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Daniel Groszmann Phones & Addresses

  • Belmont, MA
  • 17 Decatur St, Cambridge, MA 02139
  • 31 Magnolia Ave, Cambridge, MA 02138 (617) 497-0379
  • Somerville, MA
  • Woodbridge, CT
  • San Diego, CA

Work

Company: Ge healthcare Apr 2002 Position: Advanced technology manager

Education

Degree: PhD School / High School: Tufts University Jun 1997 to Mar 2001 Specialities: Mechanical Engineering

Skills

Medical Devices • Medical Imaging • R&D • Design Control • Cross Functional Team Leadership • Fda • Design of Experiments • Iso 13485 • Biomedical Engineering • Product Development • Digital Imaging • Six Sigma • Management • Product Launch • Clinical Research • Product Management • Commercialization • Leadership • Validation • Quality System • Capital Equipment • X Ray • Testing • Product Design • Process Engineering • Radiology • Quality Assurance • Manufacturing • Dmaic • Dicom • Hardware Diagnostics • Mri • Fmea • Injection Molding • Systems Engineering • Capa • Process Simulation • Design For Manufacturing • Engineering Management • Pacs • Product Lifecycle Management • Image Processing • Lean Manufacturing • Market Development • Electronics

Languages

English • Spanish

Industries

Medical Devices

Resumes

Resumes

Daniel Groszmann Photo 1

Senior Manager

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Location:
Cambridge, MA
Industry:
Medical Devices
Work:
GE Healthcare since Apr 2002
Advanced Technology Manager

Visualization Technology, Inc. Mar 2001 - Apr 2002
Research Scientist

BlazeTech 1993 - 1997
Project Engineer
Education:
Tufts University Jun 1997 - Mar 2001
PhD, Mechanical Engineering
Virginia Tech Aug 1991 - Sep 1992
MS, Aerospace Engineering
Tufts University Sep 1987 - May 1991
BS, Mechanical Engineering
Skills:
Medical Devices
Medical Imaging
R&D
Design Control
Cross Functional Team Leadership
Fda
Design of Experiments
Iso 13485
Biomedical Engineering
Product Development
Digital Imaging
Six Sigma
Management
Product Launch
Clinical Research
Product Management
Commercialization
Leadership
Validation
Quality System
Capital Equipment
X Ray
Testing
Product Design
Process Engineering
Radiology
Quality Assurance
Manufacturing
Dmaic
Dicom
Hardware Diagnostics
Mri
Fmea
Injection Molding
Systems Engineering
Capa
Process Simulation
Design For Manufacturing
Engineering Management
Pacs
Product Lifecycle Management
Image Processing
Lean Manufacturing
Market Development
Electronics
Languages:
English
Spanish

Publications

Us Patents

Universal Instrument Calibration Station

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US Patent:
D580286, Nov 11, 2008
Filed:
Feb 29, 2008
Appl. No.:
29/304436
Inventors:
Daniel Eduardo Groszmann - Cambridge MA, US
Jonathan Schiff - Andover MA, US
Ella Zaslavsky - Marblehead MA, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
1004
US Classification:
D10 78

System And Method Of Navigating A Medical Instrument

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US Patent:
7671887, Mar 2, 2010
Filed:
Nov 20, 2006
Appl. No.:
11/561727
Inventors:
Jeremie Pescatore - Yvelines, FR
Yves Trousset - Palaiseau, FR
Michel F. Grimaud - Montrouge, FR
Daniel E. Groszmann - Cambridge MA, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
H04N 5/14
US Classification:
348 25, 348113, 348116, 348 77, 348141, 348142, 348169, 382103, 600424, 600427
Abstract:
A system for navigating an image-guided object through an imaged subject supported on table in relation to an image acquired by an image detector is provided. The system includes a first tracking element attached to the patient, and a second tracking element attached at the table. The first and second tracking elements define first and second coordinate systems. A controller is operable to register the second coordinate system with a third coordinate system defined by the image detector, measure a spatial relation between the first tracking element and the second tracking element, register the first coordinate system with the third local coordinate system defined by the image detector based on the spatial relation between the first and second tracking elements, and generating a composite image comprising a virtual image of the object in spatial relation to the image of the imaged subject acquired by the image detector.

Method And System For Restoration Of A Navigation Data Loss In Image-Guided Navigation

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US Patent:
7933730, Apr 26, 2011
Filed:
Dec 21, 2006
Appl. No.:
11/614699
Inventors:
Dun Alex Li - Salem NH, US
Daniel Eduardo Groszmann - Cambridge MA, US
Assignee:
General Electric Co. - Schenectady NY
International Classification:
G06F 19/00
US Classification:
702 94, 702 95, 702104, 702134, 702152, 702153, 32420716, 32420718, 32420719, 32420726, 342463, 600407, 600424, 600427, 600429
Abstract:
A method for restoring navigation failure information in a fluoroscopy-based imaging system is disclosed. The method includes obtaining a plurality of receiver navigation information using a calibration target rigidly attached to a supporting member of the imaging system. The calibration target may include a plurality of receivers providing navigation information and the supporting member may be a C-arm. The method identifies a navigation failure and corresponding to the navigation failure a calibrated receiver navigation information is generated. The calibrated receiver navigation information is generated using a calibration information and a C-arm imaging position obtained during navigation failure. A receiver navigation information corresponding to the navigation failure is estimated using the calibrated receiver navigation information, and a transmitter navigation information. Also disclosed is a restoration unit for restoring navigation failure information in a fluoroscopy-based imaging system and a fluoroscopic imaging system using the restoration unit.

Method And Apparatus For Metal Artifact Reduction In 3D X-Ray Image Reconstruction Using Artifact Spatial Information

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US Patent:
7369695, May 6, 2008
Filed:
Aug 20, 2004
Appl. No.:
10/922765
Inventors:
Hubert A. Zettel - Waukesha WI, US
Daniel E. Groszmann - Cambridge MA, US
Tina Kapur - Bellevue WA, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
G06K 9/00
US Classification:
382132, 382154, 378 4
Abstract:
The present invention relates to a method and apparatus for reducing metal artifact in image reconstruction. In at least one embodiment, the method for reducing metal artifacts in image reconstruction comprises collecting at least one uncalibrated image (an X-ray or fluoroscopic image for example) and calibrating the at least one uncalibrated image, forming at least one calibrated fluoroscopic image. A patient to transmitter transform is computed using at least the at least one calibrated image. A reconstructed volume is formed using at least a patient to transmitter transform. At least two of the at least one calibrated fluoroscopic image, the patient to transmitter transform and the reconstructed volume may be combined, forming at least one display image. This image may then be displayed, using a display device for example.

System And Method For Configuring A Medical Device

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US Patent:
7997474, Aug 16, 2011
Filed:
Jun 21, 2007
Appl. No.:
11/766416
Inventors:
Joel Zuhars - Haverhill MA, US
Daniel Groszmann - Cambridge MA, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
G06F 17/00
US Classification:
235375
Abstract:
In one embodiment a medical device comprising an interface, a portable component and a controller is provided. The interface is configured for receiving identification data of a user, the portable component is configured for storing configuration data and the controller is configured for retrieving the configuration data based on the identification data and for configuring the medical device based on the configuration data.

Dynamic Reference Method And System For Use With Surgical Procedures

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US Patent:
8024026, Sep 20, 2011
Filed:
May 31, 2007
Appl. No.:
11/809093
Inventors:
Daniel Eduardo Groszmann - Cambridge MA, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
A61B 5/05
US Classification:
600424, 600410, 600414, 600425, 600426, 600427
Abstract:
A substrate configured for placement on an internal organ or tissue is provided. In certain embodiments, the substrate conforms to and moves with the internal organ or tissue. Three or more sensor elements are integrated on the substrate. In one implementation, the substrate and associated sensor elements provide dynamic referencing of the internal organ or tissue after registration of the sensor data with images and/or volumetric representations of the internal organ or tissue.

Systems And Methods For Calibrating An Endoscope

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US Patent:
8052598, Nov 8, 2011
Filed:
Oct 12, 2006
Appl. No.:
11/546799
Inventors:
Daniel E. Groszmann - Cambridge MA, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
A61B 1/04
US Classification:
600168, 600167, 600118
Abstract:
A method and apparatus for calibrating an endoscope includes an endoscope system configured to acquire a first calibration image at a first calibration focal length and determine a radius of a first calibration image boundary corresponding to the first calibration focal length for the first calibration image, wherein the radius of the first calibration image boundary corresponds to a first calibration magnification of the endoscope. A clinical image is acquired at a clinical focal length, wherein the first calibration focal length is different than the clinical focal length and a radius of a clinical image boundary corresponding to the clinical focal length for the clinical image is determined, wherein the radius of the clinical image boundary corresponds to a clinical magnification of the endoscope. The radius of the first calibration image boundary is compared to the radius of the clinical image boundary to determine a change in magnification of the endoscope.

Universal Instrument Calibration System And Method Of Use

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US Patent:
8067726, Nov 29, 2011
Filed:
Feb 26, 2007
Appl. No.:
11/678985
Inventors:
Daniel Eduardo Groszmann - Cambridge MA, US
Jonathan Schiff - Andover MA, US
Ella Zaslavsky - Marblehead MA, US
Assignee:
General Electric Company - Schenectady NY
International Classification:
G01D 18/00
US Classification:
2502521
Abstract:
Certain embodiments of the present invention provide systems and methods for electromagnetic calibration of an instrument. Certain embodiments provide an electromagnetic instrument calibration system including electromagnetic receiver electronics for receiving electromagnetic field information from an electromagnetic transmitter. The system also includes a calibration mount configured to position the electromagnetic receiver electronics stationary with respect to the calibration mount for calibrating an instrument having an electromagnetic transmitter using the calibration mount and the electromagnetic receiver electronics. Certain embodiments provide a method for calibration of an instrument based on electromagnetic field information including providing a calibration mount accommodating a plurality of instruments in a known position and orientation and having electromagnetic calibration electronics positioned with respect to the calibration mount; receiving electromagnetic field information for an instrument with respect to a known position of the calibration mount and electromagnetic calibration electronics; and calibrating at least a portion of the instrument.
Daniel E Groszmann from Belmont, MA, age ~55 Get Report