Patents by Inventor Tong Fang

Tong Fang 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: 8332061
    Abstract: A method for designing a prosthetic device includes acquiring a three-dimensional image of an anatomical surface. A rules script for automatically performing a plurality of image processing rules using a script interpreter is executed. For each particular rule of the plurality of rules, one or more anatomical features that are relevant to the particular rule using a surface shaping engine are determined, the one or more determined anatomical features are automatically segmented from the acquired three-dimensional image using a feature detector, and the particular image processing rule is performed on the acquired three-dimensional image based on the automatically segmented anatomical features using a CAD tool. A prosthetic device design is produced based on the three-dimensional image upon which the rules of the plurality of image processing rules have been performed.
    Type: Grant
    Filed: October 5, 2009
    Date of Patent: December 11, 2012
    Assignees: Siemens Audiologische Technik GmbH, Siemens Hearing Instruments, Inc.
    Inventors: Sajjad Baloch, Konrad Sickel, Vojtech Bubnik, Rupen Melkisetoglu, Hui Xie, Sergei Azernikov, Andreas Reh, Artem Boltyenkov, Fred McBagonluri, Tong Fang
  • Patent number: 8323523
    Abstract: A method of bevel edge processing a semiconductor in a bevel plasma processing chamber in which the semiconductor substrate is supported on a semiconductor substrate support is provided. The method comprises evacuating the bevel etcher to a pressure of 3 to 100 Torr and maintaining RF voltage under a threshold value; flowing a process gas into the bevel plasma processing chamber; energizing the process gas into a plasma at a periphery of the semiconductor substrate; and bevel processing the semiconductor substrate with the plasma.
    Type: Grant
    Filed: May 11, 2011
    Date of Patent: December 4, 2012
    Assignee: Lam Research Corporation
    Inventors: Tong Fang, Yunsang S. Kim, Andreas Fischer
  • Patent number: 8299125
    Abstract: The invention discloses water-soluble triterpenephenol compounds having antitumor activity represented by formula (I), wherein the substituents R1˜R4 and M are defined as in the description. The invention also discloses a method for preparing the compounds of formula (I) used quinone methide triterpene compounds as starting materials. The water-soluble triterpenephenol compounds disclosed in the invention can be made into various dosage forms including injection, tablet, capsule, granule and liniment, particularly suitable for making into injection.
    Type: Grant
    Filed: November 5, 2008
    Date of Patent: October 30, 2012
    Assignee: Shanghai Huatuo Medical Science Co., Ltd.
    Inventors: Jiafeng Zeng, Junfang Pan, Baoying Li, Qin Zhu, Tong Fang, Huiyan Ni
  • Patent number: 8290247
    Abstract: A method and system for segmenting tubular structures in 3D images is disclosed. User inputs identifying a first region on the image inside of a tubular structure and a second region of the image outside of the tubular structure are received. Based on this information, an ordered series of pearls are generated along the tubular structure. Pearls are spheres, each having a center location and a radius determined based on the center locations and radii of previous pearls and on local voxel intensities in the image. A continuous model of the tubular structure can be generated by interpolating the center locations and radii of the ordered series of pearls. The ordered series of pearls can be displayed and easily edited in response to user input, thus providing an efficient and flexible method for interactive segmentation of a potion of interest in a tubular structure.
    Type: Grant
    Filed: May 1, 2008
    Date of Patent: October 16, 2012
    Assignee: Siemens Aktiengesellschaft
    Inventors: Gregory G. Slabaugh, Gozde Unal, Tong Fang, Brian Whited, Jaroslaw Rossignac
  • Patent number: 8280125
    Abstract: A method and system for segmenting tubular or stroke-like structures in 2D images is disclosed. Examples of such structures include, but are not limited to, blood vessels, bones, roads, rivers, electrical wirings, and brush-strokes. User inputs identifying a first region on the image inside of a tubular structure and a second region of the image outside of the tubular structure are received. Based on this information, an ordered series of pearls are generated along the tubular structure. Pearls are 2D disks, each having a center location and a radius determined based on local pixel intensities in the image. A continuous model of the tubular structure is generated by interpolating the center locations and radii of the ordered series of pearls.
    Type: Grant
    Filed: February 1, 2008
    Date of Patent: October 2, 2012
    Assignee: Siemens Aktiengesellschaft
    Inventors: Gregory G. Slabaugh, Gozde Unal, Tong Fang, Brian Whited, Jarek Rossignac
  • Patent number: 8262923
    Abstract: A method of preventing arcing during bevel edge etching a semiconductor substrate with a plasma in a bevel etcher in which the semiconductor substrate is supported on a semiconductor substrate support comprises bevel edge etching the semiconductor substrate with the plasma in the bevel etcher while evacuating the bevel etcher to a pressure of 3 to 100 Torr while maintaining RF voltage seen at the wafer at a low enough value to avoid arcing.
    Type: Grant
    Filed: December 11, 2009
    Date of Patent: September 11, 2012
    Assignee: Lam Research Corporation
    Inventors: Tong Fang, Yunsang S. Kim, Andreas Fischer
  • Patent number: 8244020
    Abstract: A method and system for intelligent digital subtraction is disclosed. The method and system for intelligent digital subtraction can be used in a roadmap application for a coronary intervention. A mask image is obtained with vessels highlighted by contrast media. A guide wire is inserted into the vessels, and a guide wire image is obtained. A direct subtraction image is generated from the guide wire image and the mask image. A reduced noise subtraction image is generated based on mutual image information between the subtraction image and the guide wire image and mutual image information between the subtraction image and the mask image.
    Type: Grant
    Filed: October 3, 2008
    Date of Patent: August 14, 2012
    Assignee: Siemens Aktiengesellschaft
    Inventors: Yunqiang Chen, Tong Fang, Sandra Martin, Stefan Boehm, Peter Durlak
  • Patent number: 8229180
    Abstract: A method for detecting anatomical features in 3D ear impressions includes receiving a 3D digital image of a 3D ear impression, obtaining a surface of the ear impression from the 3D image, analyzing the surface with one or more feature detectors, the detectors adapted to detecting generic features, including peak features, concavity features, elbow features, ridge features, and bump features, and derived features that depend on generic features or other derived features, and forming a canonical ear signature from results of the detectors, where the canonical ear signature characterizes the 3D ear impression.
    Type: Grant
    Filed: October 22, 2009
    Date of Patent: July 24, 2012
    Assignee: Siemens Audiologische Technik GmbH
    Inventors: Sajjad Hussain Baloch, Rupen Melkisetoglu, Sergei Azernikov, Alexander Zouhar, Tong Fang
  • Patent number: 8224094
    Abstract: A method and system for side detection of an undetailed 3D ear impression is disclosed. In order to determine whether a received 3D undetailed ear impression is a left or right ear impression, a local coordinate system of the 3D undetailed ear is defined based on side independent features of the 3D undetailed ear impression. A skeleton (or center spline) of the 3D undetailed ear impression is detected, and it is determined whether the 3D undetailed ear impression is a left or right ear impression based on the skeleton and the local coordinate system.
    Type: Grant
    Filed: May 28, 2008
    Date of Patent: July 17, 2012
    Assignees: Siemens Audiologische Technik GmbH, Siemens Corporation
    Inventors: Rupen Melkisetoglu, Tong Fang, Fred McBagonluri, Gregory G. Slabaugh
  • Patent number: 8218910
    Abstract: A method of computing a continuous interpolation of a discrete set of three-dimensional (3D) balls, including generating an initial skin, wherein the initial skin is a surface comprised of splines and wherein the splines touch each ball along a circle that is tangent to the ball, solving a first differential equation to minimize the initial skin's surface area or solving a second differential equation to minimize a squared mean curvature of the initial skin's surface, wherein the result of solving the first or second differential equations is an updated skin; and repeating the steps of solving the first or second differential equations for the updated skin, and then, repeating the steps of solving the first or second differential equations for each subsequently updated skin until a desired skin is realized.
    Type: Grant
    Filed: March 30, 2009
    Date of Patent: July 10, 2012
    Assignee: Siemens Aktiengesellschaft
    Inventors: Gregory G. Slabaugh, Jaroslaw Rossignac, Brian Whited, Tong Fang, Gozde Unal
  • Patent number: 8190280
    Abstract: A method and appertaining system implement the use of manufacturing protocols for hearing aid design such that the ability to build an instrument can be displayed as a numeric parameter based on the partial numerical and metrological contributions of all the essential parameters of the given impression, and a buildability index can be displayed as a 3D virtual image of the proposed shell or preferred shell types. The method utilizes a predefined parameter table comprising parameters to utilize for a buildability determination. The buildability index is computed based on impression shape data, selected shell type, selected number of device options, data obtained from the parameter table, and data obtained from a receiver table, and the buildability index is output to a display of a user interface device or an external system.
    Type: Grant
    Filed: March 28, 2006
    Date of Patent: May 29, 2012
    Assignee: Siemens Corporation
    Inventors: Jörg Bindner, Tong Fang, Eduard Kaiser, Raimund Martin, Fred McBagonluri, Peter Nikles, Therese Velde
  • Patent number: 8155405
    Abstract: A method for lesion segmentation in 3-dimensional (3D) digital images, includes selecting a 2D region of interest (ROI) from a 3D image, the ROI containing a suspected lesion, extending borders of the ROI to 3D forming a volume of interest (VOI), where voxels on the borders of the VOI are initialized as background voxels and voxels in an interior of the VOI are initialized as foreground voxels, propagating a foreground and background voxel competition where for each voxel in the VOI, having each neighbor voxel in a neighborhood of the voxel attack the voxel, and, if the attack is successful, updating a label and strength of the voxel with that of the successful attacking voxel, and evolving a surface between the foreground and background voxels in 3D until an energy functional associated with the surface converges in value, where the surface segments the suspected lesion from the image.
    Type: Grant
    Filed: March 10, 2008
    Date of Patent: April 10, 2012
    Assignee: Siemens Aktiengsellschaft
    Inventors: Gozde Unal, Gregory G. Slabaugh, Tong Fang, Shawn Lankton, Valer Canda, Stefan Thesen, Shuping Qing
  • Publication number: 20120074099
    Abstract: Methods for bevel edge etching are provided. One example method is for etching a film on a bevel edge of a substrate in a plasma etching chamber. The method includes providing the substrate on a substrate support in the plasma etching chamber. The plasma etching chamber has a top edge electrode and a bottom edge electrode disposed to surround the substrate support. Then flowing an etching process gas through a plurality of edge gas feeds disposed along a periphery of the gas delivery plate. The periphery of the gas deliver plate is oriented above the substrate support and the bevel edge of the substrate, and the flowing is further directed to a space between the top edge electrode and bottom edge electrode. And, flowing a tuning gas through a center gas feed of the gas delivery plate.
    Type: Application
    Filed: November 18, 2011
    Publication date: March 29, 2012
    Applicant: Lam Research Corporation
    Inventors: Tong Fang, Yunsang Kim, Andrew D. Bailey, III, Olivier Rigoutat, George Stojakovic
  • Patent number: 8139891
    Abstract: A method and system for structure enhancement and noise reduction of medical images using adaptive filtering is disclosed. The method utilizes feature estimation methods to determine multiple feature values for each pixel in an input image. Each pixel is then filtered using a filter type selected based on the feature values for that pixel.
    Type: Grant
    Filed: October 29, 2007
    Date of Patent: March 20, 2012
    Assignee: Siemens Aktiengesellschaft
    Inventors: Ti-chiun Chang, Yunqiang Chen, Tong Fang, Jason Jenn-Kwei Tyan, Gregory G. Slabaugh
  • Patent number: 8135153
    Abstract: A method and appertaining system provide for automatically adding a wax guard to a hearing aid shell impression. The location of a canal, tip of the canal, and central line of the impression are automatically identified in a digital 3D representation of a hearing aid shell impression. A first wax guard plane is determined at a predefined flip distance from the canal tip along the central line, and a second wax guard plane is determined at a predefined canal tip offset distance from the canal tip along the central line. A size and position for a feature of the wax guard is calculated based on predefined parameters, and the wax guard is constructed utilizing the calculated side and position. The type of wax guard can be a bell bore design, an open design, a Philip design, or a flip design.
    Type: Grant
    Filed: April 10, 2007
    Date of Patent: March 13, 2012
    Assignees: Siemens Hearing Instruments, Inc., Siemens Corporation
    Inventors: Artem Boltyenkov, Tong Fang, Fred McBagonluri, Andreas Reh
  • Patent number: 8094904
    Abstract: A method and system for suppressing bone structures based on a single x-ray image is disclosed. The bone structure suppressing method predicts a soft-tissue image without bone structures from an input x-ray image. A set of features is extracted for each pixel of the input x-ray image. A soft-tissue image is then generated from the input x-ray image using a trained regression function to determine an intensity value for the soft-tissue image corresponding to each pixel of the input x-ray image based on the set of features extracted for each pixel of the input x-ray image. The extracted features can be wavelet features and the regression function can be trained using Bayesian Committee Machine (BCM) to approximate Gaussian process regression (GPR).
    Type: Grant
    Filed: September 12, 2008
    Date of Patent: January 10, 2012
    Assignee: Siemens Aktiengesellschaft
    Inventors: Gregory G. Slabaugh, Tong Fang, Kooksang Moon, Yunqiang Chen
  • Patent number: 8086427
    Abstract: A method of designing hearing aid molds is disclosed whereby two shapes corresponding to graphical images of ear impressions are registered with each other to facilitate joint processing of the hearing aid design. In a first embodiment, a first graphical representation of a first ear impression is received and a feature, such as the aperture of the ear impression, is identified on that graphical model. A first vector is generated that represents the orientation and shape of that first feature. The three-dimensional translation and rotation of that first vector are determined that are necessary to align the first vector with a second vector representing the orientation and a shape of a feature, once again such as the aperture, of a second ear impression. In another embodiment, this alignment is then refined by minimizing the sum of the distances between points on the first and second graphical representations.
    Type: Grant
    Filed: August 7, 2006
    Date of Patent: December 27, 2011
    Assignee: Siemens Corporation
    Inventors: Tong Fang, Gozde Unal, Fred McBagonluri, Alexander Zouhar, Hui Xie, Gregory G. Slabaugh, Jason Jenn-Kwei Tyan
  • Patent number: 8083890
    Abstract: The various embodiments provide apparatus and methods of removal of unwanted deposits near the bevel edge of substrates to improve process yield. The embodiments provide apparatus and methods with center and edge gas feeds as additional process knobs for selecting a most suitable bevel edge etching processes to push the edge exclusion zone further outward towards the edge of substrates. Further the embodiments provide apparatus and methods with tuning gas(es) to change the etching profile at the bevel edge and using a combination of center and edge gas feeds to flow process and tuning gases into the chamber. Both the usage of tuning gas and location of gas feed(s) affect the etching characteristics at bevel edge. Total gas flow, gap distance between the gas delivery plate and substrate surface, pressure, and types of process gas(es) are also found to affect bevel edge etching profiles.
    Type: Grant
    Filed: January 28, 2008
    Date of Patent: December 27, 2011
    Assignee: Lam Research Corporation
    Inventors: Tong Fang, Yunsang Kim, Andrew D. Bailey, III, Olivier Rigoutat, George Stojakovic
  • Patent number: 8086007
    Abstract: A method and system for image quality assessment is disclosed. The image quality assessment method is a no-reference method for objectively assessing the quality of medical images. This method is guided by the human vision model in order to accurately reflect human perception. A region of interest (ROI) of medical image is divided into non-overlapping blocks of equal size. Each of the blocks is categorized as a smooth block, a texture block, or an edge block. A perceptual sharpness measure, which is weighted by local contrast, is calculated for each of the edge blocks. A perceptual noise level measure, which is weighted by background luminance, is calculated for each of the smooth blocks. A sharpness quality index is determined based on the perceptual sharpness measures of all of the edge blocks, and a noise level quality index is determined based on the perceptual noise level measures of all of the smooth blocks.
    Type: Grant
    Filed: October 3, 2008
    Date of Patent: December 27, 2011
    Assignee: Siemens Aktiengesellschaft
    Inventors: Michelle Xiao-Hong Yan, Ti-chiun Chang, Markus Lendl, Stefan Boehm, Tong Fang, Peter Durlak
  • Patent number: 8073191
    Abstract: A method and system for correcting butting artifacts in x-ray images is disclosed. In order to correct a butting artifact in an x-ray image, a butting artifact region in the x-ray image is normalized. Multiple intensity shift estimators are calculated for each pixel of each line of the butting artifact. Confidence intervals are calculated for each intensity shift estimator. A multiple hypothesis hidden Markov model (MH-HMM) is formulated based on the intensity shift operators and confidence measures subject to a smoothness constraint, and the MH-HMM is solved to determine intensity shift values for each pixel. A corrected image is generated by adjusting the intensity of each pixel of the butting artifact based on the intensity shift value for that pixel.
    Type: Grant
    Filed: September 11, 2008
    Date of Patent: December 6, 2011
    Assignee: Siemens Aktiengesellschaft
    Inventors: Ti-chiun Chang, Yunqiang Chen, Tong Fang, Sandra Martin, Stefan Böhm, Peter Durlak