Osteochondral transplantation with a dynamic external fixator is useful treatment for traumatic osteochondral defect of the finger. A case report

2017 ◽  
Vol 22 (5) ◽  
pp. 958-961
Author(s):  
Taketo Kurozumi ◽  
Takashi Suzuki ◽  
Masateru Shindo
Author(s):  
S Pinna ◽  
C Tassani ◽  
M Rossini ◽  
F Lanzi

The aim of this study was to report the outcome of the use of an external fixator to treat a pelvic canal stenosis in a 5-month-old female cat. The cat was referred with a history of 3 weeks of intermittent signs of constipation refractory to the medical management, occurring after surgical treatment for a bilateral sacroiliac luxation and sacral fracture. The clinical examination revealed instability of the pelvis and a radiograph showed a pelvic canal stenosis and megacolon. External fixator was the method of choice to be used in this case. The manually applied tension on an external fixator resulted in a widening of the pelvic canal. At 45 days after surgery, there were no signs of constipation, and the radiological examination showed progressive bone healing. At 18 months post-op, the cat had no abnormalities both on the clinical examination and on the radiography. In conclusion, the use of an external fixator led to the widening of the pelvic canal using a minimally invasive procedure. To the authors’ knowledge, this case report represents the first surgical description and clinical outcome of the widening of the pelvic canal in cats using an external skeletal fixator.


2011 ◽  
Vol 39 (11) ◽  
pp. 2457-2465 ◽  
Author(s):  
Ashraf M. Fansa ◽  
Christopher D. Murawski ◽  
Carl W. Imhauser ◽  
Joseph T. Nguyen ◽  
John G. Kennedy

Background: Autologous osteochondral transplantation procedures provide hyaline cartilage to the site of cartilage repair. It remains unknown whether these procedures restore native contact mechanics of the ankle joint. Purpose: This study was undertaken to characterize the regional and local contact mechanics after autologous osteochondral transplantation of the talus. Study Design: Controlled laboratory study. Methods: Ten fresh-frozen cadaveric lower limb specimens were used for this study. Specimens were loaded using a 6 degrees of freedom robotic arm with 4.5 N·m of inversion and a 300-N axial compressive load in a neutral plantar/dorsiflexion. An osteochondral defect was created at the centromedial aspect of the talar dome and an autologous osteochondral graft from the ipsilateral knee was subsequently transplanted to the defect site. Regional contact mechanics were analyzed across the talar dome as a function of the defect and repair conditions and compared with those in the intact ankle. Local contact mechanics at the peripheral rim of the defect and at the graft site were also analyzed and compared with the intact condition. A 3-dimensional laser scanning system was used to determine the graft height differences relative to the native talus. Results: The creation of an osteochondral defect caused a significant decrease in force, mean pressure, and peak pressure on the medial region of the talus ( P = .037). Implanting an osteochondral graft restored the force, mean pressure, and peak pressure on the medial region of the talus to intact levels ( P = .05). The anterior portion of the graft carried less force, while mean and peak pressures were decreased relative to intact ( P = .05). The mean difference in graft height relative to the surrounding host cartilage for the overall population was −0.2 ± 0.3 mm (range, −1.00 to 0.40 mm). Under these conditions, there was no correlation between height and pressure when the graft was sunken, flush, or proud. Conclusion/Clinical Relevance: Placement of the osteochondral graft in the most congruent position possible partially restored contact mechanics of the ankle joint. Persistent deficits in contact mechanics may be due to additional factors besides graft congruence, including structural differences in the donor cartilage when compared with the native tissue.


2007 ◽  
Vol 15 (3) ◽  
pp. 380-383 ◽  
Author(s):  
H Matsubara ◽  
H Tsuchiya ◽  
N Kawahara ◽  
T Kobayashi ◽  
T Morinaga ◽  
...  

2019 ◽  
Vol 20 (1) ◽  
Author(s):  
Morad Mohamad ◽  
Alexandre Ansorge ◽  
Diogo Vieira Cardoso ◽  
Axel Gamulin

Sign in / Sign up

Export Citation Format

Share Document