Nova Patents
IL148299A

Ultrasound cardiac stimulator

Abstract

This record has no abstract on file.

IL148299A, drawing sheet 1
Sheet 1 of 5

Term

No projected expiry on record.

  1. Priority and filed
  2. Published
  3. Today

109 claims: 54 independent, 55 dependent

  1. 1
    An ultrasound cardiac stimulation system comprising:a spatially selective ultrasound source comprising at least one ultrasound transducer located outside the circulatory system;and a controller;wherein the controller generates an electrical response in the heart by directing the ultrasound source to transmit a high enough power level of ultrasound to one or more locations in the heart.
  2. 7
    A system according to any of claims 3-6, and including an injector which injects one or both of drugs for treating the heart and contrast agents into the bloodstream.
  3. 10
    A system according to any of claims 3-9 wherein the controller is operative to choose the one or more locations to which the ultrasound is transmitted.
  4. 15
    A system according to any of claims 10-14, wherein the controller controls the ultrasound source to direct ultrasound energy to a designated location, and the point of highest power flux density falls within a transverse precision of 1 mm of said designated location.
  5. 19
    A system according to any of claims 10-18, wherein the controller controls the ultrasound source to direct a high enough power level of ultrasound to one or more locations in the heart to kill cardiac tissue by heating it.
  6. 20
    A system according to any of claims 10-19, wherein the controller controls the ultrasound source to direct a high enough power level of ultrasound to one or more locations in the heart to kill cardiac tissue by cavitation.
  7. 21
    A system according to any of claims 10-20, and including an electrocardiograph which measures the timing of the cardiac cycle.
  8. 26
    A system according to any of claims 21-25, which uses feedback from the electrocardiograph to control the ultrasound power level.
  9. 27
    A system according to any of claims 21-26, wherein the controller is operative to 5 make a map of the heart, showing the ultrasound power flux required to generate the electrical response at each of several locations in the heart.
  10. 28
    A system according to any of claims 21-27, wherein the controller is operative to direct the ultrasound source to transmit a first sequence of timed localized pulses of 10 ultrasound energy to the heart, and a second such sequence which differs from the first sequence in one or both of timing and location of the pulses, and the controller is operative to collect a first data set showing the effects of the first sequence on the heart, and a second data set showing the effects of the second sequence on the heart. 15
  11. 30
    A system according to any of claims 10-20, wherein the controller is operative to direct the ultrasound source to transmit a first sequence of timed localized pulses of 20 ultrasound energy to the heart, and a second such sequence which differs from the first sequence in one or both of timing and location of the pulses, and the controller is operative to collect a first data set showing the effects of the first sequence on the heart, and a second data set showing the effects of the second sequence on the heart. 25
  12. 31
    A system according to any of claims 28-30, and including a memory which is operative to store the first data set and the second data set, a data analyzer which is operative to analyze data and produce analysis results from the first data set and the second data set, and a display which displays the analysis results. 30
  13. 32
    A system according to any of claims 28-31, wherein the first data set and the second data set comprise data on systolic pressure.
  14. 33
    A system according to any of claims 28-32, wherein the first sequence and the second sequence differ in timing of the pulses.
  15. 34
    A system according to any of claims 28-33, wherein the first sequence and the 5 second sequence differ in location of the pulses.
  16. 35
    A system according to any of claims 28-34, and including a cardiac imaging system which produces images showing the position of one or more locations on the heart. 10
  17. 38
    A system according to any of claims 10-27, and including a cardiac imaging 20 system which produces images showing the position of one or more locations on the heart.
  18. 39
    A system according to any of claims 35-38, wherein the images produced by the imaging system show the mechanical response of the heart to stimulation produced by the ultrasound.
  19. 40
    A system according to any of claims 35-39, wherein the imaging system is in a fixed position and orientation with respect to the ultrasound source.
  20. 41
    A system according to any of claims 35-40, and including sensors which 30 determine the relative position and orientation of the imaging system and the ultrasound source.
  21. 42
    A system according to any of claims 35-41, wherein the imaging system determines the relative position and orientation of the ultrasound source by imaging it.
  22. 43
    A system according to any of claims 35-42, wherein the controller coordinates the timing of the imaging system with the timing of the ultrasound source.
  23. 44
    A system according to any of claims 35-43 wherein the controller is operative to make a map of the heart, using data from the imaging system, showing the mechanical response of the heart at one or more locations to ultrasound energy transmitted to one or more locations.
  24. 45
    A system according to any of claims 35-44, which uses feedback from the imaging system to control the ultrasound power level.
  25. 46
    A system according to any of claims 35-45, wherein the imaging system uses ultrasound imaging.
  26. 49
    A system according to any of claims 35-48, wherein the imaging system comprises a computerized tomography x-ray imaging system.
  27. 50
    A system according to any of claims 35-49, wherein the imaging system comprises a magnetic resonance imaging system.
  28. 51
    A system according to any of claims 35-50, and including image processing software which analyzes the images to determine the position of one or more locations on the heart.
  29. 58
    A system according to any of claims 53-57, wherein the controller controls the ultrasound source to direct ultrasound energy to a designated location, and the point of highest power flux density falls within a transverse precision of 1 mm of said designated location.
  30. 62
    A system according to any of claims 53-61, and including an electrocardiograph which measures the timing of the cardiac cycle.
  31. 67
    A system according to any of claims 1-9, and including an electrocardiograph which measures the timing of the cardiac cycle.
  32. 72
    A system according to any of claims 1-9 and 53-71, and including a cardiac imaging system which produces images showing the position of one or more locations on 20 the heart.
  33. 73
    A system according to claims 72, wherein the imaging system is in a fixed position and orientation with respect to the ultrasound source. 25
  34. 75
    A system according to any of claims 72-74, wherein the imaging system 30 determines the relative position and orientation of the ultrasound source by imaging it.
  35. 76
    A system according to any of claims 72-75, wherein the controller coordinates the timing of the imaging system with the timing of the ultrasound source.
  36. 77
    A system according to any of claims 72-76, wherein the imaging system uses ultrasound imaging.
  37. 80
    A system according to any of claims 72-79, wherein the imaging system comprises a computerized tomography x-ray imaging system.
  38. 81
    A system according to any of claims 72-80, wherein the imaging system comprises a magnetic resonance imaging system.
  39. 82
    A system according to any of claims 72-81, and including image processing software which analyzes the images to determine the position of one or more locations on the heart.
  40. 84
    A system according to any of claims 21-52 and 62-83, wherein the controller coordinates the timing of the transmission of ultrasound with the cardiac cycle.
  41. 85
    A system according to any of claims 21-52 or 62-84, and including a cardiac catheter which generates an electrical response in the heart, and a calibration mode of the controller, wherein the controller, when it is in the calibration mode, calibrates the ultrasound power transmitted to the heart by the ultrasound array, by comparing a physiological response induced by the ultrasound array to a physiological response induced by the catheter.
  42. 88
    A system according to any of claims 85-87, wherein the cardiac catheter generates an electrical response by direct electric stimulation.
  43. 89
    A system according to any of claims 85-88, wherein the cardiac catheter comprises an internal ultrasound transducer, and the cardiac catheter generates an electrical response 15 by transmitting ultrasound.
  44. 90
    A system according to any of claims 85-88, wherein the cardiac catheter kills cardiac tissue. 20
  45. 92
    A system according to any of the preceding claims, wherein the ultrasound source 25 comprises a phased array of the ultrasound transducers.
  46. 93
    A system according to any of the preceding claims, wherein at least one of the at least one ultrasound transducers is adapted for use on the surface of the body. 30
  47. 95
    A system according to any of the preceding claims, wherein at least one of the at least one ultrasound transducers is adapted for use in the esophagus.
  48. 96
    A system according to any of the preceding claims, wherein at least one of the at least one ultrasound transducers is adapted for use in a nasal cavity.
  49. 97
    A system according to any of the preceding claims, wherein the ultrasound source and the controller are operative to direct the ultrasound energy with 90% of the power flux falling within 3 mm transversely of the point of highest power flux density.
  50. 100
    A system according to any of the preceding claims, wherein the ultrasound source and the controller are operative to direct the ultrasound energy with the power flux spreading out to 50% of its highest density within 6 mm axially of the point of highest power flux density.
  51. 103
    A system according to any of the preceding claims, wherein the ultrasound source and the controller are operative to direct the ultrasound energy with a power flux density greater than 30 watts per square centimeter at the point of highest power flux density.
  52. 106
    A system according to any of the preceding claims, wherein the ultrasound source and the controller are operative to direct the ultrasound energy in a pulse lasting less than 10 milliseconds.
  53. 108
    A system according to any of the preceding claims, wherein the ultrasound source and the controller are operative to direct the ultrasound energy in a pulse lasting for a duration within 10% of a duration for which the controller is directed to direct the energy.
  54. 109
    A system according to any of the preceding claims, wherein the ultrasound source and the controller are operative to direct the ultrasound energy at a frequency greater than 0.5 megahertz and less than 6 megahertz.
Independent claims54