- Scissor Gait Control: The angled metal uprights prevent the legs from crossing by maintaining hip abduction, leading to a more efficient and stable gait pattern.
- Dynamic Support: Unlike rigid braces, it allows for controlled movement, supporting the child’s natural transitions between sitting and standing.
- Improved Posture & Stability: By stabilizing the pelvis, it helps improve trunk alignment and balance, which is essential for sitting and other functional activities.
- Low-Profile Pelvic Section: Specifically designed to fit comfortably without interfering with the rib cage, making it ideal for users with shorter trunks.
(SWASH) Hip Orthosis
- A dynamic hip orthosis designed to manage “scissor gait” by guiding the legs into proper abduction. It improves pelvic stability and posture, providing crucial support during sitting, standing, and walking. Its low-profile design makes it especially suitable for patients with limited space between the iliac crest and the rib cage.
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The Extended Defort AFO uses the same design as the standard model for the distal part of the orthosis. However, it features a polymeric extension that extends proximally up the calf. This model provides additional leverage length and control for those with maximum stabilization and control needs.
This design, which is effective in reducing pressure points that cause disruption to skin integrity, enhances patient comfort.
- A specialized orthosis designed to manage femoral rotational deformities, such as in-toeing or out-toeing. It consists of a pelvic belt connected to an ankle attachment via a flexible torsion cable, which applies a gentle, corrective force to control rotation of the femur during movement. This system helps guide the entire limb into a more neutral alignment throughout the gait cycle.
A rigid, non-articulating Ankle-Foot Orthosis (AFO) designed for static positioning of the foot and ankle complex. It provides maximum sagittal control to hold the ankle at a desired angle, making it ideal for non-ambulatory patients or for post-operative protection. This orthosis is not intended for walking.
- A dynamic functional splint designed to compensate for muscle weakness in patients with radial nerve palsy. It supports the wrist in an extended position and provides dynamic assistance to extend the fingers and thumb, allowing for effective grasp and release and improving overall hand function.
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Custom Fit & Adjustable Design: Features adjustable components and secure strapping systems to ensure optimal fit, comfort, and alignment across the hip, knee, ankle, and foot.
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Durable Construction: Made from high-strength lightweight materials for long-term wear and functional support.
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Joint Stabilization: Incorporates locking or adjustable knee and hip joints to control movement as needed for therapeutic or functional purposes.
- A custom-molded spinal orthosis designed to stabilize and support the thoracic, lumbar, and sacral regions. Its two-piece clamshell design provides rigid, circumferential control to manage a wide range of spinal conditions, from post-operative recovery to chronic instabilities, while ensuring patient comfort.
- An articulating ankle-foot orthosis (AFO) featuring a mechanical ankle joint to allow for controlled movement. It is designed to assist with dorsiflexion weakness (drop foot) and control mid-foot position, while also managing knee hyperextension caused by excessive plantarflexion.
DAFO is specially designed to support children with limited motor control. It improves stability during standing and walking, helping them move more freely and participate confidently in daily activities.
- A dynamic hip brace designed to provide stabilization and a controlled range of motion for the hip joint. It is used to manage post-operative healing, chronic instability, and prevent recurrent dislocations by maintaining the hip in a correct anatomical position.
- Our Bilateral Foot Orthosis, featuring the trusted Denis Brown connecting bar, is expertly designed to provide the necessary support and correction for proper limb alignment.










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