RF Plasma Ablation Device for Orthopedics, Low‑Temperature 40‑70°C for Minimally Invasive Surgery
This advanced RF-ablation low temperature plasma device represents state-of-the-art surgical equipment for minimally invasive orthopedic treatment. Integrated hardware protection circuitry ensures complete operational safety for both patients and surgeons during all surgical procedures.
The system supports spine ablation, enabling surgeons to accurately target designated tissue areas. Real-time impedance monitoring provides immediate intraoperative feedback for precise, consistent ablation outcomes.
Compatible with transforaminal endoscopic architecture, this generator ensures clear surgical visualization for orthopedic procedures. The minimally invasive technique reduces patient discomfort and accelerates postoperative recovery.
| Feature | Plasma | Ordinary Radio-frequency |
|---|---|---|
| Frequency | 100KHz | 500-2500KHz |
| Tissue Temperature | 40-70℃ | 300-600℃ |
| Medium | Saline | Cytolymph |
| Energy Conversion | Electrical energy → mechanical kinetic energy | Electric energy → heat energy |
| Mechanism | Breaking molecular bonds | Cell fluid evaporation |
| Tissue Effect | Shrinking vaporization | Degenerative necrosis |
| Patient Outcome | Mild pain, quick recovery | Severe pain, slow recovery |
- Low working temperature (40-70°C) minimizes thermal injury to surrounding tissue
- Precise probe placement into diseased areas for efficient treatment
- Bipolar or multi-polar design prevents electrical current passing through patient
- Minimal bleeding during surgery with short operation times
- Minimally invasive approach with small trauma and quick recovery
The low temperature Plasma RF Surgical System is specifically designed for ablation, resection, and coagulation of soft tissue and hemostasis of blood vessels in orthopedic surgery. With advanced plasma ablation technology, the system dissolves tissue at the molecular level in a highly-controlled manner with minimal thermal effect on surrounding healthy tissues.
Plasma technology utilizes a specific waveform of electricity through dual-pole or multi-pole probes to stimulate blood, mucosal and soft tissue or nucleus pulposus in sodium chloride (NaCl) molecules, generating a plasma state. The plasma's high-speed charged particles directly interrupt tissue molecular bonds, causing tissue proteins to vaporize into H₂, O₂, CO₂, N₂, CH₄ and other low molecular weight gases.
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