Management of Bilateral Condylar Fractures in an Edentulous Patient with Atrophic Mandible Using CADCAM Technology

Author(s):  
Gabriel Duran-Rodriguez ◽  
Andrés Gómez-Delgado ◽  
Juan Pablo López
2021 ◽  
Vol 2021 ◽  
pp. 1-4
Author(s):  
Sahani Anupama ◽  
Pilana Vithanage Kalani Shihanika Hettiarachchi

Background. Fractures of the mandible are common in elderly patients, and among them, condylar fractures are the most frequent type. A change in occlusion is the most common physical finding in patients with fractures of the mandible. Therefore, it is challenging to identify mandibular fractures in posterior edentulous patients due to the lack of posterior occlusal contacts. It is crucial to do radiological investigations in such patients to exclude fractures. Case Presentation. This article describes a case of delayed diagnosis of a unilateral mandibular condylar fracture for a week’s duration and treating the condition as temporomandibular pathology in a posterior edentulous, 52-year-old patient. Conclusion. This clinical case highlights the importance of radiological investigations and occlusal analysis for early diagnosis of condylar fractures, particularly in posterior edentulous patients, lacking posterior occlusal contacts.


ASHA Leader ◽  
2013 ◽  
Vol 18 (6) ◽  
pp. 3-4
Keyword(s):  

Diet and the Edentulous Patient


1999 ◽  
Vol 12 (02) ◽  
pp. 88-91 ◽  
Author(s):  
D. D. Lewis ◽  
Susan M. Newell ◽  
O. I. Lanz

Successful treatment of humeral condylar fractures requires accurate reduction and rigid internal fixation which can be difficult to achieve in toy and/or miniature breed dogs. Stabilization of a Salter-Harris type IV physeal fracture of the numeral condyle was simplified by using Orthofix® partially-threaded Kirschner wire and provided excellent clinical results in a 1.5 kg miniature pinscher


Author(s):  
Logan M. Scheuermann ◽  
Michael G. Conzemius

Abstract Objective The aim of this study was to investigate the effects of an induced incomplete ossification of the humeral condyle (IOHC) lesion on ex vivo canine humeral condylar biomechanics. Study Design Nine paired cadaveric elbows were collected from mature dogs weighing between 20 and 25 kg. Left and right limbs were randomized to IOHC or normal groups. Limbs were prepared for mechanical testing; ligaments were preserved and an IOHC lesion was created. Elbows were potted, positioned into a biomaterials testing system at an angle of 135 degrees and axially loaded to failure at a rate of 30 mm/minute. Results Induced IOHC lesions reduced peak load (p = 0.02) when compared with an intact humerus. There was no difference between stiffness (p = 0.36) of intact humeri or humeri with an induced IOHC lesion. An induced IOHC lesion increased (p = 0.012) the probability of intracondylar fracture under load. Conclusion Cadaveric humeri are weakened by the creation of an intracondylar osteotomy and fractures secondary to induced IOHC are similar to spontaneous humeral condylar fractures. These findings support the hypothesis that naturally occurring IOHC weakens the humeral condyle and may predispose to humeral condylar fracture.


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