Adams MA, Roughley PJ (2006) What is intervertebral disc degeneration, and what causes it? Spine 31(18):2151–2161
Wong AYL, Karppinen J, Samartzis D (2017) Low back pain in older adults: risk factors, management options and future directions. Scoliosis Spinal Disord 12:14
Article PubMed PubMed Central Google Scholar
Battie MC, Videman T, Levalahti E, Gill K, Kaprio J (2007) Heritability of low back pain and the role of disc degeneration. Pain 131(3):272–280
Hoy D, Bain C, Williams G et al (2012) A systematic review of the global prevalence of low back pain. Arthritis Rheum 64(6):2028–2037
Teraguchi M, Hashizume H, Oka H et al (2022) Detailed subphenotyping of Lumbar Modic Changes and Their Association with Low Back Pain in a large Population-based study: the Wakayama Spine Study. Pain Ther 11(1):57–71
Hanhivaara J, Maatta JH, Karppinen J, Niinimaki J, Nevalainen MT (2022) The Association of Lumbosacral Transitional Vertebrae with Low Back Pain and lumbar degenerative findings in MRI: a large cohort study. Spine 47(2):153–162
Maatta JH, Karppinen J, Paananen M et al (2016) Refined phenotyping of Modic Changes: imaging biomarkers of prolonged severe low back Pain and Disability. Med (Baltim) 95(22):e3495
Maatta JH, Karppinen JI, Luk KD, Cheung KM, Samartzis D (2015) Phenotype profiling of Modic changes of the lumbar spine and its association with other MRI phenotypes: a large-scale population-based study. Spine J 15(9):1933–1942
Brinjikji W, Luetmer PH, Comstock B et al (2015) Systematic literature review of imaging features of spinal degeneration in asymptomatic populations. AJNR Am J Neuroradiol 36(4):811–816
Article CAS PubMed PubMed Central Google Scholar
Ravindra VM, Senglaub SS, Rattani A et al (2018) Degenerative lumbar spine disease: estimating Global Incidence and Worldwide volume. Global Spine J 8(8):784–794
Article PubMed PubMed Central Google Scholar
Wilson JF (2008) The clinic. Low back pain. Ann Intern Med 148(9):ITC5-1-ITC
Takeda K, Okada E, Shinozaki Y et al (2022) Risk factors for early-onset radiographical adjacent segment disease in patients with spondylolytic spondylolisthesis after single-level posterior lumbar interbody fusion. Spine J 22(7):1112–1118
Ye F, Lyu FJ, Wang H, Zheng Z (2022) The involvement of immune system in intervertebral disc herniation and degeneration. JOR Spine 5(1):e1196
Article CAS PubMed PubMed Central Google Scholar
Hilibrand AS, Robbins M (2004) Adjacent segment degeneration and adjacent segment disease: the consequences of spinal fusion? Spine J 4(6 Suppl):190S–4S
Lau KKL, Samartzis D, To NSC, Harada GK, An HS, Wong AYL (2021) Demographic, Surgical, and Radiographic Risk factors for symptomatic adjacent segment disease after lumbar Fusion: a systematic review and Meta-analysis. J bone Joint Surg Am Volume 103(15):1438–1450
Cloward RB (1953) The treatment of ruptured lumbar intervertebral discs by vertebral body fusion. I. indications, operative technique, after care. J Neurosurg 10(2):154–168
Article CAS PubMed Google Scholar
Cloward RB (1953) The treatment of ruptured lumbar intervertebral discs; criteria for spinal fusion. Am J Surg 86(2):145–151
Article CAS PubMed Google Scholar
Kim D-W, Kim J-H, Ryu D-S, Yoon S-H (2020) The risk factors of early and late-onset adjacent segment degeneration after Thoracolumbar Fusion surgery. Nerve 6(2):66–71
Wong AYL, Harada G, Lee R et al (2021) Preoperative paraspinal neck muscle characteristics predict early onset adjacent segment degeneration in anterior cervical fusion patients: a machine-learning modeling analysis. J Orthop Res 39(8):1732–1744
Ebrahimkhani M, Arjmand N, Shirazi-Adl A (2021) Biomechanical effects of lumbar fusion surgery on adjacent segments using musculoskeletal models of the intact, degenerated and fused spine. Sci Rep 11(1):17892
Article CAS PubMed PubMed Central Google Scholar
Srinivas GR, Kumar MN, Deb A (2017) Adjacent disc stress following floating lumbar Spine Fusion: a finite element study. Asian Spine J 11(4):538–547
Article PubMed PubMed Central Google Scholar
Wawrose RA, LeVasseur CM, Byrapogu VK et al (2020) In vivo changes in adjacent segment kinematics after lumbar decompression and fusion. J Biomech 102:109515
Lee CS, Hwang CJ, Lee SW et al (2009) Risk factors for adjacent segment disease after lumbar fusion. Eur Spine J 18(11):1637–1643
Article PubMed PubMed Central Google Scholar
Ye J, Yang S, Wei Z et al (2021) Incidence and risk factors for adjacent segment disease after transforaminal lumbar Interbody Fusion in patients with lumbar degenerative diseases. Int J Gen Med 14:8185–8192
Article PubMed PubMed Central Google Scholar
Kwok WCH, Wong CYY, Law JHW et al (2022) Risk factors for adjacent segment Disease following Anterior Cervical Discectomy and Fusion with plate fixation: a systematic review and Meta-analysis. J bone Joint Surg Am Volume 104(21):1915–1945
Masevnin S, Ptashnikov D, Michaylov D, Meng H, Smekalenkov O, Zaborovskii N (2015) Risk factors for adjacent segment disease development after lumbar fusion. Asian Spine J 9(2):239–244
Article PubMed PubMed Central Google Scholar
Wang T, Ding W (2020) Risk factors for adjacent segment degeneration after posterior lumbar fusion surgery in treatment for degenerative lumbar disorders: a meta-analysis. J Orthop Surg Res 15(1):582
Article PubMed PubMed Central Google Scholar
Park P, Garton HJ, Gala VC, Hoff JT, McGillicuddy JE (2004) Adjacent segment disease after lumbar or lumbosacral fusion: review of the literature. Spine 29(17):1938–1944
Lafage R, Schwab F, Glassman S et al (2017) Age-Adjusted Alignment Goals have the potential to reduce PJK. Spine 42(17):1275–1282
Schwab F, Patel A, Ungar B, Farcy JP, Lafage V (2010) Adult spinal deformity-postoperative standing imbalance: how much can you tolerate? An overview of key parameters in assessing alignment and planning corrective surgery. Spine 35(25):2224–2231
Kim HJ, Bridwell KH, Lenke LG et al (2014) Patients with proximal junctional kyphosis requiring revision surgery have higher postoperative lumbar lordosis and larger sagittal balance corrections. Spine 39(9):E576–E580
Babu R, Park JG, Mehta AI et al (2012) Comparison of superior-level facet joint violations during open and percutaneous pedicle screw placement. Neurosurgery 71(5):962–970
Oh HS, Seo HY (2021) The relationship between adjacent Segment Pathology and Facet Joint violation by Pedicle Screw after posterior lumbar instrumentation surgery. J Clin Med. ;10(13)
Jia L, Yu Y, Khan K et al (2018) Superior Facet Joint Violations during single level minimally invasive transforaminal lumbar Interbody Fusion: a preliminary Retrospective Clinical Study. Biomed Res Int 2018:6152769
Article PubMed PubMed Central Google Scholar
Cazzulino A, Gandhi R, Woodard T et al (2021) Soft landing technique as a possible prevention strategy for proximal junctional failure following adult spinal deformity surgery. J Spine Surg 7(1):26–36
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