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4D AI Tele-Rehabilitation System
Revolutionizing Physiotherapy with
4D AI & Spatial Computing
Transform the physical rehabilitation journey.
From synchronous manual observation to precise, asynchronous digital care

In traditional classrooms, physical education teachers find it difficult to keep track of all students' movement details at the same time; scientific theories are too abstract; and AI learning in computer science often remains merely theoretical.
2D Blind Spot
The Bottlenecks in Modern Digital Physiotherapy
The Synchronous Time Trap:
Today's telerehabilitation is stuck in 2D. A clinician cannot accurately measure joint rotation, depth, or compensatory movements.
Subjective Measurements:
1:1 tele-consultations drain clinical hours and create massive waitlists.
Manual goniometers and 2D video analysis are time-consuming and prone to human error.
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The Solution:
4D Tele-Rehabilitation
The same system is used in physical education to correct running posture and prevent injuries; in biology to analyze muscle exertion and pelvic mechanics; and in information technology to learn machine learning and Prompt Engineering. Breaking down disciplinary barriers!
Discover how our high-fidelity 4D spatial data to generate clinical-grade "Digital Twins", allowing therapists or AI to analyze biomechanics asynchronously.
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INFO
Value Proposition
For the Hospital & Therapists
The funding application results will be announced at the end of March 2026. Are you ready to implement the projects outlined in the commitment letter? We offer comprehensive support:
✅ Efficiency: Shift to asynchronous care; review patient progress through 4D spatial data.
✅ Automated Clinical Metrics: 4D spatial data provide accurate calculation of Range of Motion (ROM) and AI analysis flags compensations.
✅Requirements for organizing student activities: Assist in planning and organizing "AI Sports Experience Day" or "Community AI Ambassador" service learning, and complete the target of organizing at least 2 student activities.
✅ Seamless EMR Integration: Objective, data-driven charting report from 4D spatial data and AI analysis.

Value Proposition
For the Patient & Community
The funding application results will be announced at the end of March 2026. Are you ready to implement the projects outlined in the commitment letter? We offer comprehensive support:
✅ Immersive Visual Feedback: "Game-film" style AR overlays for faster motor learning.
✅ Decentralized Access: Perform exercises at home with a smartphone or at community satellite kiosks.
✅ Requirements for organizing student activities: Assist in planning and organizing "AI Sports Experience Day" or "Community AI Ambassador" service learning, and complete the target of organizing at least 2 student activities.
✅ Shortened Waitlists: 4D medical record can be transferred quickly. Faster reviews mean quicker access to specialist feedback.

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How It Works
Step 1: The Clinical Baseline.
Therapist captures the perfect 4D baseline in-clinic.
Step 2: The Home Session.
Step 3: Cloud AI Alignment.
Step 4: The Asynchronous Dashboard.

How It Works
Patient uses smartphone to review their "4D digital twins" motion, and record their exercise.
Step 2: The Home Session.
Step 3: Cloud AI Alignment.
Step 4: The Asynchronous Dashboard.
INFO

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How It Works
Step 2: The Home Session.
The AI matches the camera angle, synchronizes the tempo (DTW), and compares the kinematics.
Step 3: Cloud AI Alignment.
Three core functions

How It Works
Step 2: The Home Session.
Step 3: Cloud AI Alignment.
Step 4: The Asynchronous Dashboard.
Therapist logs in to see pre-flagged errors and AI-generated progress reports.
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INFO
Comparative Advantage
The funding application results will be announced at the end of March 2026. Are you ready to implement the projects outlined in the commitment letter? We offer comprehensive support:
✅ Immersive Visual Feedback: "Game-film" style AR overlays for faster motor learning.
✅ Decentralized Access: Perform exercises at home with a smartphone or at community satellite kiosks.
✅ Requirements for organizing student activities: Assist in planning and organizing "AI Sports Experience Day" or "Community AI Ambassador" service learning, and complete the target of organizing at least 2 student activities.
Comparison Metric | Traditional Video (2D) Description | 4D AI Spatial System Description |
|---|---|---|
Perspective Flexibility | Fixed angle;
prone to occlusion (blind spots). | 6DoF free rotation; zero blind spots. |
Data Objectivity | Subjective observation and manual measurement. | AI-automated bio-mechanical metrics. |
Manpower Efficiency | 1:1 Synchronous; time-intensive. | Asynchronous review; high-speed. |
Patient Feedback | Verbal correction;
limited impact on motor learning. | 3D Digital Twin visual comparison. |

Ready to scale your physiotherapy department?
Request a Clinical Demo Here
Building the future starts with communication
Please contact us at ai@p1d.co
