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Active Patents Available for Licensing
through the Center for Advanced
Technology
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& development programs, receive technology assistance,
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please
at the technology transfer group.
To view the complete patent, click on the patent # to visit
the US. Patent Office website for this patent.
| Patent # |
Patent Title |
| 4,853,595 |
Photomultiplier Tube Having a Transmission
Strip Line Photocathode and System for Use Therewith |
| 4,930,516 |
Method for Detecting Cancerous Tissue
Using Visible Native Luminescence |
| 4,932,031 |
Chromium-Doped Forsterite Laser System |
| 4,987,575 |
Tetravalent Chromium (Cr4+) as a Laser-Active
Ion for Tunable Solid-State Lasers |
| 5,042,494 |
Method and Apparatus for Detecting Cancerous
Tissue Using Luminescence Excitation Spectra |
| 5,126,874 |
Method and Apparatus for Creating Transient
Optical Elements and Circuits |
| 5,150,248 |
Terahertz Repetition Rate Optical Computing
Systems and Communications Systems and Logic Elements
Using Cross-Phase Modulation Based Optical Processors |
| 5,261,410 |
Method for Determining if a Tissue is
a Malignant Tumor Tissue, a Benign Tumor Tissue, or
a Normal or Benign Tissue Using Raman Spectroscopy |
| 5,278,403 |
Femtosecond Streak Camera |
| 5,293,872 |
Method for Distinguishing between Calcified
Atherosclerotic Tissue and Fibrous Atherosclerotic Tissue
or Normal Cardiovascular Tissue Using Raman Spectroscopy |
| 5,348,018 |
Method for Determining if Tissue is Malignant
as Opposed to Non-Malignant Using Time-Resolved Fluorescence
Spectroscopy |
| 5,413,108 |
Method and Apparatus for Mapping a Tissue
Sample and for Distinguishing Different Regions Thereof
Based on Luminescence Measurements of Cancer-Indicative
Native Fluorophors |
| 5,463,485 |
Terahertz Repetition Rate Optical Computing
Systems, and Communications Systems and Logic Elements
Using Cross-Phase Modulation Based Optical Processors |
| 5,467,767 |
Method for Determining if a Tissue is
Malignant as Opposed to Non-Malignant Using Time-Resolved
Fluorescence Spectroscopy |
| 5,474,910 |
Method and Device for Detecting Biological
Molecules and/or Microorganisms Within a Desired Area
or Space |
| 5,625,458 |
Imaging of Objects in Turbid Media Using
Diffusive Fermat Photons |
| 5,635,402 |
Technique for Determining Whether a Cell
is Malignant as Opposed to Non-Malignant Using Extrinsic
Fluorescence Spectroscopy |
| 5,636,050 |
Apparatus Using Optical Deflection |
| 5,644,429 |
2-Dimensional Imaging of Translucent
Objects in Turbid Media |
| 5,656,810 |
Method and Apparatus for Evaluating the
Composition of an Oil Sample |
| 5,710,429 |
Ultrafast Optical Imaging of Objects
in or Behind Scattering Media |
| 5,717,517 |
Method for Amplifying Laser Signals and
an Amplifier for Use in Said Method |
| 5,719,399 |
Imaging and Characterization of Tissue
Based Upon the Preservation of Polarized Light Transmitted
Therethrough |
| 5,769,081 |
Method for Detecting Cancerous Tissue
Using Optical Spectroscopy and Fourier Analysis |
| 5,799,656 |
Optical Imaging of Breast Tissues to
Enable the Detection Therein of Calcification Regions
Suggestive of Cancer |
| 5,847,394 |
Imaging of Objects Based Upon the Polarization
or Depolarization of Light |
| 5,849,595 |
Method for Monitoring the Effects of
Chemotherapeutic Agents on Neoplastic Media |
| 5,931,789 |
Time-Resolved Diffusion Tomographic 2D
and 3D Imaging in Highly Scattering Turbid Media |
| 5,943,133 |
System and Method for Performing Selected
Optical Measurements on a Sample Using a Diffraction
Grating |
| 5,983,125 |
Method and Apparatus for In Vivo Examination
of Subcutaneous Tissues Inside an Organ of a Body Using
Optical Spectroscopy |
| 6,006,001 |
Fiberoptic assembly useful in optical
spectroscopy |
| 6,045,465 |
Baseball training bat with colored transferable
bands |
| 6,069,354 |
Photonic paper product dispenser. |
| 6,080,584 |
Method and apparatus for detecting the
presence of cancerous and precancerous cells in a smear
using native fluorescence spectroscopy |
| 6,091,983 |
Imaging of objects in turbid media based
upon the preservation of polarized luminescence emitted
from contrast agents |
| 6,091,985 |
Detection of cancer and precancerous
conditions in tissues and/or cells using native fluorescence
excitation spectroscopy |
| 6,108,576 |
Time-Resolved Diffusion Tomographic 2D
and 3D Imaging in Highly Scattering Turbid Media |
| 6,151,522 |
Method and system for examining biological
materials usind low power CW excitation Raman spectroscopy |
| 6,205,353 |
Time-Resolved Optical Backscattering
Tomographic Image Reconstruction in Scattering Turbid
Media |
| 6,208,886 |
Non-Linear Optical Tomography of Turbid
Media |
| 6,215,587 |
Microscope Imagine Inside Highly Scattering
Media |
| 6,240,312 |
Remote-Controllable, Micro-Scale Device
for Use in In Vivo Medical Diagnosis and/or Treatment |
| 6,280,386 |
Apparatus for Enhancing the Visibility
of a Luminous Object Inside Tissue and Method for Same |
| 6,346,101 |
Photon-Mediated Introduction of Biological
Materials into Cells and/or Cellular Components |
| 6,437,867 |
Performing Selected Optical Measurements
with Optical Coherence Domain Reflectometry |
| 6,495,833 |
Sub-Surface Imaging Under Paints and
Coatings using Early Light Spectroscopy |
| 6,560,478 |
Method and System for Examining Biological
Materials Using Low Power CW Excitation Raman Spectroscopy |
| 6,587,711 |
Spectral Polarizing Tomographic Dermatoscope |
| 6,615,068 |
Technique for Examining Biological Materials
Using Diffuse Reflectance Spectroscopy and the Kubelka-Munk
Function |
| 6,631,289
|
System and method of fluorescence spectroscopic
imaging for characterization and monitoring of tissue
damage |
| 6,665.556
|
Method and apparatus for examining a
tissue using the spectral wing emission therefrom induced
by visible to infrared photoexcitation |
| 6,665,557
|
Spectroscopic and time-resolved optical
methods and apparatus for imaging objects in turbid
media |
| 6,762,839 |
System and method for performing selected
optical measurements utilizing a position changeable
aperture
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