EP2683293A2

Device for the geometric determination of electrical dipole densities on the cardiac wall

Abstract

This record has no abstract on file.

EP2683293A2, drawing sheet 1
Sheet 1 of 13

Term

5.5 yearsto projected expiry

Projected expiry 9 March 2032, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

175 claims: 172 independent, 3 dependent

  1. 1
    Claims of equivalent WO 2012122517 A2 We Claim:1. A device for creating a database of dipole densities d(y) and distance measurements at the surface of one or more cardiac chambers of a patient, said device comprising: multiple electrodes located on one or more catheters;a transducer constructed and arranged to emit sound waves;and a sensor constructed and arranged to receive reflections of the sound waves.
  2. 2
    The device of any other claim herein, wherein the transducer comprises the sensor.
  3. 3
    The device of any other claim herein, wherein the transducer further comprises at least one of the multiple electrodes.
  4. 4
    The device of any other claim herein, wherein the device is constructed and arranged to produce a real time image.
  5. 5
    The device of any other claim herein, wherein the device is constructed and arranged to produce continuous images.
  6. 6
    The device of any other claim herein, wherein the device is constructed and arranged to produce images of the patient's tissue.
  7. 7
    The device of any other claim herein, wherein the image comprises an image of the one or more cardiac chambers.
  8. 8
    The device of any other claim herein, wherein the image comprises an image of a wall of the one or more cardiac chambers.
  9. 9
    The device of any other claim herein, wherein the image comprises an image of tissue proximate at least one of the multiple electrodes.
  10. 10
    The device of any other claim herein, wherein the image comprises an image of at least one of the multiple electrodes.
  11. 11
    1 1. The device of any other claim herein, wherein the device is constructed and arranged to provide motion information of the patient's tissue.
  12. 12
    The device of any other claim herein, wherein the motion information comprises cardiac wall motion information.
  13. 13
    The device of any other claim herein, wherein the device is constructed and arranged to provide thickness information of the patient's tissue.
  14. 14
    The device of any other claim herein, wherein the thickness information is cardiac wall thickness information.
  15. 15
    The device of any other claim herein, wherein the device is constructed and arranged to produce an image of at least one of the multiple electrodes.
  16. 16
    The device of any other claim herein, wherein the device is constructed and arranged to further produce an image of tissue proximate at least one of the multiple electrodes.
  17. 17
    The device of any other claim herein, wherein the device is constructed and arranged to further produce an image of the one or more cardiac chambers.
  18. 18
    The device of any other claim herein, wherein the device is constructed and arranged to produce a distance measurement.
  19. 19
    The device of any other claim herein, wherein the distance measurement comprises the distance between at least one of the multiple electrodes and a wall of a cardiac chamber.
  20. 20
    The device of any other claim herein, wherein the distance measurement comprises the distance between at least one of the multiple electrodes and at least one of the transducer or the sensor.
  21. 21
    The device of any other claim herein, wherein the distance measurement comprises the distance between a wall of a cardiac chamber and at least one of the transducer or the sensor.
  22. 22
    The device of any other claim herein, wherein the device is constructed and arranged to produce the distance measurement by analyzing at least one of sensor recorded angle or frequency changes.
  23. 23
    The device of any other claim herein, wherein the device is constructed and arranged to determine the position of at least one of the multiple electrodes within a cardiac chamber.
  24. 24
    The device of any other claim herein, wherein the device is constructed and arranged to determined the position of at least two of the multiple electrodes within the cardiac chamber.
  25. 25
    The device of any other claim herein, wherein the device is constructed and arranged to combine distance information received from the multiple electrodes with information received from the sensor.
  26. 26
    The device of any other claim herein, wherein the device is constructed and arranged to provide tissue diagnostic information by analyzing both tissue motion information and cell electrical signals.
  27. 27
    The device of any other claim herein, wherein the cell electrical signals are recorded by the multiple electrodes.
  28. 28
    The device of any other claim herein, wherein the tissue motion information is provided by the sensor.
  29. 29
    The device of any other claim herein, wherein the tissue motion information is further provided by the multiple electrodes.
  30. 30
    The device of any other claim herein, wherein the device is constructed and arranged to provide the tissue diagnostic information during a cardiac ablation procedure.
  31. 31
    The device of any other claim herein, wherein the device is constructed and arranged to provide tissue diagnostic information while arrhythmia therapy or functional therapy is being delivered, wherein such arrhythmia therapy and functional therapy include, but are not limited to, the following therapies:ablation, genetic-agent delivery, Cardiac Resynchronization, and pharmacologic.
  32. 32
    The device of any other claim herein, wherein the device is constructed and arranged to deliver ablation energy to tissue.
  33. 33
    The device of any other claim herein, wherein the device is constructed and arranged to provide precise foci, conduction-gaps, or conduction channels position information.
  34. 34
    The device of any other claim herein, wherein the device is constructed and arranged to locate foci, boundaries of conduction-gaps, or boundaries of conduction channels position within 1mm to 3mm.
  35. 35
    The device of any other claim herein, wherein the device is constructed and arranged to provide the location of cardiac tissue with complex electrograms.
  36. 36
    The device of any other claim herein, wherein the device is constructed and arranged to provide at least three locations comprising complex electrograms.
  37. 37
    The device of any other claim herein, wherein the device is constructed and arranged to provide single beat mapping of cardiac arrhythmias.
  38. 38
    The device of any other claim herein, wherein the device comprises at least one catheter that is constructed and arranged to be steered and/or guided.
  39. 39
    The device of any other claim herein, wherein the catheter is constructed and arranged to be steered and/or guided to the sites of complex electrograms by the real-time tissue analysis and imaging.
  40. 40
    The device of any other claim herein, further comprising a delivery sheath.
  41. 41
    The device of any other claim herein, wherein the delivery sheath is constructed and arranged to slidingly receive an ablation catheter.
  42. 42
    The device of any other claim herein, further comprising an elongate shaft, comprising a proximal portion with a proximal end and a distal portion with a distal end constructed and arranged to be inserted into the body of the patient.
  43. 43
    The device of any other claim herein, further comprising a clamp assembly constructed and arranged to be removably attached to the elongate shaft and to transmit vibrational energy.
  44. 44
    The device of any other claim herein, wherein the clamp assembly comprises a vibrational transducer configured to emit ultrasound waves.
  45. 45
    The device of any other claim herein, wherein the clamp assembly comprises a clamping mechanism constructed and arranged to be removably attached to the elongate shaft.
  46. 46
    The device of any other claim herein, wherein the clamp assembly is positioned on the proximal portion of the elongate shaft.
  47. 47
    The device of any other claim herein, further comprising a handle wherein the proximal portion is within 10 centimeters from the handle.
  48. 48
    The device of any other claim herein, wherein the elongate shaft further comprises a conduit constructed and arranged to transmit the ultrasound waves from the proximal portion to the distal portion.
  49. 49
    The device of any other claim herein, wherein the clamp assembly is positioned on the distal portion of the elongate shaft.
  50. 50
    The device of any other claim herein, wherein the distal portion is within 10 centimeters from the distal end of the elongate shaft.
  51. 51
    The device of any other claim herein, further comprising multiple electrodes wherein the multiple electrodes are positioned on the distal end of the elongate shaft and the clamp assembly is constructed and arranged to vibrate the multiple electrodes.
  52. 53
    The device of any other claim herein, further comprising at least one thermocouple positioned on the elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one thermocouple.
  53. 54
    The device of any other claim herein, further comprising at least one support arm attached to the elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one support arm.
  54. 55
    The device of any other claim herein, wherein the at least one support arm comprises at least one of a sensor or a transducer.
  55. 56
    The device of any other claim herein, further comprising at least one ablation element attached to the elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one ablation element.
  56. 57
    The device of any other claim herein, further comprising at least one sensor attached to the elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one sensor where the sensor is selected from the group consisting of:temperature;pressure;electrical signal;electrode;sound;and combinations of these.
  57. 58
    The device of any other claim herein, further comprising at least one transducer attached to the elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one transducer where the transducer is selected from the group consisting of:ablation element;electrode;sound;and combinations of these.
  58. 59
    The device of any other claim herein, further comprising at least one ultrasound crystal positioned on the elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one crystal.
  59. 60
    The device of any other claim herein, wherein the clamp assembly is constructed and arranged to vibrate the elongate shaft.
  60. 61
    The device of any other claim herein, wherein the clamp assembly is positioned such that the clamp assembly is located outside the patient's body while the distal end of the elongate shaft is located within the patient's body.
  61. 62
    The device of any other claim herein, wherein at least one of the sensor or the transducer is constructed and arranged to clamp to a shaft.
  62. 63
    The device of any other claim herein, wherein the device comprises a shaft and at least one of the sensor or the transducer is constructed and arranged to clamp to said device shaft.
  63. 64
    The device of any other claim herein, wherein at least one of the sensor or the transducer is constructed and arranged to be slidingly received by a shaft.
  64. 65
    The device of any other claim herein, wherein the at least one of the sensor or the transducer is constructed and arranged to be positioned at a geometric center of the multiple electrodes.
  65. 66
    The device of any other claim herein, wherein at least one of the sensor or the transducer comprises a single component.
  66. 67
    The device of any other claim herein, wherein the single component comprises a single crystal.
  67. 68
    The device of any other claim herein, wherein at least one of the sensor or the transducer is constructed and arranged to be rotated.
  68. 69
    The device of any other claim herein, wherein at least one of the sensor or the transducer is constructed and arranged to be rotated 360°.
  69. 70
    The device of any other claim herein, wherein at least one of the sensor or the transducer is constructed and arranged to be translated along an axis.
  70. 71
    The device of any other claim herein, wherein at least one of the sensor or the transducer comprises an array of components.
  71. 72
    The device of any other claim herein, wherein the array comprises an array of ultrasound crystals.
  72. 73
    The device of any other claim herein, wherein the array comprises a circumferential array.
  73. 74
    The device of any other claim herein, wherein at least one of the sensor or the transducer is positioned in or proximate to at least one of the multiple electrodes.
  74. 75
    The device of any other claim herein, wherein the at least one of the sensor or the transducer comprises a first component and a second component and wherein the first component is mounted in or proximate to a first electrode of the multiple electrodes and the second component is mounted in or proximate to a second electrode of the multiple electrodes.
  75. 76
    The device of any other claim herein, wherein at least one of the sensor or the transducer comprises piezoelectric film.
  76. 77
    The device of any other claim herein, further comprising a wire electrically connected to a first electrode and wherein the piezoelectric film covers at least a portion of said wire.
  77. 78
    The device of any other claim herein, wherein at least one of the sensor or the transducer comprises piezoelectric cable.
  78. 79
    The device of any other claim herein, wherein the device comprises a multiple arm assembly and wherein the at least one of the sensor or the transducer is mounted to the multiple arm assembly.
  79. 80
    The device of any other claim herein, wherein a first electrode of the multiple electrodes is mounted to the multiple arm assembly.
  80. 81
    The device of any other claim herein, wherein at least one of the sensor or the transducer is integral to at least one electrode of the multiple electrodes.
  81. 82
    The device of any other claim herein, wherein at least one of the sensor or the transducer comprises a first surface, and wherein at least one electrode of the multiple electrodes comprises a second surface, and wherein the first surface and the second surface are parallel.
  82. 83
    The device of any other claim herein, wherein at least one of the sensor or the transducer is constructed and arranged to rotate and transmit or receive signals to or from the cardiac chamber.
  83. 84
    The device of any other claim herein, wherein the transducer comprises an ultrasound transducer.
  84. 85
    The device of any other claim herein, wherein the transducer is constructed and arranged to produce sound waves in at least one of either constant or pulsed excitation.
  85. 86
    The device of any other claim herein, wherein the transducer comprises multiple transducers.
  86. 87
    The device of any other claim herein, wherein the transducer produces signals with a frequency between 3Mhz and 18Mhz.
  87. 88
    The device of any other claim herein, wherein the transducer is constructed and arranged to clamp on a shaft.
  88. 89
    The device of any other claim herein, wherein the device comprises a shaft and wherein the transducer is constructed and arranged to clamp on said device shaft.
  89. 90
    The device of any other claim herein, wherein the sensor comprises an ultrasound sensor.
  90. 91
    The device of any other claim herein, wherein the sensor comprises multiple sensors.
  91. 92
    The device of any other claim herein, wherein the sensor is constructed and arranged to clamp on a shaft.
  92. 93
    The device of any other claim herein, wherein the device comprises a shaft and wherein the sensor is constructed and arranged to clamp on said device shaft.
  93. 94
    The device of any other claim herein, further comprising:a first receiver constructed and arranged to receive mapping information from the multiple electrodes, the mapping information received when the multiple electrodes are placed in the one or more cardiac chambers;a dipole density module constructed and arranged to generate the three dimensional database of dipole densities d(y), wherein the dipole density module determines a dipole density for individual triangle shaped projections onto the cardiac chamber wall, where each triangle projection at a location y contributes co(x,y) times the dipole density d(y) to a potential V(x) at a point x, wherein d (x,y) is the solid angle for that triangle projection, and where: a) x represents a series of locations within one or more cardiac chambers;and b) V(x) is a measured potential at point x, said measured potential recorded by the multiple electrodes.
  94. 95
    The device of any other claim herein, further comprising:a second receiver constructed and arranged to receive anatomical information from at least one imaging instrument configured to produce a geometrical depiction of the one or more cardiac chambers.
  95. 96
    The device of any other claim herein, wherein said triangle projections are sized such that the dipole density for each triangle projection is substantially constant.
  96. 97
    The device of any other claim herein, wherein the dipole density is determined for at least 1000 triangle shaped projections.
  97. 98
    The device of any other claim herein, wherein the dipole density is determined by a number of triangle shaped projections, said number determined by the size of a cardiac chamber.
  98. 99
    The device of any other claim herein, wherein the multiple electrodes are included in a single catheter.
  99. 100
    The device of any other claim herein, wherein the multiple electrodes are included in two or more catheters.
  100. 101
    The device of any other claim herein, wherein the imaging instrument is selected from a group consisting of:a computed tomography (CT) instrument;a magnetic resonance imaging (MRI) instrument;an ultrasound instrument;a multiple electrode mapping catheter and mapping system;and combinations thereof.
  101. 102
    The device of any other claim herein, wherein the imaging instrument comprises a standard anatomical geometry which is uploaded to the dipole density module.
  102. 103
    The device of any other claim herein, wherein the dipole density module includes a mathematical processing element that comprises one or more of:a computer;an electronic module;a computer program stored in a memory and executable by a processor;a microcontroller;a microprocessor;and combinations thereof.
  103. 104
    The device of any other claim herein, wherein the dipole density module implements a progressive algorithm configured to improve at least one of a spatial resolution and a time resolution of the database of dipole densities d(y).
  104. 105
    The device of any other claim herein, wherein the dipole density module uses a linear system of equations to determine the database of dipole densities d(y).
  105. 106
    The device of any other claim herein, wherein the dipole density module determines a map of dipole densities d(y) at corresponding time intervals.
  106. 107
    The device of any other claim herein, wherein the dipole density module generates a synthesis of maps that represents a cascade of activation sequences of each corresponding heart beat from a series of heart beats.
  107. 108
    The device of any other claim herein, wherein a number of measured potentials V(x) is in a range of up to 100,000 potentials V(x).
  108. 109
    The device of any other claim herein, wherein the cardiac wall is divided into regions, wherein each region is represented by a region solid angle with respect to each electrode, and wherein each region solid angle is the sum of the solid angles of the individual triangles in the region.
  109. 110
    1 10. The device of any other claim herein, wherein a number of regions used to determine the dipole density d(y) is in a range of up to 100,000 regions on the cardiac wall.
  110. 111
    1 1 1. The device of any other claim herein, wherein the measured potentials V(x) are interpolated to increase the number of regions.
  111. 112
    1 12. The device of any other claim herein, wherein V(x) is interpolated using splines.
  112. 113
    1 13. The device of any other claim herein, further comprising:a third receiver configured to receive mapping information from one or more skin electrodes.
  113. 114
    1 14. The device of any other claim herein, wherein the dipole density module uses said mapping information from the one or more skin electrodes to calculate and/or recalculate the database of dipole densities d(y).
  114. 115
    1 15. The device of any other claim herein, wherein the dipole density module calculates and/or recalculates the dipole densities d(y) using at least one of the following equations:wherein a small sinusoidal voltage Viis applied to each electrode 1=1, . . . L on the electrode array in the heart, and the resulting voltages W k , k=l , . . . K is measured at the surface electrodes, which yields the KXL transition matrix. (2) wherein calculating solid angles produces the linear transformation Bi„, between the electrode array potentials V) and the dipole densities d n , n=l, . . . N of N regions of the heart wall;and where equation (2) above is substituted into equation (1) to form equation (3).
  115. 116
    1 16. The device of any other claim herein, wherein the dipole density module is configured to solve equations (2) and (3) using regularization techniques.
  116. 117
    1 17. The device of any other claim herein, wherein the regularization technique comprises a Tikhonov regularization.
  117. 118
    1 18. A system for creating a database of dipole densities d(y) and distance measurements at the surface of one or more cardiac chambers of a patient, said system comprising:a device for creating a database of dipole densities d(y) at the surface of one or more cardiac chambers of a patient, comprising: multiple electrodes located on one or more catheters;a first receiver configured to receive mapping information from the multiple electrodes, the mapping information received when the multiple electrodes are placed in the one or more cardiac chambers;a second receiver configured to receive anatomical information from at least one imaging instrument configured to produce a geometrical depiction of the one or more cardiac chambers;a dipole density module configured to generate the database of dipole densities d(y), wherein the dipole density module determines a dipole density for individual triangle shaped projections onto the cardiac chamber wall, where each triangle projection at a location y contributes co(x,y) times the dipole density d(y) to a potential V(x) at a point x, wherein cb(x,y) is the solid angle for that triangle projection, and wherein: a) x represents a series of locations within one or more cardiac chambers;and b) V(x) is a measured potential at point x, said measured potential recorded by the multiple electrodes.
  118. 119
    1 19. The system of any other claim herein, further comprising a second imaging instrument.
  119. 120
    The system of any other claim herein, comprising a catheter for mapping and ablation.
  120. 121
    The system of any other claim herein, comprising an ablation device configured to deliver one or more of:radio frequency (RF) energy;ultrasound energy, and cryogenic energy.
  121. 122
    The system of any other claim herein, comprising a device configured to deliver one or more of the following therapies:genetic-agent delivery, cardiac ^synchronization, and pharmacologic.
  122. 123
    A method of creating a database of dipole densities d(y) and distance measurements at the surface of one or more cardiac chambers of a patient, said method comprising:placing a distal end of an electrode catheter into one of the one or more cardiac chambers of a patient;and calculating dipole densities d(y) by: a first receiver receiving mapping information from multiple electrodes located on one or more catheters, the mapping information received when the multiple electrodes are placed in the one or more cardiac chambers;a second receiver receiving anatomical information from at least one imaging instrument configured to produce a geometrical depiction of the one or more cardiac chambers;and a dipole density module generating the database of dipole densities d(y), wherein the dipole density module determines a dipole density for individual triangle shaped projections onto the cardiac chamber wall, where each triangle projection at a location y contributes G (x,y) times the dipole density d(y) to a potential V(x) at a point x, wherein co(x,y) is the solid angle for that triangle projection, and where: a) x represents a series of locations within one or more cardiac chambers;and b) V(x) is a measured potential at point x, said measured potential recorded by the multiple electrodes;and calculating distance or movement information by analyzing signals received from a sound sensor.
  123. 124
    The method of any other claim herein, wherein calculating distance information comprises calculating tissue thickness information.
  124. 125
    The method of any other claim herein, including using the dipole densities d(y) to locate an origin of abnormal electrical activity of a heart.
  125. 126
    The method of any other claim herein, wherein calculating the dipole densities includes a processor executing a computer program stored in a memory, the computer program embodying an algorithm for generating a table of dipole densities in the memory.
  126. 127
    A method for diagnosing tissue, said method comprising:placing a distal end of a catheter into one or more cardiac chambers of a patient;wherein the catheter comprises at least one electrode and at least one ultrasound element;determining a tissue movement via the at least one ultrasound element;determining an electrical charge via the at least one electrode;and determining tissue diagnostics based upon the tissue movement and the electrical charge.
  127. 128
    A medical method comprising:inserting a device of any of claim 1 through 122 into a delivery system;advancing the device through the delivery system and into a heart chamber;and steering the device and/or the delivery system such that the distal end of the device is positioned in approximately the geometric center of the heart chamber.
  128. 129
    A method of diagnosing tissue of a patient, comprising:combining electrical information and anatomical information;wherein the electrical information comprises information received from multiple electrodes constructed and arranged to record electrical signals produced by tissue;and wherein the anatomical information comprises information received by a sensor constructed and arranged to record sound signals.
  129. 130
    The method of any other claim herein, wherein electrical information indicative of adequate electrical activity and anatomical information indicative of adequate tissue motion correlates to presence of healthy tissue.
  130. 131
    The method of any other claim herein, wherein electrical information indicative of adequate electrical activity and anatomical information indicative of inadequate tissue motion correlates to presence of at least one of ischemic tissue or hibernating tissue.
  131. 132
    The method of any other claim herein, wherein the electrical information comprises signals larger than a threshold voltage.
  132. 133
    The method of any other claim herein, wherein electrical information indicative of inadequate electrical activity and anatomical information indicative of inadequate tissue motion correlates to presence of scar tissue.
  133. 134
    The method of any other claim herein, wherein the diagnosis comprises an assessment of tissue ischemia.
  134. 135
    The method of any other claim herein, wherein the diagnosis comprises an assessment of electrical integrity of cardiac cells.
  135. 136
    The method of any other claim herein, wherein the diagnosis further comprises an assessment of the functional status of the cardiac cells.
  136. 137
    The method of any other claim herein, wherein electrical information indicative of inadequate electrical activity and anatomical information indicative of inadequate tissue motion correlates to presence of a complete ablation such as an ablation performed in a cardiac ablation performed to treat a cardiac arrhythmia.
  137. 138
    The method of any other claim herein, wherein the complete ablation comprises a transmural ablation.
  138. 139
    The method of any other claim herein, wherein the electrical information comprises dipole density information.
  139. 140
    The method of any other claim herein, wherein the electrical information comprises at least one of the following:depolarization, repolarization, speed of wavefront propagation, magnitude of voltage (max, min, gradient), timing of activation, and duration of activation.
  140. 141
    The method of any other claim herein, further comprising ablating cardiac tissue by applying ablation energy for a time period.
  141. 142
    The method of any other claim herein, wherein the anatomical information comprises tissue thickness information and at least one of the ablation energy or the time period is adjusted based on the tissue thickness information.
  142. 143
    A method for performing a medical procedure on a patient, the method comprising:inserting a first catheter into the patient, wherein the first catheter comprises a first set of elements and at least one sensor;inserting a second catheter into the patient, wherein the second catheter comprises an elongate shaft and wherein the second catheter comprises a second set of elements;and attaching a clamp assembly to the second catheter, wherein the clamp assembly is constructed and arranged to be removably attached to the second catheter and to transmit vibrational energy.
  143. 144
    The method of any other claim herein, wherein the first set of elements comprises a sensor.
  144. 145
    The method of any other claim herein, wherein the sensor is selected from a group consisting of:temperature;pressure;electrical signal;electrode;sound;and combinations of these.
  145. 146
    The method of any other claim herein, wherein the first set of elements comprises a transducer.
  146. 147
    The method of any other claim herein, wherein the transducer is selected from the group consisting of:ablation element;electrode;sound;and combinations of these.
  147. 148
    The method of any other claim herein, wherein the at least one sensor comprises an ultrasound sensor.
  148. 149
    The method of any other claim herein, wherein the at least one sensor comprises a transducer.
  149. 150
    The method of any other claim herein, wherein the transducer comprises an ultrasound transducer.
  150. 151
    The method of any other claim herein, wherein the second set of elements comprises a sensor.
  151. 152
    The method of any other claim herein, wherein the sensor is selected from the group consisting of:temperature;pressure;electrical signal;electrode;sound;and combinations of these.
  152. 153
    The method of any other claim herein, wherein the second set of elements comprises a transducer.
  153. 154
    The method of any other claim herein, wherein the transducer is selected from the group consisting of:ablation element;electrode;sound;and combinations of these.
  154. 155
    The method of any other claim herein, wherein the second catheter elongate shaft comprises a proximal portion with a proximal end and a distal portion with a distal end.
  155. 156
    The method of any other claim herein, wherein the clamp assembly comprises a vibrational transducer configured to emit ultrasound waves.
  156. 157
    The method of any other claim herein, wherein the clamp assembly comprises a clamping mechanism constructed and arranged to be removably attached to the second catheter elongate shaft.
  157. 158
    The method of any other claim herein, wherein the clamp assembly is positioned on the proximal portion of the second catheter elongate shaft.
  158. 159
    The method of any other claim herein, wherein the second catheter comprises a handle.
  159. 160
    The method of any other claim herein, wherein the clamp assembly is positioned within 10 centimeters from the handle.
  160. 161
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises a conduit constructed and arranged to transmit the ultrasound waves from the proximal portion to the distal portion of the second catheter elongate shaft.
  161. 162
    The method of any other claim herein, wherein the clamp assembly is positioned on the distal portion of the second catheter elongate shaft.
  162. 163
    The method of any other claim herein, wherein the second catheter distal portion is within 10 centimeters from the distal end of the second catheter elongate shaft.
  163. 164
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises multiple electrodes wherein the multiple electrodes are positioned on the distal end of the second catheter elongate shaft and the clamp assembly is constructed and arranged to vibrate the multiple electrodes.
  164. 166
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises at least one thermocouple positioned on the second catheter elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one thermocouple.
  165. 167
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises at least one support arm attached to the second catheter elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one support arm.
  166. 168
    The method of any other claim herein, wherein the at least one support arm comprises at least one of a sensor or a transducer.
  167. 169
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises at least one ablation element attached to the second catheter elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one ablation element.
  168. 170
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises at least one sensor attached to the second catheter elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one sensor where the sensor is selected from the group consisting of:temperature;pressure;electrical signal;electrode;sound;and combinations of these.
  169. 171
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises at least one transducer attached to the second catheter elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one transducer where the transducer is selected from the group consisting of:ablation element;electrode;sound;and combinations of these.
  170. 172
    The method of any other claim herein, wherein the second catheter elongate shaft further comprises at least one ultrasound crystal positioned on the second catheter elongate shaft wherein the clamp assembly is constructed and arranged to vibrate the at least one crystal.
  171. 173
    The method of any other claim herein, wherein the clamp assembly is constructed and arranged to vibrate the second catheter elongate shaft.
  172. 174
    The method of any other claim herein, wherein the clamp assembly is positioned such that the clamp assembly is located outside the patient's body while the distal end of the second catheter elongate shaft is located within the patient's body.
  173. 175
    The device, system, and/or method for real time, non-contact imaging and distance measurements using ultrasound for dipole density mapping, as well as methods for diagnosing tissue health, as depicted in the drawings included herein.
Independent claims173