1. Wang YXJ, Káplár Z, Deng M, Leung JCS. Lumbar degenerative spondylolisthesis epidemiology: A systematic review with a focus on gender-specific and age-specific prevalence. J Orthop Translat 2017; 11: 39–52.
2. Atalay B, Gadjradj PS, Sommer FS, Wright D, Rawanduzy C, Ghogawala Z et al. Natural History of Degenerative Spondylolisthesis: A Systematic Review and Meta-analysis. World Neurosurg 2023; 176: e634–e643.
3. Bydon M, Alvi MA, Goyal A. Degenerative Lumbar Spondylolisthesis: Definition, Natural History, Conservative Management, and Surgical Treatment. Neurosurg Clin N Am 2019; 30: 299–304.
4. Chan AK, Sharma V, Robinson LC, Mummaneni PV. Summary of Guidelines for the Treatment of Lumbar Spondylolisthesis. Neurosurg Clin N Am 2019; 30: 353–364.
5. Alomari S, Judy B, Sacino AN, Porras JL, Tang A, Sciubba D et al. Isthmic spondylolisthesis in adults… A review of the current literature. Journal of Clinical Neuroscience 2022; 101: 124–130.
6. Bhalla A, Bono CM. Isthmic Lumbar Spondylolisthesis. Neurosurg Clin N Am 2019; 30: 283–290.
7. Arita S, Ishimoto Y, Hashizume H, Nagata K, Teraguchi M, Muraki S et al. Age-related prevalence of radiographic lumbar spondylolisthesis and its associations with low back pain, walking speed, and muscle index: findings from the second survey of the ROAD study. European Spine Journal 2025; 34: 1359–1365.
8. Kreiner DS, Baisden J, Mazanec DJ, Patel RD, Bess RS, Burton D et al. Guideline summary review: an evidence-based clinical guideline for the diagnosis and treatment of adult isthmic spondylolisthesis. The Spine Journal 2016; 16: 1478–1485.
9. Karsy M, Bisson EF. Surgical Versus Nonsurgical Treatment of Lumbar Spondylolisthesis. Neurosurg Clin N Am 2019; 30: 333–340.
10. Reitman CA, Cho CH, Bono CM, Ghogawala Z, Glaser J, Kauffman C et al. Management of degenerative spondylolisthesis: development of appropriate use criteria. The Spine Journal 2021; 21: 1256–1267.
11. Gadjradj PS, Basilious M, Goldberg JL, Sommer F, Navarro-Ramirez R, Mykolajtchuk C et al. Decompression alone versus decompression with fusion in patients with lumbar spinal stenosis with degenerative spondylolisthesis: a systematic review and meta-analysis. European Spine Journal 2023; 32: 1054–1067.
12. Noorian S, Sorensen K, Cho W. A systematic review of clinical outcomes in surgical treatment of adult isthmic spondylolisthesis. The Spine Journal 2018; 18: 1441–1454.
13. Sastry RA, Levy JF, Chen JS, Weil RJ, Oyelese AA, Fridley JS et al. Lumbar Decompression with and Without Fusion for Lumbar Stenosis with Spondylolisthesis: A Cost Utility Analysis. Spine (Phila Pa 1976) 2024; 49: 847–856.
14. Ahlquist S, Park HY, Gatto J, Shamie AN, Park DY. Does approach matter? A comparative radiographic analysis of spinopelvic parameters in single-level lumbar fusion. Spine Journal 2018; 18: 1999–2008.
15. Amaral R, Pokorny G, Marcelino F, Moriguchi R, Pokorny J, Barreira I et al. Lateral versus posterior approaches to treat degenerative lumbar pathologies–systematic review and meta-analysis of recent literature. European Spine Journal 2023; 32: 1655–1677.
16. Marchi L, Fortti F, Jensen R, Amaral RA, Coutinho E, Oliveira L et al. Stand-Alone Lateral Lumbar Interbody Fusion: Preoperative Risk Factors for Subsidence. The Spine Journal 2016; 16: S267.
17. Oliveira L, Marchi L, Coutinho E, Pimenta L. The subsidence rate in XLIF osteoporotic patients in standalone procedures. The Spine Journal 2010; 10: S51–S52.
18. Oliveira L, Marchi L, Coutinho E, Pimenta L. Standalone anterior interbody fusion procedure for the treatment of low-grade spondylolisthesis: a case series. WSC J 2010; 1: 194–200.
19. Marchi L, Pimenta L, Amaral R, Fortti F, Nogueira-Neto J, Oliveira L et al. In which patients is it possible to perform standalone lateral lumbar interbody fusion without cage subsidence? Coluna/Columna 2016; 15: 226–229.
20. Keorochana G, Setrkraising K, Woratanarat P, Arirachakaran A, Kongtharvonskul J. Clinical outcomes after minimally invasive transforaminal lumbar interbody fusion and lateral lumbar interbody fusion for treatment of degenerative lumbar disease: a systematic review and meta-analysis. Neurosurg Rev. 2018; 41: 755–770.
21. Sembrano JN, Tohmeh A, Isaacs R. Two-year Comparative Outcomes of MIS Lateral and MIS Transforaminal Interbody Fusion in the Treatment of Degenerative Spondylolisthesis: Part I: Clinical Findings. Spine (Phila Pa 1976) 2016; 41 Suppl 8: s123–s132.
22. Sembrano JN, Tohmeh A, Isaacs R. Two-year Comparative Outcomes of MIS Lateral and MIS Transforaminal Interbody Fusion in the Treatment of Degenerative Spondylolisthesis: Part I: Clinical Findings. Spine 2016; 41 Suppl 8: S123-132.
23. Ko MJ, Park SW, Kim YB. Correction of spondylolisthesis by lateral lumbar interbody fusion compared with transforaminal lumbar interbody fusion at L4–5. J Korean Neurosurg Soc 2019; 62: 422–431.
24. Kono Y, Gen H, Sakuma Y, Koshika Y. Comparison of Clinical and Radiologic Results of Mini-Open Transforaminal Lumbar Interbody Fusion and Extreme Lateral Interbody Fusion Indirect Decompression for Degenerative Lumbar Spondylolisthesis. Asian Spine J 2018; 12: 356.
25. Daniels AH, Daher M, Nassar JE, Haddad S, Boissiere L, Hurley RK et al. Transforaminal Versus Anterior Lumbar Interbody Fusion at L5-S1 for Degenerative Spine Disease. Spine (Phila Pa 1976) 2025; 50: E231–E239.
26. Lightsey HM, Pisano AJ, Striano BM, Crawford AM, Xiong GX, Hershman S et al. ALIF Versus TLIF for L5-S1 Isthmic Spondylolisthesis: ALIF Demonstrates Superior Segmental and Regional Radiographic Outcomes and Clinical Improvements Across More Patient-reported Outcome Measures Domains. Spine (Phila Pa 1976) 2022; 47: 808–816.
27. Alhaug OK, Dolatowski FC, Thyrhaug AM, Mjønes S, Dos Reis JABPR, Austevoll I. Long-term comparison of anterior (ALIF) versus transforaminal (TLIF) lumbar interbody fusion: a propensity score-matched register-based study. European Spine Journal 2024; 33: 1109–1119.
28. Rathbone J, Rackham M, Nielsen D, Lee SM, Hing W, Riar S et al. A systematic review of anterior lumbar interbody fusion (ALIF) versus posterior lumbar interbody fusion (PLIF), transforaminal lumbar interbody fusion (TLIF), posterolateral lumbar fusion (PLF). European Spine Journal 2023; 32: 1911–1926.
29. Pimenta L, Amaral R, Taylor W, Tomeh A, Pokorny G, Rodrigues R et al. The prone transpsoas technique: preliminary radiographic results of a multicenter experience. European Spine Journal 2020. doi:10.1007/s00586-020-06471-y.
30. Pimenta L, Taylor WR, Stone LE, Wali AR, Santiago-Dieppa DR. Prone transpsoas technique for simultaneous single position access to the anterior and posterior spine. Oper Neurosurg 2020.
31. Amaral R, Daher MT, Pratali R, Arnoni D, Pokorny G, Rodrigues R et al. The Effect of Patient Position on Psoas Morphology and in Lumbar Lordosis. World Neurosurg 2021; 153: e131–e140.
32. Smith TG, Pollina J, Joseph SA, Howell KM. Effects of Surgical Positioning on L4-L5 Accessibility and Lumbar Lordosis in Lateral Transpsoas Lumbar Interbody Fusion: A Comparison of Prone and Lateral Decubitus in Asymptomatic Adults. World Neurosurg 2021; 149: e705–e713.
33. Beck AW, Simpson AK. High-Grade Lumbar Spondylolisthesis. Neurosurg Clin N Am 2019; 30: 291–298.
34. Kim M, Kim HS, Oh SW, Adsul NM, Singh R, Kashlan ON et al. Evolution of spinal endoscopic surgery. Neurospine 2019; 16: 6–14.
35. Pimenta L, Taylor WR, Stone LE, Wali AR, Santiago-Dieppa DR. Prone Transpsoas Technique for Simultaneous Single-Position Access to the Anterior and Posterior Lumbar Spine. Oper Neurosurg (Hagerstown) 2020; 20: E5–E12.
36. Harrison DJ, Bhandarkar AR, Durrani S, Zamanian C, Singh R, Bydon M. Emerging innovations for lumbar spondylolisthesis management: a systematic review of active and prospective clinical trials. Neurosurg Rev 2022; 45: 3629–3640.
37. André A, Peyrou B, Carpentier A, Vignaux J-J. Feasibility and Assessment of a Machine Learning-Based Predictive Model of Outcome After Lumbar Decompression Surgery. Global Spine J 2020; : 2192568220969373.
38. Shah AA, Devana SK, Lee C, Bugarin A, Lord EL, Shamie AN et al. Prediction of Major Complications and Readmission After Lumbar Spinal Fusion: A Machine Learning–Driven Approach. World Neurosurg 2021; 152: e227–e234.