Shock wave lithotripter and method for using the same
First Claim
1. A shock wave lithotripter comprising:
- a) shock wave generating means for producing shock waves that are focused at a focus point remote from said shock wave generating means during operation of said lithotripter;
b) an ultrasound probe having a transducer for producing ultrasound beams defining a plane of radiation during calibration of said lithotripter;
c) probe mounting means mounting said probe relative to said shock wave generating means;
d) said mounting means being constructed and arranged to that the probe is spatially adjustable relative to said shock wave generating means during calibration and operation of said lithotripter for effecting illumination by said ultrasound beams of a region containing said focus point;
e) a focal point target having a fee end;
f) target mounting means mounting said target relative to said shock wave generating means such that said free end is positionable at said focus point; and
g) display means having a screen for displaying the plane illuminated by said ultrasound beams such that said free end of said target is visible on said screen.
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Abstract
A shock wave lithotripter includes a shock wave generator for producing shock waves that are focused at a focus point remote from the shock wave generator during operation of the lithotripter, and an ultrasound probe having a transducer for producing ultrasound beams defining a plane of radiation during a calibration mode of operation of the lithotripter. Associated with the ultrasound probe is a screen for showing a display of the region illuminated by the beams. During calibration, the free end of a focal point target is positioned at the focus point of the lithotripter. The probe is moved in a direction perpendicular to the plane of the radiation beams produced by the probe until the free end of the target is illuminated by the ultrasound radiation. The location on the screen of the free end of the target is marked to indicate the location of the focus point of the shock wave generator in the display. The target is removed, and the lithotripter is then positioned relative to a patient such that a stone in the body of the patient, as displayed on the screen associated with the ultrasound scan, coincides with the mark on the screen representing the focus point of the lithotripter. Shock waves produced by the shock wave generator are thus focused on the stone which is fragmented by shock waves when the generator is activated.
39 Citations
13 Claims
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1. A shock wave lithotripter comprising:
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a) shock wave generating means for producing shock waves that are focused at a focus point remote from said shock wave generating means during operation of said lithotripter; b) an ultrasound probe having a transducer for producing ultrasound beams defining a plane of radiation during calibration of said lithotripter; c) probe mounting means mounting said probe relative to said shock wave generating means; d) said mounting means being constructed and arranged to that the probe is spatially adjustable relative to said shock wave generating means during calibration and operation of said lithotripter for effecting illumination by said ultrasound beams of a region containing said focus point; e) a focal point target having a fee end; f) target mounting means mounting said target relative to said shock wave generating means such that said free end is positionable at said focus point; and g) display means having a screen for displaying the plane illuminated by said ultrasound beams such that said free end of said target is visible on said screen. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9)
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10. A method for calibrating a lithotripter having shock wave generator means for producing shock waves that are focused at a focus point remote from said shock wave generator means during operation of said lithotripter, an ultrasound probe having a transducer for producing a sector scan of ultrasound radiation during calibration of said lithotripter, and a display for displaying an image produced by said sector scan, said method comprising the steps of:
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a) positioning the free end of a focal point target at said focus point; b) moving said probe in a direction perpendicular to said plane of said sector of radiation until said free end of said target is illuminated by said radiation; c) marking said display to indicate the locating of an image of the free end of said target; and d) removing the target and thereafter positioning the lithotripter relative to a patient such that a stone in the body of the patient detected by the ultrasound scan coincides with the marking on said display.
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11. A method for utilizing a lithotripter having shock wave generator means for producing shock waves that are focused at a focus point remote from said shock wave generator means during operation of said lithotripter, an ultrasound probe having a transducer for producing a sector scan of ultrasound radiation during calibration of said lithotripter, and a display screen for displaying an image produced by said sector scan, said method comprising the steps of:
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a) positioning the free end of a focal point target at said focus point; b) moving said probe in a direction perpendicular to said plane of said sector of radiation until said free end of said target is illuminated by said radiation; c) marking said display to indicate the location of an image of the free end of said target; d) removing the target and thereafter positioning the lithotripter relative to a patient such that a stone in the body of the patient detected by the ultrasound scan coincides with the marking on the display; and e) acoustically coupling the patient to the shock wave generator means and thereafter causing said shock wave generator means to produce shock waves that are focused on said stone. - View Dependent Claims (12, 13)
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Specification