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Tratado de Cirurgia da Coluna Vertebral
SECTION 8 • Surgical Techniques
Chapter72

ANTERIOR LUMBAR INTERBODY FUSION (ALIF)

Vancouver: Teles AR, Martins AGS, Ludwig GA📖 Pages: 909-918
Full reading of this chapter is available exclusively in the printed edition of the Treatise.
Sec. 8Surgical Techniques
Cap. 72Clinical Chapter
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Chapter Summary

• Context: Anterior Lumbar Interbody Fusion (ALIF) is the premier surgical technique for direct anterior column reconstruction at the lumbosacral junction (L5-S1) and lower lumbar spine (L4-L5). By approaching the spine directly through the retroperitoneal or transperitoneal anterior corridor, ALIF provides unmatched direct visualization of the entire intervertebral disc space. This wide exposure facilitates complete discectomy, thorough release of the anterior longitudinal ligament (ALL), comprehensive endplate clearing, and insertion of the largest footprint interbody cages available in spine surgery. Cages with high lordotic angles (up to 20°–30°) can be inserted, producing immense segmental lordosis, restoring disc and foraminal height, and achieving powerful indirect neural decompression without touching the spinal canal. However, safe anterior lumbar access requires intimate coordination with retroperitoneal vascular anatomy, protection of the iliac vessels and middle sacral vessels, and avoidance of injury to the superior hypogastric plexus to prevent retrograde ejaculation in males.
• Chapter Objective: Detail the anatomical, biomechanical, and surgical execution of Anterior Lumbar Interbody Fusion (ALIF) at L4-L5 and L5-S1. The reader will learn to evaluate vascular anatomy on pre-operative MRI and CT, master the mini-open retroperitoneal exposure, execute complete ALL release and endplate preparation, place hyperlordotic integrated fixation cages, and prevent vascular, neurological, and visceral complications.
• Anatomical access and vascular corridorsALIF utilizes an anterior retroperitoneal approach. At L5-S1, the surgical corridor lies directly between the bifurcation of the common iliac vessels (Figure 72.1). The middle sacral artery and vein are systematically ligated. At L4-L5, the approach requires mobilizing and retracting the left common iliac vein medially or laterally, often necessitating ligation of the ascending lumbar/iliolumbar vein.
• Superior hypogastric plexus and reproductive safetyThe superior hypogastric sympathetic plexus drapes over the anterior aspect of L5-S1 and the left common iliac vein. Blunt, non-thermal dissection is mandatory. Monopolar electrocautery over the anterior disc space is strictly prohibited to prevent damage that causes retrograde ejaculation in male patients.
• Biomechanical advantages of ALIFALIF enables complete discectomy and full release of the anterior longitudinal ligament (ALL). Placing large-footprint cages that span the dense apophyseal bone provides exceptional stability, resistance to subsidence, high fusion rates, and enables insertion of hyperlordotic implants (12° to 30°) that generate substantial segmental lordosis.
• Surgical technique step-by-stepA transverse (Pfannenstiel) or paramedian incision is performed. The anterior rectus sheath is divided, rectus abdominis mobilized medially, and the retroperitoneal plane developed bluntly. Fixed table-mounted vascular retractors provide steady exposure. Complete discectomy, endplate scraping down to bleeding bone, and trial sizing precede cage insertion with integrated screws or supplemental posterior percutaneous instrumentation.
• Complications and preventionComplications include vascular laceration (common iliac vein, iliolumbar vein), retrograde ejaculation, sympathetic dysfunction (warm leg), cage subsidence, ureteral injury, and incisional hernia. Meticulous blunt dissection, vessel mobilization, and vascular surgeon collaboration minimize intraoperative risks.
• Clinical Application: In clinical practice, ALIF is the gold standard for L5-S1 isthmic and degenerative spondylolisthesis, discogenic low back pain, failed posterior fusion, and loss of lumbosacral lordosis in adult spinal deformity. Preoperative MRI and CT angiography must evaluate the height of the aortic bifurcation, the position and caliber of the left common iliac vein, and the presence of iliolumbar veins. Intraoperatively at L5-S1, once the peritoneal sac is swept medially, self-retaining vascular retractor pins must be seated firmly into the vertebral bodies to protect the iliac vessels from stretch or tearing. Complete release of the anterior longitudinal ligament allows the disc space to be opened with lordotic shavers. Inserting a large, lordotic cage packed with bone graft delivers instantaneous indirect foraminal decompression and locks the lumbosacral junction in anatomical lordosis.
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Keywords

Preferred DeCS/MeSH Descriptors:
Spinal FusionLumbar VertebraeSacrumMinimally Invasive Surgical ProceduresLordosisIliac VeinPostoperative ComplicationsEjaculation
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Why this chapter matters

The L5-S1 junction is the most critical contributor to global lumbar lordosis, carrying nearly 60-70% of total lumbar curvature. Posterior approaches at L5-S1 face high iliac crests and restricted cage dimensions. ALIF offers an expansive, uninhibited corridor to restore enormous lordotic angles and achieve rapid fusion without entering the spinal canal. This chapter provides the essential vascular roadmap and surgical techniques required to harness ALIF safely.

“Anterior Lumbar Interbody Fusion (ALIF) provides unmatched anterior column reconstruction, disc height restoration, and segmental lordosis at L4-L5 and L5-S1. Its biomechanical success stems from large-footprint implants and complete ALL release, while surgical safety depends on vascular expertise, retroperitoneal dissection, and protection of the superior hypogastric plexus.”
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Chapter Highlights

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Card 1 — Unmatched Segmental Lordosis Restoration
Maximum lordosis at L5-S1

Complete anterior longitudinal ligament (ALL) release and large hyperlordotic cages (up to 20°–30°) allow ALIF to generate greater focal lordosis at L5-S1 than any posterior interbody technique.

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Card 2 — Hypogastric Plexus and Reproductive Safety
Sympathetic nerve protection

Avoiding monopolar electrocautery over the anterior disc space protects the superior hypogastric plexus, preventing retrograde ejaculation in male patients.

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Card 3 — Large Footprint Resisting Subsidence
Apophyseal ring support

ALIF cages span the entire anterior and lateral cortical rim of the sacral endplate, maximizing fusion area and preventing implant subsidence under heavy axial loads.

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How to Cite this Chapter (Vancouver Format)

Official bibliographic indexing and citation guidelines
📖 Pages: 909-918Vancouver Style
Authors (Vancouver):Teles AR, Martins AGS, Ludwig GA

Teles AR, Martins AGS, Ludwig GA. Artrodese lombar anterior. In: Pudles E, Defino H, Risso M, editors. Tratado de Cirurgia da Coluna Vertebral (Treatise of Spine Surgery). 1st ed. Rio de Janeiro: Dilivros Editora; 2026. p. 909-918.

ISBN: 978-85-8053-292-0 • 1.ª Edição • Dilivros Editora
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Bibliographic References

1. Capener N. Spondylolisthesis. Br J Surg. 1932;19:374-86.
2. Lane JM, Moore ES. Transperitoneal approach to the intervertebral disc in the lumbar region. Ann Surg. 1948;127(3):537-51.
3. Mayer HM. A new microsurgical technique for minimally invasive anterior lumbar interbody fusion. Spine. 1997;22(6):691-9.
4. Brau SA. Mini-open approach to the spine for anterior lumbar interbody fusion: description of the approach, variations and results. Orthop Clin North Am. 2007;38(3):353-62.
5. Mobbs RJ, Phan K, Malham G, Seex K, Rao PJ. Lumbar interbody fusion: techniques, indications and comparison of interbody fusion options including PLIF, TLIF, MI-TLIF, OLIF/ATP, LLIF and ALIF. J Spine Surg. 2015;1(1):2-18.
6. Rihn JA, Patel R, Makda J, et al. Complications associated with single-level transforaminal lumbar interbody fusion. Spine J. 2009;9(8):623-9.
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