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Serial CAD/CAM Bracing: An Alternative to Serial Casting for Early Onset Scoliosis
1Department of Orthopedic Surgery, Children's Hospital of Wisconsin, Medical College of Wisconsin; Milwaukee, WI.
Insights
A new elongation bending derotation brace (EBDB) offers a promising alternative to casting for infantile scoliosis, improving quality of life and avoiding anesthesia risks. Preliminary results show significant curve correction in young patients.
Area of Science:
- Orthopedics
- Biomedical Engineering
- Pediatric Spine Surgery
Background:
- Casting for infantile scoliosis negatively impacts quality of life and raises concerns about neurodevelopmental effects of repeated anesthesia.
- An elongation bending derotation brace (EBDB) was developed to achieve scoliosis correction using bending derotation forces, similar to casting but without its drawbacks.
Purpose of the Study:
- To describe preliminary results of a novel technique for creating an elongation bending derotation brace (EBDB) for infantile idiopathic scoliosis.
- To evaluate the efficacy of CAD/CAM technology in fabricating patient-specific braces for infantile scoliosis with a minimum 24-month follow-up.
Main Methods:
- A cohort of nine patients with infantile idiopathic scoliosis (mean age 11 months) underwent treatment with a custom-fabricated EBDB.
- Computer-aided design/computer-aided milling (CAD/CAM) technology was utilized to create the EBDB, incorporating laser scanning for spinal geometry and heat sensors for compliance monitoring.
- The brace fabrication mimicked the rotational forces used in Mehta-type casting.
Main Results:
- Four patients achieved full correction (curve ≤10 degrees) with serial bracing alone.
- Five patients with more rigid curves demonstrated significant improvement, with mean curve reduction from 57 degrees to 21 degrees.
- The mean follow-up period was 3.4 years (range, 2 to 6 years).
Conclusions:
- The study presents preliminary findings on a new CAD/CAM-based methodology for creating patient-specific braces for infantile scoliosis.
- This EBDB approach shows potential for effectively treating infantile idiopathic scoliosis, offering an alternative to traditional casting.
- The technique avoids the drawbacks associated with repeated casting and anesthesia in young children.
Background:
Years of casting for infantile scoliosis can lead to significantly detrimental quality of life for both the child and parents. Concerns have been raised about the long-term negative neurodevelopmental effects of repeated anesthesia on young children. We developed an elongation bending derotation brace (EBDB) that uses primarily a bending derotation force applied to the curve to achieve the same goals as the cast. The goal of the study is to describe the preliminary results of a technique for creation of EBDB for infantile idiopathic scoliosis using computer-aided design/computer-aided milling (CAD/CAM) technology with at least 24 months follow-up.
Methods:
Nine patients with infantile idiopathic scoliosis had minimum 2-year follow-up (mean, 3.4 y; range, 2 to 6 y). Mean age at the treatment was 11 months (4 to 24 mo). There were 2 right thoracic, 7 left thoracic curves. CAD/CAM technology was used to create the EBDB after the child was placed in traction and a derotation strap applied. The same rotational forces that are used in the creation of the Mehta-type cast can also be utilized in creating the brace. A laser scanner was used to obtain the spinal geometry. Compliance can be monitored with a heat sensor.
Results:
Four patients were full corrected with serial bracing alone (curve ≤10 degrees). Five patients with more rigid curves showed improvement from mean 57 degrees (48 to 62 degrees) to mean 21 degrees (10 to 44 degrees).
Conclusions:
This paper describes the preliminary results of a new methodology for creating a patient-specific brace for infantile scoliosis using CAD/CAM technology. This methods shows promising potential to treat the infantile curve without the drawbacks of casting.
Level Of Evidence:
Level IV.
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