Extension-block pinning for fracture-dislocation of the proximal interphalangeal joint

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Extension block splinting for the proximal interphalangeal joint.

The Americanjoumal a/Occupational Therapy T he proXimal interphalangeal (PIP) joint is particularly susceptible to acute ligamentous injury, and such an injury can result in swelling without ligament laXity, collateral ligament laXity and disruption, or a partial or complete avulsion of the volar plate with or without bony involvement. Many articles have been written about methods for treatment...

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Recurrent Dislocation of the Proximal Interphalangeal Joint of the Finger: A Rare Issue in Hand Surgery

Recurrent dislocation is not common in small joints. This report presents a new case of chronic recurrent dislocation of proximal interphalangeal joint of the finger in which soft tissue injuries have a role in the dislocation. The patient was a 23 years old man who had referred to our center because of recurrent dislocation of proximal interphalangeal joint of his right ring finger during spor...

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Fracture-dislocations of the proximal interphalangeal joint.

Fracture-dislocations of the proximal interphalangeal joint encompass a spectrum of injury severity, ranging from injuries that require little intervention to those that require advanced reconstructive surgery for optimal outcome. Three fracture-dislocation patterns are recognized: dorsal, volar, and pilon. Acceptable outcome is dependent on achieving and maintaining a well-aligned and well-red...

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Rotational dislocation of the proximal interphalangeal joint of the finger.

We describe a case of rotational dislocation of the proximal interphalangeal joint of the ring finger. This injury was not initially appreciated and therefore closed reduction failed. The clinical findings included puckering of the skin on the dorsum of the joint and rotational incongruity on radiographs. At open reduction there was interposition of the lateral band. Identification of the patho...

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Computer simulation analysis of fracture dislocation of the proximal interphalangeal joint using the finite element method.

Stress is a proximal interphalangeal (PIP) joint model was analyzed by the two-dimensional and three-dimensional finite element methods (FEM) to study the onset mechanisms of the middle phalangeal base fracture. The structural shapes were obtained from sagittally sectioned specimens of the PIP joint for making FEM models. In those models, four different material properties were given correspond...

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ژورنال

عنوان ژورنال: Orthopaedics & Traumatology: Surgery & Research

سال: 2012

ISSN: 1877-0568

DOI: 10.1016/j.otsr.2012.02.009