IP Library › Granted Patent US 8,774,906
Granted Patent B2
US 8,774,906 · App. 13/319,849 · Granted Jul 8, 2014

Apparatus, method and computer program for determining a property of a heart

Inventors: Godefridus Antonius Harks (Eindhoven, NL); Szabolcs Deladi (Eindhoven, NL); Bart Michiel De Boer (Eindhoven, NL); Maya Ella Barley (Eindhoven, NL); Jan Frederik Suijver (Eindhoven, NL)
Assignee: Koninklijke Philips N.V.
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Quick Facts
Patent No.
US 8,774,906
App. No.
13/319,849
Granted
Jul 8, 2014
Kind
B2
Abstract

The present invention relates to an apparatus for determining a property of a heart. The apparatus comprises a catheter ( 5 ), which comprises a first property sensing unit for sensing a contraction signal indicative of a reoccurring local contraction of the heart ( 2 ) at a sensing site of the heart ( 2 ). The apparatus further comprises a first property determining unit ( 8 ) for determining the reoccurring local contraction of the heart ( 2 ) at the sensing site from the sensed contraction signal as a first property of the heart ( 2 ). The reoccurring local contraction provides information about the heart ( 2 ), which can be used for a better and/or more reliable characterization of the heart ( 2 ).

Claims (39)

1. An apparatus for determining a property of a heart ( 2 ), wherein the apparatus ( 1 ) comprises:

a catheter ( 5 ) comprising a first property sensing unit ( 21 ) structurally configured to emit and receive imaging energy for sensing a contraction signal indicative of a reoccurring local contraction of the heart ( 2 ) at a sensing site ( 22 ) of the heart ( 2 ), and

a first property determining unit ( 8 ) for determining at least one of a periodicity and a phase of the reoccurring local contraction of the heart ( 2 ) at the sensing site ( 22 ) from the sensed contraction signal as a first property of the heart ( 2 ).

2. The apparatus according to claim 1 ,

wherein the apparatus ( 1 ) comprises a reference signal providing unit ( 12 ) for providing a reoccurring reference signal and

wherein the first property determining unit ( 8 ) is adapted to determine at least one of the periodicity and the phase of the reoccurring local contraction with respect to the reoccurring reference signal.

3. The apparatus according to claim 1 ,

wherein the first property sensing unit ( 21 ) is adapted to sense the contraction signal at different points in time,

wherein the first property determining unit ( 8 ) is adapted to:

apply a similarity measure for comparing the sensed contraction signal at neighboring points in time resulting in similarity values indicating the similarity of the sensed contraction signal at the neighboring points in time,

determine non-similarity points in time by comparing the similarity values to a threshold,

determine at least one of the periodicity and the phase of the reoccurring local contraction of the heart ( 2 ) from the determined non-similarity points in time.

4. The apparatus according to claim 1 , wherein the first property determining unit ( 8 ) is adapted to determine an amplitude of the reoccurring local contraction.

5. The apparatus according to claim 1 , wherein the first property sensing unit ( 21 ) is an acoustic sensing unit for emitting acoustic waves ( 24 ) for being reflected at one or more depths within the heart ( 2 ) and for receiving the reflected acoustic waves ( 24 ), wherein the sensed contraction signal depends on the received acoustic waves ( 24 ).

6. The apparatus according to claim 1 ,

wherein the catheter ( 5 ) comprises a further property sensing unit ( 31 ) for sensing a property signal indicative of a further property of the heart ( 2 ) at the sensing site ( 22 ) and

wherein the apparatus ( 1 ) comprises a further property determining unit ( 13 ) for determining the further property of the heart ( 2 ) at the sensing site ( 22 ) from the sensed property signal.

7. The apparatus according to claim 1 , wherein the catheter ( 5 ) comprises an energy applying unit ( 26 ) for applying energy to the heart ( 2 ).

8. The apparatus according to claim 7 ,

wherein the energy applying unit ( 26 ) is adapted to ablate the heart ( 2 ) and

wherein the apparatus ( 1 ) comprises an ablation progress determining unit ( 11 ) for determining a progress of ablation based on the determined reoccurring local contraction.

9. The apparatus according to claim 1 , wherein the apparatus ( 1 ) comprises a position determining unit ( 33 ) for determining a position of the sensing site ( 22 ).

10. The apparatus according to claim 9 ,

wherein the first property sensing unit ( 21 ) and the first property determining unit ( 8 ) are adapted to determine the reoccurring local contraction at different sensing sites ( 22 ) of the heart ( 2 ),

wherein the position determining unit ( 33 ) is adapted to determine the positions of the different sensing sites ( 22 ), and

wherein the apparatus further comprises a map generation unit ( 14 ) for generating a contraction map ( 40 ) of the heart ( 2 ) based on the determined reoccurring local contraction at the different sensing sites ( 22 ) and the determined positions of the different sensing sites ( 22 ), wherein the contraction map ( 40 ) represents the reoccurring local contraction at the positions of the different sensing sites ( 22 ).

11. The apparatus according to claim 10 ,

wherein the catheter ( 5 ) comprises a further property sensing unit ( 31 ) for sensing a property signal indicative of a further property of the heart ( 2 ) at the sensing site ( 22 ) and

wherein the apparatus ( 1 ) comprises a further property determining unit ( 13 ) for determining the further property of the heart ( 2 ) at the sensing site ( 22 ) from the sensed property signal,

wherein the further property sensing unit ( 31 ) and the further property determining unit ( 13 ) are adapted to additionally determine the further property at the different sensing sites ( 22 ) of the heart ( 2 ), and

wherein the map generation unit ( 14 ) is adapted to generate a contraction map ( 40 ) of the heart ( 2 ) which additionally represents the further property at the positions of the different sensing sites ( 22 ) based on the determined further property at the different sensing sites ( 22 ) and the determined positions of the different sensing sites ( 22 ).

12. A method for determining a property of a heart ( 2 ), wherein the method comprises the following steps:

emitting and receiving imaging energy by a first property sensing unit ( 21 ) comprises in a catheter ( 4 );

sensing a contraction signal indicative of a reoccurring local contraction of the heart ( 2 ) at a sensing site ( 22 ) of the heart ( 2 ), by a first property sensing unit ( 21 ) comprised in a catheter ( 4 ); and

determining at least one of a periodicity and a phase of the reoccurring local contraction of the heart ( 2 ) at the sensing site ( 22 ) from the sensed contraction signal as a first property of the heart ( 2 ) by a first property determining unit ( 8 ).

13. A non-transitory computer program for determining a property of a heart ( 2 ), wherein the computer program comprises program code for causing a computer to carry out the following steps when the computer program is run on the computer:

emitting and receiving imaging energy by a first property sensing unit ( 21 ) comprises in a catheter ( 4 );

sensing a contraction signal indicative of a reoccurring local contraction of the heart ( 2 ) at a sensing site ( 22 ) of the heart ( 2 ), by a first property sensing unit ( 21 ) comprised in a catheter ( 4 ); and

determining at least one of a periodicity and a phase of the reoccurring local contraction of the heart ( 2 ) at the sensing site ( 22 ) from the sensed contraction signal as a first property of the heart ( 2 ) by a first property determining unit ( 8 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 17, 2012
From: HARKS, GODEFRIDUS ANTONIUS; DELADI, SZABOLCS; DE BOER, BART MICHIEL; BARLEY, MAYA ELLA; SUIJVER, JAN FREDERIK
To: KONINKLIJKE PHILIPS ELECTRONICS N V
Reel/Frame 027540/0876 →
Priority Claims (1)
EP 09160428 · May 15, 2009 · regional
Continuity (1)
Related Publication 20120116237A1 · May 10, 2012