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Choi, VA

Christie Choi, Fairfax, VA US

Patent application numberDescriptionPublished
20110236852DENTAL PASTE HOLDER - A dental paste holder and kit are disclosed that include a bowl, stem, and base. The holder includes structure dimensioned to fit between fingers during use. A disposable version of the present invention includes an integral bowl, stem, and base, whereas a partially disposable version of the present invention includes an integral stem and base with a removable bowl. A linear sidewall on either the bowl or base prevents rolling of the holder when placed laterally on a substantially flat surface.09-29-2011

J. Richard Choi, Mclean, VA US

Patent application numberDescriptionPublished
20100014729MULTI-GRAYSCALE OVERLAY WINDOW - Embodiments of the present invention provides a method for separating diagnostic content of x-ray images from non-diagnostic content in order to achieve an optimum image reproduction and windowing. In particular, embodiments of the present invention provides a method for displaying a plurality of radiological density images in a single viewing window by overlaying gray scale images of each radiological density image in a single display window.01-21-2010

Sang H. Choi, Yorktown, VA US

Patent application numberDescriptionPublished
20100197508Integrated Universal Chemical Detector with Selective Diffraction Array - Integrated universal chemical detector in a micro-optical chip in which chemical/bio-sensitive micro/nano-pixels are aligned to create diffraction patterns that can be visually or instrumentally categorized in order to identify a substantial plurality of agents. By using a diffraction method to create a macroscopic diffraction image, a single small array can effectively detect hundreds or even thousands of different chemicals. The apparatus can be further automated by analyzing the diffraction patterns electronically.08-05-2010

Sang Hyouk Choi, Yorktown, VA US

Patent application numberDescriptionPublished
20120200696Lock-In Imaging System for Detecting Disturbances in Fluid - A lock-in imaging system is configured for detecting a disturbance in air. The system includes an airplane, an interferometer, and a telescopic imaging camera. The airplane includes a fuselage and a pair of wings. The airplane is configured for flight in air. The interferometer is operatively disposed on the airplane and configured for producing an interference pattern by splitting a beam of light into two beams along two paths and recombining the two beams at a junction point in a front flight path of the airplane during flight. The telescopic imaging camera is configured for capturing an image of the beams at the junction point. The telescopic imaging camera is configured for detecting the disturbance in air in an optical path, based on an index of refraction of the image, as detected at the junction point.08-09-2012

Sang Hyouk Choi, Poquoson, VA US

Patent application numberDescriptionPublished
20090103680Method Of Generating X-Ray Diffraction Data For Integral Detection Of Twin Defects In Super-Hetero-Epitaxial Materials - A method provides X-ray diffraction data suitable for integral detection of a twin defect in a strained or lattice-matched epitaxial material made from components having crystal structures having symmetry belonging to different space groups. The material is mounted in an X-ray diffraction (XRD) system. In one embodiment, the XRD system's goniometer angle Ω is set equal to (θ04-23-2009
20090206368Rhombohedral cubic semiconductor materials on trigonal substrate with single crystal properties and devices based on such materials - Growth conditions are developed, based on a temperature-dependent alignment model, to enable formation of cubic group IV, group II-V and group II-VI crystals in the [111] orientation on the basal (0001) plane of trigonal crystal substrates, controlled such that the volume percentage of primary twin crystal is reduced from about 40% to about 0.3%, compared to the majority single crystal. The control of stacking faults in this and other embodiments can yield single crystalline semiconductors based on these materials that are substantially without defects, or improved thermoelectric materials with twinned crystals for phonon scattering while maintaining electrical integrity. These methods can selectively yield a cubic-on-trigonal epitaxial semiconductor material in which the cubic layer is substantially either directly aligned, or 60 degrees-rotated from, the underlying trigonal material.08-20-2009
20090237093MICROWAVE RECTENNA BASED SENSOR ARRAY FOR MONITORING PLANARITY OF STRUCTURES - A microwave rectenna based sensor array is disclosed, which can remotely detect and monitor the planarity and curvature change of the surface of a structure, irrespective of the size or shape of the structure, by using a microwave signal.09-24-2009
20100027746X-ray diffraction wafer mapping method for rhombohedral super-hetero-epitaxy - A new X-ray diffraction (XRD) method is provided to acquire XY mapping of the distribution of single crystals, poly-crystals, and twin defects across an entire wafer of rhombohedral super-hetero-epitaxial semiconductor material. In one embodiment, the method is performed with a point or line X-ray source with an X-ray incidence angle approximating a normal angle close to 90°, and in which the beam mask is preferably replaced with a crossed slit. While the wafer moves in the X and Y direction, a narrowly defined X-ray source illuminates the sample and the diffracted X-ray beam is monitored by the detector at a predefined angle. Preferably, the untilted, asymmetric scans are of {440} peaks, for twin defect characterization.02-04-2010
20110022116Neural Electronic Interface Device For Motor And Sensory Controls of Human Body - Provided is a neural electronic interface (NEI) device for motor and sensory controls of a human body, into which wireless technology, a smart micro-sensor, and a nano probe pin device (PPD) are integrated and which is implanted into a brain of a patient having abnormal motor and sensory functions to monitor activities of a cerebral nerve or stimulate a cerebral nerve. The NEI device includes: a deep brain monitoring and stimulation (DBMS) module which is implanted through a skull to contact the cerebral nerve of the patient; and a hat module which is installed at a hat put on a head of the patient, wirelessly supplies power to the DBMS module, and performs a wireless communication with the DBMS module to transmit a control signal to control the DBMS module according to nervous system data monitored and fed back from the DBMS module.01-27-2011
20110046693Deep Brain Stimulation Device Having Wireless Power Feeding By Magnetic Induction - Provided is a deep brain stimulation (DBS) device having power wirelessly fed by a magnetic induction to form a rotating magnetic field using a rotating magnetic field disk installed inside a hat put on a patient and generate induced power using an induction coil plate fixed underneath a scalp of the patient to be combined with the rotating magnetic field, to drive electrodes implanted into a brain of the patient so as to correct abnormal motor and sensory functions of the patient using power wirelessly fed from an outside into a body of the patient. The DBS device includes: a hat module which is installed inside a hat put on a head of the o patient to generate a rotating magnetic field; and an implantation module which is implanted through a skull under a scalp to contact a nervous system of the patient and combined with the rotating magnetic field of the hat module to stimulate the cerebral nerve using induced power generated by the magnetic induction.02-24-2011
20110112602Deep Brain Stimulation Device Having Wireless Power Transmission Mechanism - Provided is a deep brain stimulation (DBS) device using a wireless power transmission mechanism to wirelessly receive microwaves from a power transmission antenna installed at a hat put on a patient, transform the microwaves into power, and drive electrodes implanted into a brain of the patient using the power so as to correct abnormal motor and sensory functions of the patient using power which is wirelessly transmitted from an outside into a body of the patient. The DBS device includes: a hat module which is installed at a hat put on a head of the patient to transmit microwaves; and an implantation module which is implanted through a skull under a scalp to contact the cerebral nerve of the patient, receives the microwaves from the hat module, transforms the microwaves into direct current (DC) power, and stimulates the cerebral nerve using the DC power.05-12-2011
20110117690Fabrication of Nanovoid-Imbedded Bismuth Telluride with low dimensional system - A new fabrication method for nanovoids-imbedded bismuth telluride (Bi—Te) material with low dimensional (quantum-dots, quantum-wires, or quantum-wells) structure was conceived during the development of advanced thermoelectric (TE) materials. Bismuth telluride is currently the best-known candidate material for solid-state TE cooling devices because it possesses the highest TE figure of merit at room temperature. The innovative process described here allows nanometer-scale voids to be incorporated in Bi—Te material. The final nanovoid structure such as void size, size distribution, void location, etc. can be also controlled under various process conditions.05-19-2011
20120147379Smart Optical Material Characterization System and Method - Disclosed is a system and method for characterizing optical materials, using steps and equipment for generating a coherent laser light, filtering the light to remove high order spatial components, collecting the filtered light and forming a parallel light beam, splitting the parallel beam into a first direction and a second direction wherein the parallel beam travelling in the second direction travels toward the material sample so that the parallel beam passes through the sample, applying various physical quantities to the sample, reflecting the beam travelling in the first direction to produce a first reflected beam, reflecting the beam that passes through the sample to produce a second reflected beam that travels back through the sample, combining the second reflected beam after it travels back though the sample with the first reflected beam, sensing the light beam produced by combining the first and second reflected beams, and processing the sensed beam to determine sample characteristics and properties.06-14-2012

Patent applications by Sang Hyouk Choi, Poquoson, VA US

Vicky Choi, Blacksburg, VA US

Patent application numberDescriptionPublished
20090299947SYSTEMS, METHODS AND APPARATUS FOR ADIABATIC QUANTUM COMPUTATION AND QUANTUM ANNEALING - Various adaptations to adiabatic quantum computation and quantum annealing are described. These adaptations generally involve tailoring an initial Hamiltonian so that a local minimum is avoided when a quantum processor is evolved from the initial Hamiltonian to a problem Hamiltonian. The initial Hamiltonian may represent a mixed Hamiltonian that includes both diagonal and off-diagonal terms, where the diagonal terms at least partially define a center point of a first computation space that is at least partially contained within a second computation space. A problem Hamiltonian may be evolved into a low energy state by inhomogeneously inducing disorder in the qubits of the quantum processor. A higher degree of disorder may be induced in a subset of qubits predicted to contribute to a local minimum of the problem Hamiltonian.12-03-2009

Young Eun Choi, Centreville, VA US

Patent application numberDescriptionPublished
20100007163Nested Seating Unit - A nested seating unit for use in a motor vehicle is provided. The nested seating unit comprises a first seat having a seating surface and a second seat having a seating surface. The nested seating unit is adjustable between a first position and a second position. In the first position, the first seat and the second seat have a first lateral distance between them, and in the second position, the first seat and the second seat have a second lateral distance between them. The first lateral distance is greater than the second lateral distance.01-14-2010