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Xishan Medical

Ultrasonic Bone Scalpel System UT-C-S1

Ultrasonic Bone Scalpel System UT-C-S1

High-precision Ultrasonic Bone Scalpel System operating at 24.5 kHz selective frequency. Cuts hard bone rapidly while automatically safeguarding soft tissues, dura mater, and nerve roots.

Description

The XISHAN Ultrasonic Bone Scalpel System (UT-C-S1) is an advanced ultrasonic surgical platform engineered for high-precision osteotomy, spinal canal decompression, and skull base bone removal. Generating 24,500 to 25,000 longitudinal micro-vibrations per second (24.5–25 kHz) with micro-meter amplitude, it cuts rigid mineralized bone with exceptional efficiency while sparing adjacent elastic soft tissues, dura mater, nerve roots, and major vessels.

Unlike conventional high-speed rotary burs and oscillating saws, the UT-C-S1 produces zero rotational grabbing force and requires no aggressive downward pressure, eliminating soft tissue wrapping, dural laceration, and particulate bone spray.

Selective Cutting & Clinical Safety Advantages

Tissue-Selective Bone Resection

24.5 kHz acoustic resonance breaks rigid bone crystals while elastic soft tissues flex harmonically with the blade, automatically safeguarding the spinal cord, dura, and nerves.

Zero-Torque Longitudinal Oscillation

Linear micro-motion without rotary torque completely prevents catching surgical patties, muscle fibers, or vascular structures, providing unmatched control in deep corridors.

Ultra-Narrow 0.8 mm Bone Kerf

Precision titanium tips produce a kerf width of only 0.8 mm, preserving valuable autologous bone structure and leaving clean, viable osteotomy margins for rapid fusion.

Integrated Direct-Tip Irrigation

Internal fluid channels deliver continuous saline directly to the cutting edge via built-in peristaltic pump, instantly suppressing frictional heat and cavitation misting.

Acoustic Handpiece & Tip Ergonomics

  • High-Efficiency Piezoelectric Transducer: Autoclavable titanium alloy handpiece (UHP25K) delivers up to 270 µm tip amplitude across 10 adjustable power levels with minimal grip temperature rise.
  • Torque-Limited Fast Mounting: 3-step blade installation with tactile torque threshold and audible click confirmation ensures secure acoustic coupling without overtightening.
  • Specialized Tip Portfolio: Curved osteotomy blades, micro-milling rasps (1.8 mm thickness), hook blades, and extended-reach tips for narrow cervical and transforaminal fields.

Clinical Indications & Surgical Applications

  • Spine Surgery: Cervical and thoracic laminoplasty, open-door laminectomy, targeted canal decompression, ossification of the posterior longitudinal ligament (OPLL), and transforaminal fusion (TLIF/PLIF).
  • Neurosurgery & Skull Base: Craniotomy bone flap elevation, anterior clinoidectomy, optic nerve decompression, and acoustic neuroma acoustic canal unroofing.
  • Orthopedic Oncology & Reconstruction: Precision bone tumor en-bloc resection, pelvic osteotomy, and joint revision access.
  • Craniomaxillofacial (CMF) Surgery: Le Fort osteotomies, orthognathic reconstruction, and delicate orbital wall osteotomies.

Technical Specifications Matrix

ParameterSpecification Value
Acoustic Working Frequency24.5 kHz – 25.0 kHz
Max Tip AmplitudeUp to 270 µm (10 Adjustable Energy Levels)
Osteotomy Kerf Width0.8 mm (Minimal Bone Loss)
Milling Tip Thickness1.8 mm (Ideal for Narrow Spinal Corridors)
Cooling & IrrigationIntegrated Peristaltic Pump (Adjustable Flow Rate)
Console DisplayColor Touch LCD Interface with Parameter Presets
Handpiece CompatibilityUHP25K Piezoelectric Transducer Handpiece (Autoclavable)
FootswitchIPX8 High-Grade Waterproof Dual-Pedal Unit
Power InputAC 100–240 V, 50/60 Hz

Standard System Package

  • 1 × UT-C-S1 Ultrasonic Bone Scalpel Console
  • 1 × UHP25K High-Power Ultrasonic Handpiece Transducer
  • 1 × Dedicated Calibration Torque Wrench
  • 1 × Dual-Pedal Waterproof Footswitch (IPX8)
  • 1 × Reusable Peristaltic Pump Tubing Set
  • 1 × Handpiece Sterilization Tray & Protection Sheath
  • 1 × Power Cable & Operation Manual

Additional information

Clinical Application

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