Background: The current treatment of displaced intra-articular calcaneal fractures has been surgical fixation. The objective of this study was to evaluate the use of indirect reduction with Ilizarov external fixation as a viable alternative in the surgical treatment of certain calcaneal fractures.
Methods: Thirty-one patients with 33 fractures of the calcaneus (Sanders types II, III, and IV) were treated using small wire circular external fixation. A limited percutaneous plantar skin incision was used to improve reduction of the posterior facet. Fractures were evaluated by preoperative CT scans and classified by an independent observer. Patients were evaluated by physical examination as well as by the AOFAS hindfoot score questionnaire. Followup ranged from 6 months to 4 years.
Results: The average AOFAS score for 18 patients available for examination was 66 (42 to 92). The average score increased to 74 for patients with more than 10 months followup and to 77 for patients with isolated calcaneal fractures. Open fractures also had early debridement and soft-tissue coverage; no deep infections were seen in this subgroup. There were 11 complications, including nine superficial pin track infections, one superficial skin necrosis under an area of fracture blister, and one deep infection in a diabetic smoker with severe hemorrhagic fracture blisters. All superficial infections responded to local pin or wound care and oral antibiotics. No secondary reconstructive procedures, including osteotomies, subtalar fusions, or amputations, have been done. All open fractures healed and maintained soft-tissue coverage.
Conclusions: Indirect reduction and external fixation is a viable surgical alternative for intra-articular calcaneal fractures. Particularly favorable results were obtained in open fractures when soft-tissue reconstruction also was done. Advantages include shorter time to surgery, immediate weightbearing, minimal invasiveness, few serious wound problems, and no residual hardware. Disadvantages include technical difficulty, incomplete reduction of fracture fragments, and the need for secondary surgery (fixator removal).
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http://dx.doi.org/10.1177/107110070602700703 | DOI Listing |
Tech Hand Up Extrem Surg
January 2025
Department of Orthopaedics, Virginia Commonwealth University Health System, Central Virginia Veteran Affairs Health Care System, Richmond, VA.
Managing rerupture of the triceps brachii tendon after surgical repair is challenging due to poor tissue quality, retraction, and adhesions. This clinical scenario often requires augmentation with native tissue or tendon allografts. Traditional techniques include V-Y advancement, reinforced triceps advancement with double row or suture bridge fixation, and allograft tendon augmentation.
View Article and Find Full Text PDFMed Biol Eng Comput
January 2025
School of Medical Engineering, Department of Cardiology of The First Affiliated Hospital of Xinxiang Medical University, Xinxiang Medical University, Xinxiang, 453003, Henan, China.
The research aims to investigate the mechanical response of footfalls at different velocities to understand the mechanism of heel injury and provide a scientific basis for the prevention and treatment of heel fractures. A three-dimensional solid model of foot drop was constructed using anatomical structures segmented from medical CT scans, including bone, cartilage, ligaments, plantar fascia, and soft tissues, and the impact velocities of the foot were set to be 2 m/s, 4 m/s, 6 m/s, 8 m/s, and 10 m/s. Explicit kinetic analysis methods were used to investigate the mechanical response of the foot landing with different speeds to explore the damage mechanism of heel bone at different impact velocities.
View Article and Find Full Text PDFJ Orthop Surg Res
January 2025
Orthopaedic Department, Assiut Faculty of Medicine, Assiut University Hospital, Assiut University, Kasr Elini Street, Number 7, P.O. Box 110, Assuit, 71515, Egypt.
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View Article and Find Full Text PDFJ Clin Densitom
December 2024
INEFC-Barcelona Research Group on Sport Sciences (GRCE), National Institute of Physical Education of Catalonia (INEFC), University of Barcelona, Barcelona (UB), Spain. Electronic address:
This study aimed to assess the calcaneal bone mineral density (BMD) of elite female trail runners and evaluate its reliability using a novel DXA method. It also examined the relationship between calcaneal BMD and other regions of interest to better understand bone health in this specific population. A cross-sectional study was conducted with 35 elite female trail runners from the Spanish national team.
View Article and Find Full Text PDFFoot (Edinb)
December 2024
Maimonides Medical Center, Department of Orthopedic Surgery, 4802 Tenth Avenue, Brooklyn, NY 11219, United States.
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