У нас вы можете посмотреть бесплатно Complete Digital AFO Design Workflow | From Scan to 3D-Printable Orthosis или скачать в максимальном доступном качестве, видео которое было загружено на ютуб. Для загрузки выберите вариант из формы ниже:
Если кнопки скачивания не
загрузились
НАЖМИТЕ ЗДЕСЬ или обновите страницу
Если возникают проблемы со скачиванием видео, пожалуйста напишите в поддержку по адресу внизу
страницы.
Спасибо за использование сервиса ClipSaver.ru
Join this channel to get access to perks: / @elviscreatives YouTube Video Description (SEO-friendly, professional tone): In this comprehensive tutorial, I walk you through the entire digital design process of an Ankle Foot Orthosis (AFO) — starting from a patient’s scan to the final corrected, printable AFO model. 🦶 Whether you're an orthotist, a biomedical engineer, or a clinician exploring digital orthotic design, this video provides valuable insights on: Importing and preparing the patient scan Applying corrective adjustments Designing reliefs around the malleolus Creating the foot arch and trim lines Adding flares for improved comfort and fit Finalizing a patient-ready AFO model This digital method not only reduces production time but also allows for 3D printing, freeing up professionals to focus more on patient care and innovation rather than manual fabrication. This detailed walkthrough showcases the full process of designing an Ankle-Foot Orthosis (AFO) using a patient-specific digital scan. Geared toward orthotists, orthopedic engineers, and clinicians, the video simplifies each critical step — from importing and preparing the scan, applying corrective mechanisms, designing anatomical reliefs, forming the foot arch, and defining trim lines, to creating the final flare for optimal fit and function. While the specific CAD software is not disclosed due to current marketing limitations, the techniques demonstrated are broadly applicable across multiple platforms. Why this matters: Efficiency: Digital AFO design drastically reduces the time and labor involved in traditional casting and manual fabrication. Precision: Digital tools offer consistent, repeatable results with high accuracy. Scalability: The final model can be 3D printed, enabling scalable production and quicker turnaround times. Clinical Impact: By freeing up orthotists and engineers from manual processes, more time can be spent on patient care and innovation. This video marks a meaningful step forward in promoting a modernized approach to orthotic design and encourages the transition from analog to digital — without sacrificing patient care or product quality. 👉 Subscribe for more biomechanical design content and tutorials! Tags #AFOdesign #Orthotics #3DPrintedAFO #OrthopedicEngineering #DigitalOrthotics #AnkleFootOrthosis #OrthotistTraining #3DMedicalDesign #BiomedicalEngineering #OrthoticDesign AFOdesign, Orthotics, 3DPrintedAFO, OrthopedicEngineering, DigitalOrthotics, AnkleFootOrthosis, OrthotistTraining, 3DMedicalDesign, BiomedicalEngineering, OrthoticDesign