Monitoring apparatus for monitoring an ablation procedure
US-9901321-B2 · Feb 27, 2018 · US
US10405828B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10405828-B2 |
| Application number | US-201113885016-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 18, 2011 |
| Priority date | Nov 18, 2010 |
| Publication date | Sep 10, 2019 |
| Grant date | Sep 10, 2019 |
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The invention relates to location determination apparatus for determining a location of a first object ( 2 ) like a catheter within a second object ( 3 ) being, for example, the heart of a person. The first object comprises a first ultrasound unit, and a second ultrasound unit ( 5 ) is located outside the second object. A location determination unit determines the location of the first object within the second object based on ultrasound signals transmitted 5 between the first ultrasound unit and the second ultrasound unit. This allows determining the location of the first object within the second object reliably in a way which is an alternative to using a transmission of electrical signals for determining the location and which may lead to an improved accuracy of determining the location.
Opening claim text (preview).
The invention claimed is: 1. A location determination apparatus for determining a location of a first ultrasound unit within an object ( 3 ), wherein the location determination apparatus ( 1 ) comprises: the first ultrasound unit comprising at least one ultrasound transducer, a second ultrasound unit ( 5 ) comprising at least one ultrasound transducer for being located outside the object ( 3 ), wherein the at least one ultrasound transducer of the first ultrasound unit and the at least one ultrasound transducer of the second ultrasound unit ( 5 ) are adapted to transmit ultrasound signals between them, an ultrasound image generation unit ( 15 ) for generating an ultrasound image of the object ( 3 ) based on ultrasound information from at least one of the at least one ultrasound transducer of the first ultrasound unit ( 7 , 8 , 9 , 10 ) and the at least one ultrasound transducer of the second ultrasound unit ( 5 ; 105 , 110 ), a location determination unit ( 6 ) for determining the location of the first ultrasound unit within the object ( 3 ) with respect to the ultrasound image based on the ultrasound signals transmitted between the at least one ultrasound transducer of the first ultrasound unit and the at least one ultrasound transducer of the second ultrasound unit and the ultrasound information from at least one of the first ultrasound unit and the second ultrasound unit. 2. The location determination apparatus as defined in claim 1 , wherein at least one of the first ultrasound unit and the second ultrasound unit ( 5 ) comprises several ultrasound transducers ( 7 , 8 , 9 , 10 ) for transmitting ultrasound signals between the first and second ultrasound units and wherein the several ultrasound transducers ( 7 , 8 , 9 , 10 ) emit ultrasound signals at the same or at different frequencies. 3. The location determination apparatus as defined in claim 2 , wherein the first ultrasound unit is located on a catheter tip and comprises several ultrasound transducers ( 7 , 8 , 9 , 10 ) arranged at positions on or within the catheter tip, which are known with respect to the first catheter tip, wherein the several ultrasound transducers ( 7 , 8 , 9 , 10 ) emit or receive ultrasound signals at different frequencies, and wherein the location determination unit ( 6 ) is adapted to determine the orientation of the catheter tip based on the transmitted ultrasound signals and the positions of the several ultrasound transducers ( 7 , 8 , 9 , 10 ), which are known with respect to the catheter tip. 4. The location determination apparatus as defined in claim 1 , wherein the location determination unit ( 6 ) is adapted to determine the location of the first ultrasound unit within the object based on at least one of a time of flight and a transmission direction of the transmitted ultrasound signals. 5. The location determination apparatus as defined in claim 1 , wherein the first ultrasound unit is adapted to measure a property of the object ( 3 ) at the location at which the first ultrasound unit is arranged within the object. 6. The location determination apparatus as defined in claim 5 , wherein the location determination apparatus ( 1 ) further comprises a map determination unit ( 14 ) for determining a property map based on determined locations of the first ultrasound unit within the object ( 3 ) and properties of the object ( 3 ), which have been measured at the determined locations. 7. The location determination apparatus as defined in claim 1 , wherein the first ultrasound unit is associated with an electrode ( 71 ) adapted to apply energy to the object ( 3 ) at the location at which the first ultrasound unit is arranged within the object ( 3 ). 8. The location determination apparatus as defined in claim 1 , wherein the location determination apparatus further comprises a fixation arrangement ( 9 ) for fixing the second ultrasound unit ( 105 , 110 ) on a subject ( 11 ) in which the object ( 3 ) is located. 9. The location determination apparatus as defined in claim 1 , wherein the location determination apparatus further comprises a second ultrasound unit position determination unit ( 12 ) for determining the position of the second ultrasound unit ( 5 ; 105 , 110 ) with respect to a reference coordinate system, wherein the location determination unit ( 6 ) is adapted to determine the position of the first ultrasound unit within the object ( 3 ) with respect to the reference coordinate system based on the transmitted ultrasound signals and the determined position of the second ultrasound unit ( 5 ; 105 , 110 ) with respect to the reference coordinate system. 10. The location determination apparatus as defined in claim 1 , wherein the location determination apparatus ( 1 ) further comprises a registration unit ( 16 ) for registering the ultrasound image with a previously acquired image or a model of the object ( 3 ) and wherein the location determination unit ( 6 ) is adapted to determine the location of the first ultrasound unit within the object ( 3 ) based on the determined location with respect to the ultrasound image and the registration result. 11. A location determination method for determining a location of an ultrasound unit within an object ( 3 ), wherein the location determination method comprises: transmitting ultrasound signals between at least one ultrasound transducer comprising the first ultrasound unit and at least one ultrasound transducer comprising the second ultrasound unit ( 5 ) located outside the object ( 3 ), generating an ultrasound image of the object ( 3 ) based on ultrasound information from at least one of the at least one ultrasound transducer comprising the first ultrasound unit ( 7 , 8 , 9 , 10 ) and the at least one ultrasound transducer comprising the second ultrasound unit ( 5 ; 105 , 110 ) by an ultrasound image generation unit ( 15 ), and determining the location of the first ultrasound unit within the object ( 3 ) with respect to the ultrasound image based on the ultrasound signals transmitted between the at least one ultrasound transducer comprising the first ultrasound unit and the at least one ultrasound transducer comprising the second ultrasound unit and the ultrasound information from at least one of the at least one ultrasound transducer comprising the first ultrasound unit and the at least one ultrasound transducer comprising the second ultrasound unit by a location determination unit ( 6 ). 12. A computer program product comprising a non-transient computer readable storage medium having encoded thereon, program steps for determining the location of a first ultrasound unit within an object, the program steps comprising the steps of: transmitting ultrasound signals between the first ultrasound unit comprised by at least one ultrasound transducer and a second ultrasound unit ( 5 ) located outside the object ( 3 ) comprised by at least one ultrasound transducer, generating an ultrasound image of the object ( 3 ) based on ultrasound information from at least one of the at least one ultrasound transducer of the first ultrasound unit ( 7 , 8 , 9 , 10 ) and the at least one ultrasound transducer of the second ultrasound unit ( 5 ; 105 , 110 ) by an ultrasound image generation unit ( 15 ), and determining the location of the first ultrasound unit within the object ( 3 ) with respect to the ultrasound image based on the ultrasound signals transmitted between the at least one ultrasound transducers of the first and second ultrasound units and the ultrasound information from the at least one ultrasound transducers of at least one of the first ultrasound unit and the second ultrasound unit by a location determination unit ( 6 ).
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