IP Library Patent Application 13823967
Patent Application
App. No. 13/823,967

Laser system for the treatment of body tissue

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Patent No.
US None
App. No.
13/823,967
Abstract

The invention relates to a laser system for the treatment of body tissue ( 1 ) on an inner circumferential tissue surface ( 2 ). The laser system comprises a laser source ( 1 ) for the generation of a laser beam ( 3 ) and a handpiece ( 4 ) with a treatment head ( 5 ). The treatment head ( 5 ) extends along a longitudinal axis ( 6 ) and is adapted in an manner, that the longitudinal axis ( 6 ) of the treatment head ( 5 ) during operation is at least approximately parallel to the inner circumferential tissue surface ( 2 ). During operation the laser beam ( 3 ) enters the treatment head ( 5 ) in the direction of the longitudinal axis ( 6 ). A deflection mirror ( 7 ) is disposed in the treatment head ( 5 ) and guides the laser beam ( 3 ) radially outwards out of the treatment head ( 5 ) onto the inner circumferential tissue surface ( 2 ). Movable deflection means ( 8 ) for the laser beam ( 3 ) are provided to scan the inner circumferential tissue surface ( 2 ) within a treatment area ( 9 ) at least in a circumferential direction.

Claims (32)

1 .- 12 . (canceled)

13 . A laser system for the treatment of body tissue ( 21 ) on an inner circumferential tissue surface ( 2 ), the laser system comprising:

a laser source ( 1 ) generating a laser beam ( 3 );

a handpiece ( 4 ) comprising a treatment head ( 5 ), wherein the treatment head ( 5 ) has a longitudinal axis ( 6 ) and wherein the treatment head ( 5 ) is configured such that the longitudinal axis ( 6 ) of the treatment head ( 5 ) during operation is at least approximately parallel to an inner circumferential tissue surface ( 2 );

wherein during operation the laser beam ( 3 ) enters the treatment head ( 5 ) in a direction of the longitudinal axis ( 6 );

a deflection mirror ( 7 ) disposed in the treatment head ( 5 ) and guiding the laser beam ( 3 ) in a radial direction outwardly out of the treatment head ( 5 ) onto the inner circumferential tissue surface ( 2 );

movable deflection means ( 8 ) for the laser beam ( 3 ) comprising a scanner ( 12 ) movable about two axes;

wherein the deflection mirror ( 7 ) has a conical shape and is disposed with an apex ( 3 ) thereof so as to face the scanner ( 12 );

wherein the scanner ( 12 ) is controlled for at least a circular scanning of the conical deflection mirror ( 7 ) so as to scan the inner circumferential tissue surface ( 2 ) within a treatment area ( 9 ) at least in a circumferential direction.

14 . The laser system according to claim 13 , comprising a carrier ( 14 ), wherein the deflection mirror ( 7 ) is fixed to the treatment head ( 5 ) by the carrier ( 14 ), wherein the carrier ( 14 ) comprises carrier arms ( 15 ) and windows ( 16 ) between the carrier arms ( 15 ) for the laser beam ( 3 ).

15 . The laser system according to claim 13 , comprising a carrier ( 17 ), wherein the deflection mirror ( 7 ) is fixed to the treatment head ( 5 ) by the carrier ( 17 ), wherein the carrier ( 17 ) is transparent and closed in circumferential direction.

16 . The laser system according to claim 13 , wherein the deflection means ( 8 ) comprise a control device ( 18 ), the control device ( 18 ) being adapted to scan the treatment area ( 9 ) with the laser beam ( 3 ) along circles ( 19 ) with centers ( 20 ) located on the treatment area ( 9 ), wherein the laser beam ( 3 ) is subjected to a circular feed action about the longitudinal axis of the treatment head ( 5 ).

17 . The laser system according to claim 13 , wherein the deflection means ( 8 ) comprise a control device ( 18 ), the control device ( 18 ) being adapted to scan the treatment area ( 9 ) with the laser beam ( 3 ) parallel to the longitudinal axis of the treatment head ( 5 ), wherein the laser beam ( 3 ) is subjected to a circular feed action about the longitudinal axis of the treatment head ( 5 ).

18 . The laser system according to claim 13 , wherein the deflection means ( 8 ) comprise a control device ( 18 ), the control device ( 18 ) being adapted to scan the treatment area ( 9 ) with the laser beam ( 3 ) in a random pattern, wherein the laser beam ( 3 ) is subjected to a circular feed action about the longitudinal axis of the treatment head ( 5 ).

19 . The laser system according to claim 13 , wherein the deflection means ( 8 ) comprise a control device ( 18 ), the control device ( 18 ) being adapted to scan the treatment area ( 9 ) with the laser beam ( 3 ) solely in a circular pattern about the longitudinal axis of the treatment head ( 5 ).

20 . A method for the treatment of body tissue ( 21 ) on an inner circumferential tissue surface ( 2 ) by a laser system, wherein the laser system comprises a laser source ( 1 ) and a handpiece ( 4 ) with a treatment head ( 5 ), wherein the treatment head ( 5 ) has a longitudinal axis ( 6 ), wherein movable deflection means ( 8 ) for the laser beam ( 3 ) are provided comprising a scanner ( 12 ) being movable about two axes, wherein a deflection mirror ( 7 ) is disposed in the treatment head ( 5 ), wherein the deflection mirror ( 7 ) has a conical shape and is disposed with an apex ( 13 ) thereof so as to face the scanner ( 12 ); the method comprising:

positioning the treatment head such that the longitudinal axis ( 6 ) of the treatment head ( 5 ) is at least approximately parallel to the inner circumferential tissue surface ( 2 ),

generating a laser beam ( 3 ) by the laser source ( 1 ) and causing the laser beam ( 3 ) to enter into the treatment head ( 5 ) in a direction of the longitudinal axis ( 6 ),

controlling the scanner ( 12 ) such that at least a circular scanning of the conical deflection mirror ( 7 ) with the laser beam ( 3 ) is carried out;

guiding the laser beam ( 3 ) in radial direction outwardly out of the treatment head ( 5 ) onto the inner circumferential tissue surface ( 2 ); and

scanning the inner circumferential tissue surface ( 2 ) with the laser beam ( 3 ) within a treatment area ( 9 ) at least in a circumferential direction.

21 . The method according to claim 20 , wherein in the step of scanning the laser beam ( 3 ) is guided on circles ( 19 ) with centres ( 20 ) of the circles located on the treatment area ( 9 ) and the laser beam ( 3 ) is subjected to a circular feed action about the longitudinal axis of the treatment head ( 5 ).

22 . The method according to claim 20 , wherein in the step of scanning the laser beam ( 3 ) is guided parallel to the longitudinal axis of the treatment head ( 5 ) and the laser beam ( 3 ) is subjected to a circular feed action about the longitudinal axis of the treatment head ( 5 ).

23 . The method according to claim 20 , wherein in the step of scanning the laser beam ( 3 ) is guided in a random pattern and the laser beam ( 3 ) is subjected to a circular feed action about the longitudinal axis of the treatment head ( 5 ).

24 . The method according to claim 20 , wherein in the step of scanning the laser beam ( 3 ) is guided solely in a circular way about the longitudinal axis of the treatment head ( 5 ).

25 . The method according to claim 20 , wherein in the step of scanning the laser beam ( 3 ) is guided such that sections of the inner circumferential tissue surface ( 2 ) are excluded from the laser treatment.

26 . The method according to claim 20 , wherein the body tissue ( 1 ) is hard bone material, further comprising the step of drilling a hole into the hard bone material to produce the circumferential tissue surface ( 2 ) to be treated so that the treatment area ( 9 ) is located on the circumferential wall of the hole ( 28 ).

27 . The method according to claim 26 , further comprising the step of removing residual smear layers from the hard bone material by scanning the inner circumferential tissue surface ( 2 ) of the hole ( 28 ) with the laser beam ( 3 ).

28 . The method according to claim 26 , further comprising the step of creating a surface structure of the inner circumferential tissue surface and the step of correcting a hole profile of the hole by scanning the inner circumferential tissue surface ( 2 ) of the hole ( 28 ) with the laser beam ( 3 ).

29 . The method according to claim 26 , further comprising the step of creating a surface structure of the inner circumferential tissue surface by scanning the inner circumferential tissue surface ( 2 ) of the hole ( 28 ) with the laser beam ( 3 ).

30 . The method according to claim 26 , further comprising the step of correcting a hole profile of the hole by scanning the inner circumferential tissue surface ( 2 ) of the hole ( 28 ) with the laser beam ( 3 ).

31 . The method according to claim 20 , wherein the circumferential tissue surface ( 2 ) to be treated is a vaginal wall and wherein the treatment area ( 9 ) is located on the circumferential vaginal wall.

Assignments (2)
CHANGE OF NAME Recorded Jan 4, 2016
From: FOTONA D.D.
To: FOTONA D.O.O.
Reel/Frame 037425/0772 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2013
From: LUKAC, MATJAZ; KAZIC, MARKO
To: FOTONA D.D.
Reel/Frame 030015/0005 →