Cardiological mapping and navigation system
First Claim
1. An apparatus for determining a position of an object in a beating heart, comprising:
- means for producing a three dimensional moving image of the beating heart utilizing a series of previously acquired three dimensional images;
means for synchronizing the three dimensional moving image of the beating heart with a real-time electrocardiogram of the beating heart;
a sensor adapted to be connected to the object;
means for registering a position of the- sensor with respect to the synchronized three dimensional moving image of the beating heart;
means for tracking the position of the registered sensor in the beating heart;
means for displaying the position of the object superimposed on the synchronized three dimensional moving image of the beating heart based on the tracked position of the registered sensor.
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Abstract
A method and apparatus are provided for superimposing the position and orientation of a diagnostic and/or treatment device on a previously acquired three-dimensional anatomic image such as a CT or MRI image, so as to enable navigation of the diagnostic and/or treatment device to a desired location. A plurality of previously acquired three-dimensional images may be utilized to form a “movie” of the beating heart which can be synchronized with a patient'"'"'s EKG in the operating room, and the position of the diagnostic and/or treatment device can be superimposed on the synchronized “movie” of the beating heart. An electrophysiological map of the heart can also be superimposed on the previously acquired three-dimensional antaomic image and/or the “movie” of the beating heart.
432 Citations
21 Claims
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1. An apparatus for determining a position of an object in a beating heart, comprising:
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means for producing a three dimensional moving image of the beating heart utilizing a series of previously acquired three dimensional images;
means for synchronizing the three dimensional moving image of the beating heart with a real-time electrocardiogram of the beating heart;
a sensor adapted to be connected to the object;
means for registering a position of the- sensor with respect to the synchronized three dimensional moving image of the beating heart;
means for tracking the position of the registered sensor in the beating heart;
means for displaying the position of the object superimposed on the synchronized three dimensional moving image of the beating heart based on the tracked position of the registered sensor. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10)
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11. A method for registering a position of a sensor inserted in a beating heart with respect to a three dimensional moving image of the beating heart, comprising:
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touching the sensor to a wall of the beating heart so as to cause the sensor to move with the wall of the beating heart throughout a beating cycle of the beating heart;
collecting positional coordinates of the sensor with each beat to define a beating structure; and
matching the defined beating structure with the three dimensional moving image of the beating heart;
wherein the three dimensional moving image of the beating heart is produced based on previously acquired images. - View Dependent Claims (12, 14, 15, 16, 18, 19, 20)
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13. An apparatus for determining a position of an object in a heart, comprising:
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a sensor adapted to be connected to the object;
means for registering a position of the sensor with respect to a previously acquired three-dimensional anatomic image of the heart;
means for tracking the position of the registered sensor in the heart;
means for displaying the position of the object superimposed on the previously acquired three-dimensional anatomic image of the heart based on the tracked position of the registered sensor;
means for obtaining a computer generated electrophysiological map of the heart;
means for superimposing the computer generated electrophysiological map of the heart on the previously acquired three-dimensional anatomic image of the heart to produce a composite image of the heart showing both actual anatomic information and actual electrical activity as well as the position of the object in the heart.
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17. A method of performing a therapeutic operation in the heart, comprising:
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providing at least one position sensor on each of a diagnostic catheter and a treatment catheter;
introducing the diagnostic catheter and the treatment catheter into the heart;
tracking positions of the diagnostic catheter and the treatment catheter on a previously acquired three-dimensional anatomic image in accordance with position information received from the position sensors provided on the diagnostic catheter and the treatment catheter;
displaying positions of the diagnostic catheter and treatment catheter superimposed on the previously acquired three-dimensional anatomic image of the heart, in accordance with the tracked positions of the diagnostic catheter and treatment catheter;
determining an exact location at which to perform the therapeutic operation based on diagnostic information gathered by the diagnostic catheter;
navigating the treatment catheter to the determined exact location, in accordance with the displayed positions of the diagnostic catheter and the treatment catheter superimposed on the previously acquired three-dimensional anatomic image of the heart.
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21. An apparatus for performing a therapeutic operation in the heart, comprising:
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a lasso catheter provided with a plurality of position sensors and a plurality of corresponding diagnostic electrodes;
a treatment catheter provided with a position sensor;
means for tracking positions of the lasso catheter and the treatment catheter on a previously acquired three-dimensional anatomic image in accordance with position information received from the position sensors provided on the lasso catheter and position information received from the position sensor provided on the treatment catheter;
means for displaying positions of the lasso catheter and treatment catheter superimposed on the previously acquired three-dimensional anatomic image of the heart, in accordance with the tracked positions of the lasso catheter and treatment catheter;
means for determining an exact location at which to perform the therapeutic operation based on diagnostic information gathered by the diagnostic electrodes of the lasso catheter;
navigating the treatment catheter to a selected one of the position sensors of the lasso catheter at the determined exact location, in accordance with the displayed positions of the lasso catheter and the treatment catheter superimposed on the previously acquired three-dimensional anatomic image of the heart.
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Specification