Related Experiment Video
Updated: Jan 11, 2026

A Reliable and Reproducible Critical-Sized Segmental Femoral Defect Model in Rats Stabilized with a Custom External Fixator
Published on: March 24, 2019
Treatment of Supracondylar Femur Fractures in Cats with EFECE System
Ali Gülaydin1, Nihat Şindak1, Mustafa Barış Akgül1
1Department of Surgery, Faculty of Veterinary Medicine, Siirt University, Siirt, Türkiye.
Background:
Distal supracondylar femur fractures are common orthopaedic injuries in cats, requiring stable fixation for optimal healing. Traditional fixation methods have limitations, leading to the exploration of alternative techniques. The EFECE system, a novel fracture fixation method, aims to provide effective stabilization while minimizing complications.
Objectives:
This study evaluates the clinical and radiological outcomes of distal supracondylar femur fracture treatment in cats using the EFECE system.
Methods:
Eight cats diagnosed with distal supracondylar femur fractures were included. All cases were closed fractures treated using a limited open reduction technique followed by fixation with the EFECE system. Fracture healing time and complication rates were assessed through clinical and radiographic evaluations.
Results:
All fractures achieved complete healing, with no major complications observed. The mean healing time was 42.8 days (range: 35-56 days). Minor complications were observed in three out of the eight cats included in the study. Weight-bearing, behaviour and radiographic findings confirmed effective stabilization and compression of the fracture line using the EFECE system.
Conclusions:
The EFECE system provides a reliable and minimally invasive option for treating distal supracondylar femur fractures in cats, ensuring stable fixation and favourable clinical outcomes. Further studies with larger sample sizes are recommended to validate these findings.
More Related Videos
05:42Orthopedic Robot-Assisted Femoral Neck System in the Treatment of Femoral Neck Fracture
Published on: March 3, 2023
07:35Creating Rigidly Stabilized Fractures for Assessing Intramembranous Ossification, Distraction Osteogenesis, or Healing of Critical Sized Defects
Published on: April 11, 2012