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http://hdl.handle.net/11434/370
Title: | Assessment and classification of subsidence after lateral interbody fusion using serial computed tomography. |
Epworth Authors: | Malham, Gregory Blecher, Carl |
Other Authors: | Seex, Kevin Parker, Rhiannon |
Keywords: | Neurosciences Clinical Institute, Epworth HealthCare, Victoria, Australia Neurosurgery Neurosciences CT Fusion Lumbar Minimally Invasive Spine Subsidence Bone Remodeling ECS DCS LIF MIS Delayed Cage Subsidence Lumbar Lateral Interbody Fusion Minimally Invasive Surgery Early Cage Subsidence Neurological Procedures Radiology Department, Epworth Hospital, Melbourne, Victoria |
Issue Date: | Jul-2015 |
Publisher: | American Association of Neurological Surgeons |
Citation: | J Neurosurg Spine. 2015 Jul 24:1-9 |
Abstract: | Intervertebral cage settling during bone remodeling after lumbar lateral interbody fusion (LIF) is a common occurrence during the normal healing process. Progression of this settling with endplate collapse is defined as subsidence. The purposes of this study were to 1) assess the rate of subsidence after minimally invasive (MIS) LIF by CT, 2) distinguish between early cage subsidence (ECS) and delayed cage subsidence (DCS), 3) propose a descriptive method for classifying the types of subsidence, and 4) discuss techniques for mitigating the risk of subsidence after MIS LIF. |
Description: | Epub ahead of print. |
URI: | http://hdl.handle.net/11434/370 |
PubMed URL: | http://www.ncbi.nlm.nih.gov/pubmed/26207320 |
ISSN: | 1547-5646 |
Journal Title: | Journal of Neurosurgery. Spine. |
Type: | Journal Article |
Affiliated Organisations: | Neurosurgery Department, Macquarie University, Sydney, New South Wales, Australia |
Type of Clinical Study or Trial: | Cohort Study |
Appears in Collections: | Diagnostic Services Musculoskeletal Neurosciences |
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