FiberLase CR is a laser for cartilage regeneration and pain therapy.
FiberLase CR is based on a 1.55 µm fibre laser and a 0.98 µm diode laser.
Download the FiberLase CR brochure
Exposure to laser radiation with subthermal threshold damage intensity results in:
ADVANTAGES OF TECHNOLOGY
A special feature of FIBERLASE CR is the possibility of maximum effective penetration of laser radiation into tissues in order to eliminate pain syndrome.
Low-intensity
laser therapy
High-intensity
laser therapy
High-intensity
laser therapy with freezable applicator
CONTACT APPLICATOR |
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FREEZABLE APPLICATOR exposure spot diameter 15 mm |
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SPACER APPLICATOR exposure spot diameter - 15 mm |
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CONTACT APPLICATOR B1 exposure spot diameter - 20 mm |
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CONTACT APPLICATOR B2 exposure spot diameter - 35 mm |
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NON-CONTACT APPLICATORS |
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ADJUSTABLE APPLICATOR Located at a distance of 15 cm from the patient's skin, it is designed to form an exposure spot diameter of 35 mm to 130 mm. |
LRD - cartilage tissue restoration by creating laser-induced microdamage in the cartilage tissue, provoking an increase in the synthetic activity of chondrocytes.
ADVANTAGES:
LASER RECONSTRUCTION OF THE INTERVERTEBRAL DISC. (EXPERIMENTAL, CLINICAL AND MORPHOLOGICAL ASPECTS).
Authors: A.V.Baskov, E.N.Sobol, A.B.Shekhter, I.A.Borschenko, V.A.Baskov.
LRC is a minimally invasive surgical intervention that can be performed under spinal or local anaesthesia in order to restore the cartilage of the joint.
The FiberLase CR has special laser radiation parameters, after exposure to which the following occurs:
ADVANTAGES:
Bare fibre for FiberLase CR
Designed for open, endoscopic and puncture surgeries.
The large touch screen display allows you to navigate quickly and comfortably through the entire menu.
When selecting the spine section, the device automatically sets the laser parameters.
Wavelength , µm |
0,98 1,55 |
Maximum power, W |
25 10 |
Pilot wavelengths , µm |
0,65 0,52 |
Fiber diameter, µm |
365 ... 550 |
Supply voltage, V |
220 ± 10% |
Frequency, Hz |
50 ... 60 |
Dimensions (H x W x D), mm |
272 х 272 х 273 |
Weight, kg |
7 |
In addition to the standard X-Y-Z axes and laser process head, there are several optional modules and accessories that may optimize the functionality of the system in your specific application. Below are some of the the most popular options.. Please contact IPG directly if you have additional requirements
High-precision, high-speed rotary stage with continuous motion synchronized to X-Y-Z axes
Rotary stage with continuous motion synchronized to X-Y-Z axes
Rotary stage with continuous motion
Camera system aligned with laser beam axis.
Laser power meter with stage-mounted detector for periodic verification of power on target. Useful for verifying performance of process head optics and coverslide.
The Multi-Axis family of workstations are high-accuracy platforms designed to take advantage of the high beam quality found in IPG’s fiber lasers. Systems can be configured using any IPG laser, with laser processing heads available for welding, cutting and scanning applications. System options can include both basic and smart vision packages, along with part identification and process verification hardware.
The Multi-Axis software integrates control of the laser, motion systems and all system components to provide easy programming of the tool using G/M code commands that are familiar to CNC machine programmers.
The software that runs the Multi-Axis Workstations is a customized application called HMI (Human Machine Interface) that runs as a Microsoft Windows® 7 application. It is preloaded and tested at the IPG factory and resides in the workstation’s hard drive.
The HMI program consists of four primary regions:
User screens enable the Engineer, acting as system administrator, to easily set permission levels for each HMI screen for each level of operator and set corresponding passwords.
The system can operate in manual or programmed mode, and has functions to enable Dry-Run (execution of the full program but with the laser not turned on) and Optional Stop – that will allow a pause in the processing cycle for part inspection and other uses.
Used in combination with standard G-code programming, these capabilities provide the user with a comprehensive, easy-to-use programming and operator interface.