DIGITAL PRECISION FOR A NOVEL APPROACH TO WALKING
AN INNOVATIVE APPROACH TO ORTHOTIC DESIGN
Dynamic foot-ankle orthoses play a crucial role in enhancing alignment, control, and functionality during ambulation.
At ORTHOMEDICAL3D, we leverage a fully digital process to create more precise, comfortable, and personalized solutions for each patient.

WHAT DISTINGUISHES OUR FOOT-ANKLE ORTHOSES?
A completely digital process that enhances precision, personalization, andfunctionality at each stage of development.

1. Fully digital process
3D scanning, CAD design, and 3D printing for a more precisely crafted orthosis from the outset.

2. Enhanced accuracy and customization
Each design is meticulously customized to align with the anatomical and functional requirements of every patient.

3. Sophisticated functional design
Variable stiffness, localized unloading, and features engineered to enhance performance and comfort.
4. Crafted for practical application
Easy-open, enhanced shoe compatibility, and a more comfortable and practical user experience.
ADVANTAGES THAT CREATE DISTINCTION
At ORTHOMEDICAL3D, our foot and ankle orthoses are meticulously crafted to provide enhanced precision, superior comfort, and an improved daily user experience.

More accurate adjustment
Digitization facilitates the creation of orthotics that are more precisely tailored to each patient’s anatomy.

Enhanced personalization
Each design is tailored to meet the specific functional and clinical requirements of each case.

Enhanced comfort
Localized shock absorption and an optimized fit enhance comfort during everyday use.

Installation simplicity
The integrated boot and adjustable straps facilitate the donning and adjustment of the orthosis.

Modified stiffness
3D printing enables the utilization of various configurations tailored to the specific objectives of each case.

Premium finishes
Our sophisticated manufacturing processes ensure the production of precise, detailed, and durable orthotics.
OUR SELECTION OF FOOT-ANKLE ORTHOSES
At ORTHOMEDICAL3D, we create various orthosis configurations tailored to meet the functional and clinical requirements of each patient.
SUPRAMALLEOLAR ORTHOSIS
RIGID FOOT-ANKLE ORTHOSIS

Mediolateral control of the rearfoot while preserving ankle mobility.

Comprehensive control of the foot and ankle. Inhibits plantarflexion while permitting dorsiflexion.

Comprehensive control of the foot and ankle. Inhibits plantarflexion and dorsiflexion.
ARTICULATED FOOT-ANKLE ORTHOSIS
TAMARACK® ARTICULATED FOOT-ANKLE ANKLE ORTHOSIS




Foot-ankle control: Restricts plantarflexion (interchangeable stops) while permitting functional dorsiflexion.
Foot-ankle control featuring elastic return (courtesy of the TAMARACK®-type joint) that enhances walking.
OUR METHODOLOGY
At ORTHOMEDICAL3D, we adhere to a fully digital workflow that enables us to create more precise, personalized, and functional orthotics at each stage of the process

1.3D Scanning
We meticulously documented the anatomy of the foot and ankle to establish a dependable digital foundation from the outset of the process.

2. Computer-Aided Design
We design each orthosis with a personalized approach, optimizing the geometry, fit, and functional details to meet the specific needs of each patient.

3.3D Printing
We produce orthotics with meticulous finishes and sophisticated configurations that enhance fit, comfort, and functionality.

4. Patient-specific fit
We conduct the final adjustment of the orthosis to guarantee an accurate fit, appropriate positioning, and a comfortable, functional experience for the user on a daily basis.
WE EVALUATE OUR ORTHOTICS. WE VERIFY OUR MATERIALS.
At ORTHOMEDICAL3D, our orthosis development is grounded in rigorous testing, validation, and ongoing enhancement to provide solutions that are increasingly precise, reliable, and functional.
Mechanical evaluation of orthoses
We assess the performance of our orthoses to examine critical factors including strength, rigidity, durability, and structural response.
Validation of real-cases applications
We examine the response of our orthoses in real patients to evaluate their fit, functionality, comfort, and performance during use.

