Patents by Inventor Eric A. Wachter

Eric A. Wachter 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).

  • Patent number: 6331286
    Abstract: Methods of treating and imaging diseased tissue having the steps of administering a radiosensitizer agent proximate to or into the diseased tissue; and treating the diseased tissue with x-rays or other ionizing radiation so as to activate the radiosensitizer agent in the diseased tissue. Preferably, the radiosensitizer agent is a halogenated xanthene.
    Type: Grant
    Filed: December 21, 1998
    Date of Patent: December 18, 2001
    Assignee: Photogen, Inc.
    Inventors: H. Craig Dees, Timothy Scott, John T. Smolik, Eric A. Wachter
  • Patent number: 6311557
    Abstract: Methods and apparatus for detecting particular frequencies of vibration utilize a magnetically-tunable beam element having a stress-sensitive coating and means for providing magnetic force to controllably deflect the beam element thereby changing its stiffness and its resonance frequency. It is then determined from the response of the magnetically-tunable beam element to the vibration to which the beam is exposed whether or not a particular frequency or frequencies of vibration are detected.
    Type: Grant
    Filed: September 24, 1999
    Date of Patent: November 6, 2001
    Assignee: UT-Battelle, LLC
    Inventors: J. Kenneth Davis, Thomas G. Thundat, Eric A. Wachter
  • Publication number: 20010022970
    Abstract: New intracorporeal photodynamic medicaments and certain medical uses and methods for use of such photodynamic medicaments for treatment of disease in human or animal tissue are described, wherein a primary active component of such medicaments is a halogenated xanthene or halogenated xanthene derivative. In preferred embodiments, such medicaments are used for treatment of a variety of conditions affecting the skin and related organs, the mouth and digestive tract and related organs, the urinary and reproductive tracts and related organs, the respiratory tract and related organs, the circulatory system and related organs, the head and neck, the endocrine and lymphoreticular systems and related organs, various other tissues, such as connective tissues and various tissue surfaces exposed during surgery, as well as various tissues exhibiting microbial or parasitic infection.
    Type: Application
    Filed: March 6, 2001
    Publication date: September 20, 2001
    Applicant: Photogen, Inc.
    Inventors: H. Craig Dees, Timothy C. Scott, Eric A. Wachter, Walter G. Fisher, John Smolik
  • Patent number: 6263736
    Abstract: Methods and apparatus for detecting particular frequencies of acoustic vibration utilize an electrostatically-tunable beam element having a stress-sensitive coating and means for providing electrostatic force to controllably deflect the beam element thereby changing its stiffness and its resonance frequency. It is then determined from the response of the electrostatically-tunable beam element to the acoustical vibration to which the beam is exposed whether or not a particular frequency or frequencies of acoustic vibration are detected.
    Type: Grant
    Filed: September 24, 1999
    Date of Patent: July 24, 2001
    Assignee: UT-Battelle, LLC
    Inventors: Thomas G. Thundat, Eric A. Wachter, J. Kenneth Davis
  • Patent number: 6118124
    Abstract: Electromagnetic and nuclear radiation is detected by micromechanical sensors that can be coated with various interactive materials. As the micromechanical sensors absorb radiation, the sensors bend and/or undergo a shift in resonance characteristics. The bending and resonance changes are detected with high sensitivity by any of several detection methods including optical, capacitive, and piezoresistive methods. Wide bands of the electromagnetic spectrum can be imaged with picoJoule sensitivity, and specific absorptive coatings can be used for selective sensitivity in specific wavelength bands. Microcantilevers coated with optical cross-linking polymers are useful as integrating optical radiation dosimeters. Nuclear radiation dosimetry is possible by fabricating cantilevers from materials that are sensitive to various nuclear particles or radiation.
    Type: Grant
    Filed: January 18, 1996
    Date of Patent: September 12, 2000
    Assignee: Lockheed Martin Energy Research Corporation
    Inventors: Thomas G. Thundat, Robert J. Warmack, Eric A. Wachter
  • Patent number: 6042603
    Abstract: An apparatus for the treatment of a particular volume of plant or animal tissue by treating the plant or animal tissue with at least one photo-active molecular agent, wherein the particular volume of the plant or animal tissue retains at least a portion of the at least one photo-active molecular agent, and then treating the particular volume of the plant or animal tissue with light sufficient to promote a simultaneous two-photon excitation of at least one of the at least one photo-active molecular agent retained in the particular volume of the plant or animal tissue, wherein the at least one photo-active molecular agent becomes active in the particular volume of the plant or animal tissue.
    Type: Grant
    Filed: May 4, 1998
    Date of Patent: March 28, 2000
    Assignee: Photogen, Inc.
    Inventors: Walter G. Fisher, Eric A. Wachter, H. Craig Dees
  • Patent number: 5998597
    Abstract: A method for the treatment of a particular volume of plant or animal tissue comprising the steps of treating the plant or animal tissue with at least one photo-active molecular agent, wherein the particular volume of the plant or animal tissue retains at least a portion of the at least one photo-active molecular agent, and then treating the particular volume of the plant or animal tissue with light sufficient to promote a simultaneous two-photon excitation of at least one of the at least one photo-active molecular agent retained in the particular volume of the plant or animal tissue, wherein the at least one photo-active molecular agent becomes active in the particular volume of the plant or animal tissue. There is also disclosed a method for the treatment of cancer in plant or animal tissue and a method for producing at least one photo-activated molecular agent in a particular volume of a material.
    Type: Grant
    Filed: December 11, 1997
    Date of Patent: December 7, 1999
    Assignee: Photogen, Inc.
    Inventors: Walter G. Fisher, Eric A. Wachter, H. Craig Dees
  • Patent number: 5889490
    Abstract: A high resolution ranging method is described utilizing a novel modulated waveform, hereafter referred to as coherent burst modulation. In the coherent burst method, high frequency modulation of an acoustic or electromagnetic transmitter, such as a laser, is performed at a modulation frequency. This modulation frequency is transmitted quasi-continuously in the form of interrupted bursts of radiation. Energy from the transmitter is directed onto a target, interacts with the target, and the returning energy is collected. The encoded burst pattern contained in the collected return signal is detected coherently by a receiver that is tuned so as to be principally sensitive to the modulation frequency. The receiver signal is processed to determine target range using both time-of-flight of the burst envelope and phase shift of the high frequency modulation.
    Type: Grant
    Filed: April 24, 1998
    Date of Patent: March 30, 1999
    Inventors: Eric A. Wachter, Walter G. Fisher
  • Patent number: 5832931
    Abstract: A method for the imaging of a particular volume of plant or animal tissue, wherein the plant or animal tissue contains at least one photo-active molecular agent. The method includes the steps of treating the particular volume of the plant or animal tissue with light sufficient to promote a simultaneous two-photon excitation of the photo-active molecular agent contained in the particular volume of the plant or animal tissue, photo-activating at least one of the at least one photo-active molecular agent in the particular volume of the plant or animal tissue, thereby producing at least one photo-activated molecular agent, wherein the at least one photo-activated molecular agent emits energy, detecting the energy emitted by the at least one photo-activated molecular agent, and producing a detected energy signal which is characteristic of the particular volume of plant or animal tissue.
    Type: Grant
    Filed: October 30, 1996
    Date of Patent: November 10, 1998
    Assignee: Photogen, Inc.
    Inventors: Eric A. Wachter, Walter G. Fisher, H. Craig Dees
  • Patent number: 5829448
    Abstract: A method for the treatment of a particular volume of plant or animal tissue comprising the steps of treating the plant or animal tissue with at least one photo-active molecular agent, wherein the particular volume of the plant or animal tissue retains at least a portion of the at least one photo-active molecular agent, and then treating the particular volume of the plant or animal tissue with light sufficient to promote a simultaneous two-photon excitation of at least one of the at least one photo-active molecular agent retained in the particular volume of the plant or animal tissue, wherein the at least one photo-active molecular agent becomes active in the particular volume of the plant or animal tissue. There is also disclosed a method for the treatment of cancer in plant or animal tissue and a method for producing at least one photo-activated molecular agent in a particular volume of a material.
    Type: Grant
    Filed: October 30, 1996
    Date of Patent: November 3, 1998
    Assignee: Photogen, Inc.
    Inventors: Walter G. Fisher, Eric A. Wachter, H. Craig Dees
  • Patent number: 5745437
    Abstract: A high resolution ranging method is described utilizing a novel modulated waveform, hereafter referred to as coherent burst modulation. In the coherent burst method, high frequency modulation of an acoustic or electromagnetic transmitter, such as a laser, is performed at a modulation frequency. This modulation frequency is transmitted quasi-continuously in the form of interrupted bursts of radiation. Energy from the transmitter is directed onto a target, interacts with the target, and the returning energy is collected. The encoded burst pattern contained in the collected return signal is detected coherently by a receiver that is tuned so as to be principally sensitive to the modulation frequency. The receiver signal is processed to determine target range using both time-of-flight of the burst envelope and phase shift of the high frequency modulation.
    Type: Grant
    Filed: August 5, 1996
    Date of Patent: April 28, 1998
    Inventors: Eric A. Wachter, Walter G. Fisher
  • Patent number: 5719324
    Abstract: An improved microcantilever sensor is fabricated with at least one microcantilever attached to a piezoelectric transducer. The microcantilever is partially surface treated with a compound selective substance having substantially exclusive affinity for a targeted compound in a monitored atmosphere. The microcantilever sensor is also provided with a frequency detection means and a bending detection means. The frequency detection means is capable of detecting changes in the resonance frequency of the vibrated microcantilever in the monitored atmosphere. The bending detection means is capable of detecting changes in the bending of the vibrated microcantilever in the monitored atmosphere coactively with the frequency detection means. The piezoelectric transducer is excited by an oscillator means which provides a signal driving the transducer at a resonance frequency inducing a predetermined order of resonance on the partially treated microcantilever.
    Type: Grant
    Filed: June 16, 1995
    Date of Patent: February 17, 1998
    Assignee: Lockheed Martin Energy Systems, Inc.
    Inventors: Thomas G. Thundat, Eric A. Wachter
  • Patent number: 5483338
    Abstract: A method and apparatus for evaluating structural weaknesses in polymer matrix composites is described. An object to be studied is illuminated with laser radiation and fluorescence emanating therefrom is collected and filtered. The fluorescence is then imaged and the image is studied to determine fluorescence intensity over the surface of the object being studied and the wavelength of maximum fluorescent intensity. Such images provide a map of the structural integrity of the part being studied and weaknesses, particularly weaknesses created by exposure of the object to heat, are readily visible in the image.
    Type: Grant
    Filed: May 26, 1994
    Date of Patent: January 9, 1996
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: Eric A. Wachter, Walter G. Fisher
  • Patent number: 5445008
    Abstract: A mass microsensor is fabricated with a microcantilever oscillated by a piezoelectric transducer. A chemical coating having absorptive or adsorptive affinity for a specifically targeted chemical or compound is applied to the microcantilever for oscillation in the monitored atmosphere. Molecules of the targeted chemical attach to the microcantilever coating resulting in an oscillating mass increase which influences the resonant frequency of the microcantilever oscillation. The rate at which the coated microcantilever accumulates the target chemical is functional of the target chemical concentration. Consequently, the extent of microcantilever oscillation frequency change is related to the concentration of the target chemical within the monitored atmosphere.
    Type: Grant
    Filed: March 24, 1994
    Date of Patent: August 29, 1995
    Assignee: Martin Marietta Energy Systems, Inc.
    Inventors: Eric A. Wachter, Thomas G. Thundat