Intervertebrale Cages aus biomechanischer Sicht
Author:
Publisher
Springer Science and Business Media LLC
Subject
Orthopedics and Sports Medicine
Link
http://link.springer.com/content/pdf/10.1007/s00132-014-3071-y.pdf
Reference38 articles.
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2. Gonzalez-Blohm SA, Doulgeris JJ, Aghayev K, Lee WE 3rd, Laun J, Vrionis FD (2014) In vitro evaluation of a lateral expandable cage and its comparison with a static device for lumbar interbody fusion: a biomechanical investigation. J Neurosurg Spine 20:387–395. doi:10.3171/2013.12.SPINE13798
3. Bhatia NN, Lee KH, Bui CN, Luna M, Wahba GM, Lee TQ (2012) Biomechanical evaluation of an expandable cage in single-segment posterior lumbar interbody fusion. Spine 37:E79–E85. doi:10.1097/BRS.0b013e3182226ba6
4. Pekmezci M, Tang JA, Cheng L, Modak A, McClellan RT, Buckley JM, Ames CP (2012) Comparison of expandable and fixed interbody cages in a human cadaver corpectomy model, part I: endplate force characteristics. J Neurosurg Spine 17:321–326. doi:10.3171/2012.7.SPINE12171
5. Pimenta L, Turner AW, Dooley ZA, Parikh RD, Peterson MD (2012) Biomechanics of lateral interbody spacers: going wider for going stiffer. Scientific World J 2012:381814. doi:10.1100/2012/381814
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1. Endplate weakening during cage bed preparation significantly reduces endplate load capacity;European Spine Journal;2024-05-11
2. Load distribution on intervertebral cages with and without posterior instrumentation;The Spine Journal;2023-11
3. Fusion’s Location and Quality within the Fixated Segment Following Transforaminal Interbody Fusion (TLIF);Healthcare;2023-10-24
4. A Comparison of Radiographic Alignment between Bilateral and Unilateral Interbody Cages in Patients Undergoing Transforaminal Lumbar Interbody Fusion;Asian Spine Journal;2023-08-31
5. Postoperative cage migration and subsidence following TLIF surgery is not associated with bony fusion;Scientific Reports;2023-08-03
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