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The Effect of Vertebral Body Tethering on Lumbar Paraspinal Muscle Cross-Section Area in Adolescent Idiopathic Scoliosis

The Effect of Vertebral Body Tethering on Lumbar Paraspinal Muscle Cross-Section Area, Lumbar Range of Motion and Trunk Muscle Strength in Adolescent Idiopathic Scoliosis

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT05347056
Enrollment
16
Registered
2022-04-26
Start date
2022-05-09
Completion date
2022-06-06
Last updated
2022-04-26

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Idiopathic Scoliosis

Keywords

Scoliosis, Vertebral body tethering, Motion preservation, Multifidus, Magnetic resonance imaging

Brief summary

We aimed to compare the paraspinal muscle cross-section area and functional results of anterior vertebral tethering and selective thoracic fusion surgery.

Detailed description

Idiopathic scoliosis is a three-dimensional deformity of the spine. It is defined as the curvature of the spine of 10° or more detected radiologically in the coronal plane. In scoliosis, changes in axial rotation in the transverse plane and physiological curvatures in the sagittal plane (decrease or increase in kyphosis, lordosis) occur. The incidence of scoliosis is 2-3%, but up to 10% of patients need surgical treatment. Knowing the long-term effects of posterior spinal fusion is currently the gold standard treatment because it gives good results in deformity improvement. However, fusion surgery has disadvantages such as loss of motion in the spine and long-term development of adjacent segment disease and disc degeneration. It has also been suggested that spinal fusion causes iatrogenic damage to the paraspinal muscles (especially the multifidus), which is of great importance in the alignment and movement of the spine due to the posterior approach during surgery. As a result of damage to the lumbar multifidus muscles and the development of fatty degeneration, problems such as spinal sagittal alignment disorders and chronic low back pain can be seen. In addition, fatty degeneration and atrophy of the paraspinal muscles may lead to the development of adjacent segment disease in the segments under fusion in the long term. In selective thoracic fusion, by protecting the mobile segments in the lumbar region, the range of motion is preserved and iatrogenic damage of the lumbar paraspinal muscles is prevented. After selective thoracic fusion (STF), some improvement occurs in the deformity in the lumbar region. However, the risk of insufficient improvement and progression of the curve in the unfused lumbar segments, especially in immature patients, should be considered. Anterior vertebra body tethering is a surgical technique that has been used more frequently in recent years, which is thought to prevent functional complications caused by spinal fusion.With this method, which allows the growth of the spine to continue, there is no need for fusion when treating progressive curvature. Short-term radiological results of this surgical technique have been reported frequently in recent years, but the literature on functional results (spine flexibility, trunk endurance, etc.) is very limited. In our study, we plan to evaluate the effects of AVT applied to the lumbar region on paraspinal muscle quality, trunk muscle strength and endurance, and trunk joint range of motion by evaluating patients who underwent selective thoracic fusion surgery and patients who underwent thoracic fusion + AVT to the lumbar region.

Interventions

DIAGNOSTIC_TESTLumbar Spine Magnetic Resonance

Metal artifact reduction sequence (mars), axial t2 sequence

DIAGNOSTIC_TESTIsokinetic trunk flexion-extension trunk muscle strength and endurance test

To evaluate for trunk muscle strength and endurance angular velocity of 60 and 120°/s

DIAGNOSTIC_TESTLomber Region Range of motion assessment

To evaluate for lomber region ROM with digital inclinometer

DIAGNOSTIC_TESTRadiograph

spinal radiograph AP/Lateral

BEHAVIORALSRS 22

SRS-22 Patient Questionnaire

Sponsors

Istanbul University
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
OTHER

Eligibility

Sex/Gender
ALL
Age
12 Years to 19 Years
Healthy volunteers
No

Inclusion criteria

Males or females age 12 to 19 years old Diagnosis of idiopathic scoliosis At least 6 months have passed since surgical intervention Spina bifida occulta is permitted

Exclusion criteria

Pregnancy Prior spinal or chest surgery MRI abnormalities (including syrinx greater than 4mm, Chiari malformation, or tethered cord) Neuromuscular, thoracogenic, cardiogenic scoliosis, or any other non-idiopathic scoliosis Associated syndrome, including Marfan syndrome or neurofibromatosis

Design outcomes

Primary

MeasureTime frameDescription
Comparison of VBT and STF group paraspinal muscles cross-section area6 months to 3 years after surgeryThe bilateral cross-sectional areas (CSA) of the multifidus (MF), erector spinae (ES) and psoas (P) muscles at all disc levels were measured by outlining the fascial boundary of the muscle
Comparison of pre-op and post-op paraspinal muscles cross-section area6 months to 3 years after surgeryThe bilateral cross-sectional areas (CSA) of the multifidus (MF), erector spinae (ES) and psoas (P)

Secondary

MeasureTime frameDescription
Investigation of Quality of Life in Adolescent Idiopathic Scoliosis6 months to 3 years after surgeryQuality of life Scoliosis Research Society-22 (SRS-22) questionnaire
Comparison of VBT and STF group trunk muscle strenght and endurance6 months to 3 years after surgeryCybex Norm
Comparison VBT and STF group lomber range of motion6 months to 3 years after surgeryDual inclinometer

Contacts

Primary ContactEsin Nur Taşdemir, MD
esin.tasdemir@istanbul.edu.tr905353661124

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026