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Extraction of Broken Tibial Interlock Nail with a Retrograde Hooked Guide Wire: A Novel Surgical Technique. | LitMetric

Introduction: Removal of a distal piece of a broken nail often possesses a technical challenge. Several methods have been described in the past to extract a distal piece by using specialized instruments like such as hooks, olive wires, and talwalkar radial square nail etc. It is difficult to extract a distal piece from a proximal incision site and often fracture or the nonunion site has to be opened. In this article, we describe a novel technique to extract a distal piece of broken intramedullary tibia nail by retrograde manner using a guide wire with a "'U"' shaped bend at its distal end to hook the tip of a distal piece of broken nail and help in extraction.

Case Report: A 43- year-s old male presented with complain of pain in left leg since 3 months. Patient had sustained left- sided compound Grade 2 tibia shaft fracture in a road traffic accident 4 years back. He was operated with tibia interlock nail followed by skin grafting for wound coverage in a different facility. On clinical examination: There was tenderness around distal tibia, no swelling, no coronal or sagittal plane fracture mobility, and no crepitus or loss of transmitted movements which suggested fracture union clinically. Radiographs confirmed complete union of tibia shaft fracture with hypertrophic nonunion of distal fibula with broken intramedullary nail IMN at the level of proximal most screw hole of distal locking holes with both distal locking screws broken. As fracture was united, we planned for removal of broken nail without opening fracture site. For extraction for distal tibial broken nail part, we used this new Retrograde Hooked Guide Wire technique.

Conclusion: It is a simple, cost effective, minimally invasive procedure with minimal blood loss and decrease time of surgery that can be used before attempting more invasive extraction methods and hence should be included in standard procedures for extraction.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8422007PMC
http://dx.doi.org/10.13107/jocr.2021.v11.i05.2196DOI Listing

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