Product Description
Advanced Tecar Ultrasound Shockwave Therapy System for Physical Rehabilitation Center
1. Technology Principle
This advanced therapy device integrates three clinically proven technologies into one multifunctional platform, providing a holistic solution for rehabilitation and physiotherapy.
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TECAR Therapy (448kHz Radiofrequency): Works through Capacitive and Resistive Energy Transfer (CRET). It increases tissue temperature, improves cellular ion exchange, enhances blood circulation, and accelerates tissue repair.
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Ultrasound Therapy (1 MHz): Creates micromechanical vibrations producing thermal and mechanical effects. It relaxes muscles, increases collagen elasticity, and enhances nutrient absorption.
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Shockwave Therapy (Up to 6Bar): High-energy acoustic pulses that stimulate tissue regeneration, promote collagen remodeling, and trigger biological healing responses.
Frequently Asked Questions
Q1: What are the benefits of combining TECAR, Ultrasound, and Shockwave?
The synergy allows for faster results. TECAR prepares the tissue, Ultrasound boosts metabolism, and Shockwave provides the mechanical stimulation needed for long-term regeneration.
Q2: Is the treatment painful?
Most patients feel a warm sensation (TECAR) or mild vibration. Shockwave can be slightly uncomfortable on sensitive areas, but intensity is fully adjustable for comfort.
Q3: How many sessions are typically required?
A standard course usually consists of 4-6 sessions, depending on the severity of the condition and the patient's biological response.
Q4: Can this device be used for aesthetic purposes?
Yes, it is highly effective for cellulite reduction, skin tightening, and body contouring through deep collagen stimulation and lymphatic drainage.
Q5: Is there any downtime after the treatment?
There is no downtime. Patients can return to daily activities immediately, though intense exercise is discouraged for the first 24 hours.
Q6: Why is 448kHz the standard for TECAR?
448kHz is the optimal frequency for sub-thermal and thermal effects that promote intra- and extra-cellular ion mobilization, crucial for tissue repair.