Patents by Inventor Peter M. Celliers
Peter M. Celliers has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 6876723Abstract: A pump-probe scheme measures the rise time of ultrafast x-ray pulses. Conventional high speed x-ray diagnostics (x-ray streak cameras, PIN diodes, diamond PCD devices) do not provide sufficient time resolution to resolve rise times of x-ray pulses on the order of 50 fs or less as they are being produced by modern fast x-ray sources. Here, we are describing a pump-probe technique that can be employed to measure events where detector resolution is insufficient to resolve the event. The scheme utilizes a diamond plate as an x-ray transducer and a p-polarized probe beam.Type: GrantFiled: July 1, 2003Date of Patent: April 5, 2005Assignee: The United States of America as represented by the Department of EnergyInventors: Peter M. Celliers, Franz A. Weber, Stephen J. Moon
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Patent number: 6575965Abstract: A medical device is constructed in the basic form of a catheter having a distal end for insertion into and manipulation within a body and a proximal end providing for a user to control the manipulation of the distal end within the body. A fiberoptic cable is disposed within the catheter and having a distal end proximate to the distal end of the catheter and a proximal end for external coupling of laser light energy. A laser-light-to-mechanical-power converter is connected to receive light from the distal end of the fiber optic cable and may include a photo-voltaic cell and an electromechanical motor or a heat-sensitive photo-thermal material. An electronic sensor is connected to receive electrical power from said distal end of the fiberoptic cable and is connected to provide signal information about a particular physical environment and communicated externally through the fiberoptic cable to the proximal end thereof.Type: GrantFiled: November 16, 2000Date of Patent: June 10, 2003Assignee: The Regents of the University of CaliforniaInventors: Joseph P. Fitch, Dennis L. Matthews, Karla G. Hagans, Abraham P. Lee, Peter Krulevitch, William J. Benett, Robert E. Clough, Luiz B. DaSilva, Peter M. Celliers
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Patent number: 6538739Abstract: The present invention is intended as a means of diagnosing the presence of a gas bubble and incorporating the information into a feedback system for opto-acoustic thrombolysis. In opto-acoustic thrombolysis, pulsed laser radiation at ultrasonic frequencies is delivered intraluminally down an optical fiber and directed toward a thrombus or otherwise occluded vessel. Dissolution of the occlusion is therefore mediated through ultrasonic action of propagating pressure or shock waves. A vapor bubble in the fluid surrounding the occlusion may form as a result of laser irradiation. This vapor bubble may be used to directly disrupt the occlusion or as a means of producing a pressure wave. It is desirable to detect the formation and follow the lifetime of the vapor bubble. Knowledge of the bubble formation and lifetime yields critical information as to the maximum size of the bubble, density of the absorbed radiation, and properties of the absorbing material.Type: GrantFiled: September 30, 1997Date of Patent: March 25, 2003Assignee: The Regents of the University of CaliforniaInventors: Steven R. Visuri, Beth M. Mammini, Luiz B. Da Silva, Peter M. Celliers
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Patent number: 6428531Abstract: Partial or total occlusions of fluid passages within the human body are removed by positioning an array of optical fibers in the passage and directing treatment radiation pulses along the fibers, one at a time, to generate a shock wave and hydrodynamics flows that strike and emulsify the occlusions. A preferred application is the removal of blood clots (thrombin and embolic) from small cerebral vessels to reverse the effects of an ischemic stroke. The operating parameters and techniques are chosen to minimize the amount of heating of the fragile cerebral vessel walls occurring during this photo acoustic treatment. One such technique is the optical monitoring of the existence of hydrodynamics flow generating vapor bubbles when they are expected to occur and stopping the heat generating pulses propagated along an optical fiber that is not generating such bubbles.Type: GrantFiled: June 27, 2000Date of Patent: August 6, 2002Assignees: The Regents of the University of California, Endovasix, Inc.Inventors: Steven R. Visuri, Luiz B. Da Silva, Peter M. Celliers, Richard A. London, Duncan J. Maitland, IV, Victor C. Esch
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Patent number: 6368318Abstract: Fiber delivered laser pulses emulsify thrombus by mechanical stresses that include a combination of pressure, tension and shear stress. Laser radiation is delivered to the locality of a thrombus and the radiation is absorbed by blood, blood dot, or other present materials. The combination of a leading pressure wave and subsequent vapor bubble cause efficient, emulsification of thrombus. Operating the laser in a low average power mode alleviates potential thermal complications. The laser is operated in a high repetition rate mode to take advantage of ultrasound frequency effects of thrombus dissolution as well as to decrease the total procedure time. Specific parameter ranges for operation are described. The device includes optical fibers surrounding a lumen intended for flow of a cooling agent. The fibers may be arranged concentrically around the lumen to deliver radiation and heat over as large an area as possible.Type: GrantFiled: January 23, 1998Date of Patent: April 9, 2002Assignee: The Regents of the University of CaliforniaInventors: Steven R. Visuri, Luiz B. Da Silva, Peter M. Celliers, Richard A. London, William Benett, Kathryn Broughton, Victor Esch
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Patent number: 5986234Abstract: A compact laser system that removes surface coatings (such as paint, dirt, etc.) at a removal rate as high as 1000 ft.sup.2 /hr or more without damaging the surface. A high repetition rate laser with multiple amplification passes propagating through at least one optical amplifier is used, along with a delivery system consisting of a telescoping and articulating tube which also contains an evacuation system for simultaneously sweeping up the debris produced in the process. The amplified beam can be converted to an output beam by passively switching the polarization of at least one amplified beam. The system also has a personal safety system which protects against accidental exposures.Type: GrantFiled: March 28, 1997Date of Patent: November 16, 1999Assignee: The Regents of the University of CaliforniaInventors: Dennis L. Matthews, Peter M. Celliers, Lloyd Hackel, Luiz B. Da Silva, C. Brent Dane, Stanley Mrowka
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Patent number: 5722989Abstract: A micro-mechanical system for medical procedures is constructed in the basic form of a catheter having a distal end for insertion into and manipulation within a body and a near end providing for a user to control the manipulation of the distal end within the body. A fiberoptic cable is disposed within the catheter and having a distal end proximate to the distal end of the catheter and a near end for external coupling of laser light energy. A microgripper is attached to the distal end of the catheter and providing for the gripping or releasing of an object within the body. A laser-light-to-mechanical-power converter is connected to receive laser light from the distal end of the fiberoptic cable and connected to mechanically actuate the microgripper.Type: GrantFiled: March 6, 1997Date of Patent: March 3, 1998Assignee: The Regents of the University of CaliforniaInventors: Joseph P. Fitch, Karla Hagans, Robert Clough, Dennis L. Matthews, Abraham P. Lee, Peter A. Krulevitch, William J. Benett, Luiz Da Silva, Peter M. Celliers