CASE REPORT

Minimally Invasive TLIF for Two-Level Lumbar Spondylolisthesis

Minimally Invasive TLIF for Two-Level Lumbar Spondylolisthesis

Two-level minimally invasive transforaminal lumbar interbody fusion (MIS TLIF) performed for L4–L5 and L5–S1 spondylolisthesis causing severe bilateral nerve compression.

Age

60-year-old patient

L4–L5 & L5–S1

Two-level lumbar spondylolisthesis

MIS TLIF

Minimally invasive spinal fusion performed

Early Recovery

Comfortable walking from the day after surgery

Clinical history

Mr. Jyotindrabhai Swaminarayan, a 60-year-old resident of Ahmedabad, presented with a six-month history of lower back pain accompanied by pain radiating into both legs. Walking had gradually become increasingly difficult because of the severity of the leg pain. During the three weeks before consultation, his lower back pain worsened considerably, affecting routine daily activities and limiting his mobility.

After a detailed assessment, surgical treatment was considered the most appropriate option to relieve the ongoing nerve compression and restore spinal stability.

Outcome

Following surgery, the patient’s symptoms resolved completely. The patient is pain-free, neurologically stable, and continues to do well on clinical follow-up after successful removal of the migrated disc fragment.

Cause and clinical significance

Sequestered lumbar disc herniations occur when a fragment of the intervertebral disc separates completely from the parent disc and migrates away from its original position. Cranial migration at the L1–L2 level is uncommon and can occasionally resemble a neurogenic tumour on MRI because of its location and imaging characteristics. Accurate interpretation of clinical findings together with imaging is therefore essential to establish the correct diagnosis.

Micro endoscopic discectomy provides an effective option for treating selected cases of migrated lumbar disc herniation. Through a small tubular corridor, the offending disc fragment can be removed while preserving healthy tissues, achieving effective neural decompression and supporting a quicker functional recovery.

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