estudos Retrospectivos , Traumatismos do Tornozelo/cirurgia
2.
Acta Anatomica Sinica ; (6): 628-632, 2022.
Artigo em Chinês | WPRIM | ID: wpr-1015290

RESUMO

Objective To discuss the anatomical characteristics of the syndesmotic ligament based on MRI images, and to provide anatomical basis for clinical syndesmotic ligament injury and ligament reconstruction. Methods Totally 228 cases of MRI data from diseased person enrolled in the Orthopedics and Traumatology Department of the Affiliated Traditional Chinese Medicine Hospital of Southwest Medical University from January 2010 to May 2021 were retrospectively studied. Measurement of corresponding geometrical data of the ligaments in syndesmosis were analysed. Results The average length of the syndesmosis anterior ligament was (9. 75±3. 54) mm, the average width (7. 27±3. 09) mm, and the average thickness (2. 50± 0. 93 ) mm. The angle with the horizontal plane was ( 47. 49 ± 14. 60) ° ; The average length of the posterior syndesmosis ligament of the lower tibia and fibula was (8. 94±2. 43) mm, the average width was (6. 70±2. 80) mm, the average thickness was (2. 32±1. 10) mm, and the angle with the horizontal plane was (40. 84±13. 13)°; the average length of the inferior transverse ligament was (9. 81±3. 21) mm, the average width was (2. 28±1. 51) mm, and the angle with the horizontal plane was 14. 59° ± 8. 02°; the average length of the inferior tibiofibular syndesmosis interosseous ligament was (12. 92±4. 77) mm, and the average width was (3. 28±1.99) mm. The anatomical data of the anterior, posterior, inferior transverse, and interosseous ligaments of the lower tibiofibular syndesmosis, male and female, were compared, and the differences were not statistically significant. Conclusion Studying the anatomical structures and characteristics of the syndesmotic ligament and analyzing the effect of the syndesmotic ligament on the stability of the ankle joint can offer effective diagnostic means or suggestions of syndesmosis injuries in the clinically diagnose and treat.

3.
Artigo | IMSEAR | ID: sea-203224

RESUMO

Logsplitter injury is an ankle joint injury caused by high-energyaxial violence with significant separation of inferior tibiofibularsyndesmosis. Surgery is the mainstay treatment. The fractureshould be treated in stages depending on the condition of thesoft tissue. The integrity and smoothness of the ankle jointsurface should be restored as much as possible during thesurgery. This article discusses the treatment strategies oflogsplitter injuries. Thorough research of the availableliteratures was done aiming to provide a standard treatmentprotocol. When combined with posterior malleolus fracture,anatomical reduction of posterior malleolus is necessary toreconstruct posterior tibial notch and then lateral malleolus.This reduction sequence is very important. Anatomical lockingplates have been widely used in the fixation of fibular fractures.Anatomical reduction and fixation of the inferior tibiofibularsyndesmosis is the key factor to achieve good functionalresults. There are still some controversies on how to accuratelyjudge the stability of the inferior tibiofibular syndesmosis.Screws are the main method of fixing the inferior tibiofibularsyndesmosis at present. Ankle arthroplasty or anklearthrodesis may be necessary if the cartilage of the ankle jointis extensively damaged or if the ankle joint is severelycomminuted. At present, the therapeutic and prognostic effectsof these injuries are poor. The main influencing factors includethe degree of injury, anatomical reduction of the fracture anddislocation, recovery of ankle stability and the reconstruction ofankle joint surface.

4.
Chinese Journal of Tissue Engineering Research ; (53): 5466-5471, 2013.
Artigo em Chinês | WPRIM | ID: wpr-435552

RESUMO

BACKGROUND:The traditional surgical method have large trauma in the treatment of tibiofibular syndesmosis injury, and cannot wel complete the repair of ligament. But the suture anchor has clear effect for ligament repair, ligament reconstruction and bone connection. OBJECTIVE:To investigate the biomechanical properties of the suture anchor in the treatment of tibiofibular syndesmotic injury, and to compare with lag screw internal fixation. METHODS:Eight ankle joint specimens were col ected, and the biomechanical experiment was performed for stress analysis. The suture anchor technology and lag screw internal fixation were used respectively to treat the tibiofibular syndesmotic injury. The biomechanical properties of the stress strength, stiffness and stability were compared. RESULTS AND CONCLUSION:The biomechanical properties of the stress strength, stiffness and stability of suture anchor technology for the treatment of tibiofibular syndesmotic injury were better than those of lag screw internal fixation, and there were significant differences in the strength and stiffness between two methods (P<0.05);the stress shielding rate of suture anchor technology was lower than that of lag screw internal fixation, and the difference was significant (P<0.05);the tibiofibular syndesmosis separated displacement of suture anchor technology was lower than that of lag screw internal fixation, and the difference was significant (P<0.05). The results indicate that the suture anchor technology is a minimal invasion and good method to realize physiological reconstruction and elastic fixation with stable fixation strength and less trauma, and without secondary operation.

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