The app provides a detailed guide to musculoskeletal structure, function, and common injuries. It features thousands of 3D models for visualization and learning about anatomy, movement, and pathologies.
Interactive 3D anatomy models allow users to rotate and view muscle groups and bones. Track workout progress with exercise logs and performance metrics. Access detailed exercise guides with form feedback and biomechanical explanations.
Measure joint angles and track range-of-motion for patients. Input measurements manually or via device. Save and view historical data. Share results with healthcare providers.
The app provides a searchable ICD10-CM resource with flexible search and customizable notes. It offers deep code analysis and cross-references medical acronyms and synonyms for user convenience.
Identify common postural disorders through guided assessments. Learn correction techniques with detailed explanations. Track progress with analysis tools. Access exercises to improve alignment and muscle balance.
Explore an interactive 3D model to view muscles, bones, and joints in detail. Rotate, zoom, and dissect layers to study human movement. Access expert insights on biomechanics and . Track progress with customizable study plans and quizzes.
Access medical information offline for over 1,000 conditions. Search or browse by symptom or disease. View diagnosis, treatment, and follow-up details. Includes 200 pediatric topics. No internet required.
The app measures relative angles and rotation using the gyroscope sensor. It offers five unit modes, background or foreground display rotation, and fine calibration of the gyrometer.
Control hearing aids, adjust settings, save favorites
Control hearing aids via mobile device to switch programs and adjust sound settings. Save custom adjustments as favorites. Locate lost hearing aids. Receive firmware updates from hearing care professionals. Learn features through guided instructions.
Explore human anatomy and physiology through interactive 3D models. Rotate, zoom, and dissect virtual organs. Access detailed explanations of systems and diseases. View layered structures and compare healthy vs. pathological states.