A Simple Versatile Technique to Retrieve Polyaxial Tulip-head Spinal Pedicle Screws Following Failed Pedicle Screw Removal: A Technical Note With Analysis of Efficacy and Outcomes
{"title":"A Simple Versatile Technique to Retrieve Polyaxial Tulip-head Spinal Pedicle Screws Following Failed Pedicle Screw Removal: A Technical Note With Analysis of Efficacy and Outcomes","authors":"N. Uvaraj, Aju Bosco","doi":"10.1097/BTO.0000000000000564","DOIUrl":null,"url":null,"abstract":"Introduction: With increase in the number of thoracolumbar spine surgeries using pedicle screw instrumentation, there is a proportionate increase in the number of revision surgeries requiring implant removal. Lack of standardization in manufacturing spinal pedicle screws has led to diverse variations in their design and dimensions. Removal of polyaxial pedicle screws becomes extremely difficult when there is a mismatch between their tulip-head and the screwdriver. With the rapidly changing concepts and designs of spinal pedicle screws this problem may arise when the appropriate pedicle screw instrumentation is out of production. There may be a need for special instruments or an array of screwdrivers of various dimensions/designs to overcome this problem. We describe a simple yet versatile technique to remove polyaxial tulip-head pedicle screws using commonly available instruments in the spinal instrumentation set. Materials and Methods: Polyaxial screws were removed after converting them into monoblock screws using the appropriate set-screw screwdriver, a 25-mm long 5.5 mm rod, and a counter torque wrench. Results: Using this technique we have successfully removed 167 screws in 53 revision surgeries [instrumented fusions for lumbar degenerative diseases (n=21), thoracolumbar fractures (n=15), and scoliosis (n=17)]. No failed retrievals or complications like pedicle breach or neurological deficit were observed. Discussion: The described technique is simple to execute, effective, quick, and safe. It is versatile and can be used to remove polyaxial pedicle screws of any design in the thoracic and lumbar spine using the commonly available instruments in the routine spinal instrumentation set (appropriate set-screw screwdriver, a 25-mm long 5.5 mm rod, a counter torque wrench).","PeriodicalId":45336,"journal":{"name":"Techniques in Orthopaedics","volume":"3 1","pages":"171 - 174"},"PeriodicalIF":0.2000,"publicationDate":"2021-07-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Techniques in Orthopaedics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1097/BTO.0000000000000564","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q4","JCRName":"ORTHOPEDICS","Score":null,"Total":0}
引用次数: 0
Abstract
Introduction: With increase in the number of thoracolumbar spine surgeries using pedicle screw instrumentation, there is a proportionate increase in the number of revision surgeries requiring implant removal. Lack of standardization in manufacturing spinal pedicle screws has led to diverse variations in their design and dimensions. Removal of polyaxial pedicle screws becomes extremely difficult when there is a mismatch between their tulip-head and the screwdriver. With the rapidly changing concepts and designs of spinal pedicle screws this problem may arise when the appropriate pedicle screw instrumentation is out of production. There may be a need for special instruments or an array of screwdrivers of various dimensions/designs to overcome this problem. We describe a simple yet versatile technique to remove polyaxial tulip-head pedicle screws using commonly available instruments in the spinal instrumentation set. Materials and Methods: Polyaxial screws were removed after converting them into monoblock screws using the appropriate set-screw screwdriver, a 25-mm long 5.5 mm rod, and a counter torque wrench. Results: Using this technique we have successfully removed 167 screws in 53 revision surgeries [instrumented fusions for lumbar degenerative diseases (n=21), thoracolumbar fractures (n=15), and scoliosis (n=17)]. No failed retrievals or complications like pedicle breach or neurological deficit were observed. Discussion: The described technique is simple to execute, effective, quick, and safe. It is versatile and can be used to remove polyaxial pedicle screws of any design in the thoracic and lumbar spine using the commonly available instruments in the routine spinal instrumentation set (appropriate set-screw screwdriver, a 25-mm long 5.5 mm rod, a counter torque wrench).
期刊介绍:
The purpose of Techniques in Orthopaedics is to provide information on the latest orthopaedic procedure as they are devised and used by top orthopaedic surgeons. The approach is technique-oriented, covering operations, manipulations, and instruments being developed and applied in such as arthroscopy, arthroplasty, and trauma. Each issue is guest-edited by an expert in the field and devoted to a single topic.