Motion Analysis System

Simi Shape 3D & Aktisys is a markerless 3D motion analysis system that accurately evaluates human movement, posture, gait, and biomechanics with real-time biofeedback for clinical, rehabilitation, and sports applications.

Motion Analysis System

Project Overview

Discover the core components and technologies that make this solution unique

Motion Analysis System

Core Technologies

Video Motion Capture
Real-Time Tracking
Dynamic Wand Calibration
External Device Integration
Biomechanical Analysis
Clinical Reporting
3D Data Visualization
Gait Analysis
Mobile Motion Capture
Motion Analytics Dashboard

Assessment Protocols

Gait Analysis

Comprehensive analysis of walking patterns, stride characteristics, joint kinematics, and gait symmetry to support diagnosis, rehabilitation, and performance optimization.

Postural Assessment

Evaluate body posture, spinal alignment, weight distribution, and musculoskeletal balance using advanced motion analysis.

Joint Range of Motion

Measure joint mobility and movement range with high accuracy for clinical assessment and rehabilitation monitoring.

Balance & Stability Test

Assess postural stability, balance control, and body sway during static and dynamic activities.

Running Analysis

Analyze running mechanics, stride efficiency, impact forces, and lower-limb biomechanics to improve athletic performance.

Functional Movement Assessment

Evaluate movement quality, coordination, flexibility, and functional performance during daily or sport-specific activities.

Spine Motion Analysis

Assess spinal movement, posture, and trunk mobility to support orthopedic and rehabilitation applications.

Upper Limb Analysis

Analyze shoulder, elbow, wrist, and hand movements for clinical diagnosis and functional rehabilitation.

Lower Limb Analysis

Evaluate hip, knee, ankle, and foot biomechanics during walking, running, and functional movements.

Biomechanical Performance Assessment

Comprehensive evaluation of movement efficiency, joint kinetics, kinematics, and musculoskeletal performance using synchronized video analysis.