A new concept for fiber-optical 3D shape sensing applying femtosecond laser technology for highprecision direct writing of Bragg gratings within the core and the cladding of single core standard telecom fibers is presented. This new technology enables a cost-efficient and real-time 3D shape sensing and navigation of medical catheters or endoscopes only by means of passive optical sensor elements. First prototypes showed the possibility to achieve absolute navigation accuracy of four mm per meter and have successfully been tested in clinical environment
Femtosecond laser processing was applied to enhance microactuators and enable optical sensing and th...
This article presents a technique to reconstruct the shape of a flexible instrument in three dimensi...
This article presents a technique to reconstruct the shape of a flexible instrument in three dimensi...
Fiber Bragg grating based optical shape sensing is a new and promising approach to gather position a...
Fiber Bragg gratings are inscribed around the edge of a standard single mode fiber core by femtoseco...
Femtosecond laser pulses are used to inscribe multiple evanescent coupling waveguides with Fiber Bra...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-writte...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-writte...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
We present a fiber optical shape sensing system that allows to track the shape of a standard telecom...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
Motivation: In modern medical procedures, flexible tools, catheters, and endoscopic devices are com...
Femtosecond laser processing was applied to enhance microactuators and enable optical sensing and th...
Femtosecond laser processing was applied to enhance microactuators and enable optical sensing and th...
This article presents a technique to reconstruct the shape of a flexible instrument in three dimensi...
This article presents a technique to reconstruct the shape of a flexible instrument in three dimensi...
Fiber Bragg grating based optical shape sensing is a new and promising approach to gather position a...
Fiber Bragg gratings are inscribed around the edge of a standard single mode fiber core by femtoseco...
Femtosecond laser pulses are used to inscribe multiple evanescent coupling waveguides with Fiber Bra...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-writte...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-writte...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
Temperature-compensated 3D fiber shape sensing is demonstrated with femtosecond laser direct-written...
We present a fiber optical shape sensing system that allows to track the shape of a standard telecom...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
A fiber-optic 3D shape, position and temperature sensor is demonstrated with femtosecond laser dire...
Motivation: In modern medical procedures, flexible tools, catheters, and endoscopic devices are com...
Femtosecond laser processing was applied to enhance microactuators and enable optical sensing and th...
Femtosecond laser processing was applied to enhance microactuators and enable optical sensing and th...
This article presents a technique to reconstruct the shape of a flexible instrument in three dimensi...
This article presents a technique to reconstruct the shape of a flexible instrument in three dimensi...