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Jane Bareau Phones & Addresses

  • 217 Brookside Rd, Needham, MA 02492 (781) 444-8742
  • 273 Manning St, Needham, MA 02492 (781) 444-8742
  • Somerville, MA
  • Norwood, MA
  • 273 Manning St, Needham, MA 02492

Work

Company: Acmi May 2008 Position: Director, research development

Education

Degree: Bachelor of Applied Science, Bachelors School / High School: The University of British Columbia Specialities: Engineering, Physics

Skills

Medical Devices • R&D • Optics • Product Development • Design Control • Optical Engineering • Manufacturing • Iso 13485 • Quality System • Testing • Design of Experiments • Digital Imaging • Research and Development • Engineering • Fda • Management • Zemax • Cross Functional Team Leadership

Industries

Medical Devices

Resumes

Resumes

Jane Bareau Photo 1

Director, Research Development

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Location:
Needham, MA
Industry:
Medical Devices
Work:
Acmi
Director, Research Development

Boston Scientific Aug 2006 - Mar 2008
Principal Optical Engineer

Flextronics Oct 2003 - Aug 2006
Senior Staff, Optical Engineer

Zygo Corporation Oct 2001 - Sep 2002
Senior Member of Technical Staff

Optical Product Development Feb 2000 - Aug 2001
Principal Optical Designer
Education:
The University of British Columbia
Bachelor of Applied Science, Bachelors, Engineering, Physics
University of Rochester
Skills:
Medical Devices
R&D
Optics
Product Development
Design Control
Optical Engineering
Manufacturing
Iso 13485
Quality System
Testing
Design of Experiments
Digital Imaging
Research and Development
Engineering
Fda
Management
Zemax
Cross Functional Team Leadership

Publications

Us Patents

Three-Element Photographic Objective With Reduced Tolerance Sensitivities

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US Patent:
7477461, Jan 13, 2009
Filed:
Dec 22, 2006
Appl. No.:
11/644459
Inventors:
Jane Bareau - Needham MA, US
Peter P. Clark - Boxborough MA, US
Assignee:
Flextronics AP, LLC - Broomfield CO
International Classification:
G02B 9/14
G02B 9/12
G02B 3/02
US Classification:
359785, 359716, 359784
Abstract:
The present invention is a compact lens system for use as a wide-field photographic objective with small format digital image sensors having a pixel dimension less than 0. 010 mm. The f-number of the lens system is 2. 9740, and the effective focal length of the system is 3. 85 mm. The full angular field of view of the lens system is 61 degrees, and the chief ray incidence angles on the image plane are less than 18 degrees. The system comprises three plastic lenses, each having two aspheric surfaces. At least one of the aspheric surfaces in the system is coated with a multilayer infrared cut-off filter for blocking infrared wavelengths from the image sensors. The lens system has a reduced sensitivity to manufacturing tolerances, particularly lateral misalignment of optical elements and surfaces.

Solid Imaging Objective And Assembly Technique For Small Scale Sensor Applications

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US Patent:
8218254, Jul 10, 2012
Filed:
Aug 23, 2010
Appl. No.:
12/861419
Inventors:
Jane L. Bareau - Needham MA, US
James D. Milks - Stamford CT, US
Nidia A. Alvez - Wolcott CT, US
Teresa M. Lupien - Stamford CT, US
Assignee:
Gyrus ACMI, Inc. - Southborough MA
International Classification:
G02B 9/04
G02B 21/02
G02B 9/00
US Classification:
359793, 359661, 359796
Abstract:
An imaging optic comprising a first combination element comprised of at least two individual lens elements, aligned with each other along an optical axis and adhered to each other, a second combination element comprised of at least one individual lens element and an aperture disposed between the first and second combination elements, the surfaces of the imaging optic having less than about 3 minutes tilt relative to the optical axis and less than about 0. 005 mm de-center relative to the optical axis. A method of making the imaging optic and an endoscope comprising the imaging optic.

Volumetric Three-Dimensional Display System

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US Patent:
20020067467, Jun 6, 2002
Filed:
Sep 6, 2001
Appl. No.:
09/948060
Inventors:
Rick Dorval - Goffstown NH, US
Michael Thomas - Belmont MA, US
Jane Bareau - Needham MA, US
International Classification:
G03B021/00
US Classification:
353/010000
Abstract:
The invention features a volumetric display system including an optical relay, a motor, a support structure coupled to the motor, a projection screen disposed on the support structure, and a projection optic. During operation, the projection optic receives a light beam from the optical relay and projects the light beam onto the projection screen. Also, the motor rotates the support structure, the projection screen, and the projection optic about a rotation axis.

Solid Imaging Objective And Assembly Technique For Small Scale Sensor Applications

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US Patent:
20120247650, Oct 4, 2012
Filed:
Jun 4, 2012
Appl. No.:
13/487835
Inventors:
Jane L. Bareau - Needham MA, US
James D. Milks - Stamford CT, US
Nidia A. Alvez - Wolcott CT, US
Teresa M. Lupien - Stamford CT, US
Assignee:
GYRUS ACMI, INC. - Southborough MA
International Classification:
B32B 37/12
B32B 38/10
US Classification:
156153, 156 60, 1563066, 156182, 156325, 156330
Abstract:
An imaging optic comprising a first combination element comprised of at least two individual lens elements, aligned with each other along an optical axis and adhered to each other, a second combination element comprised of at least one individual lens element and an aperture disposed between the first and second combination elements, the surfaces of the imaging optic having less than about 3 minutes tilt relative to the optical axis and less than about 0.005 mm de-center relative to the optical axis. A method of making the imaging optic and an endoscope comprising the imaging optic.

Systems And Methods For Determining Target Characteristics During A Laser Procedure

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US Patent:
20230115488, Apr 13, 2023
Filed:
Oct 7, 2022
Appl. No.:
17/938826
Inventors:
- Westborough MA, US
Jane Bareau - Needham MA, US
International Classification:
A61B 1/00
A61B 18/24
A61B 1/04
A61B 1/06
Abstract:
Disclosed are systems and methods for determining target characteristics during a laser procedure, comprising (i) obtaining a relationship between (i) a number of pixels associated with a light beam reflected from a target or an object located in proximity to the target on an endoscopic image obtained from a video sensor coupled to an endoscope and (ii) a distance of the target from a tip of the endoscope. The method further comprising (ii) measuring the number of pixels associated with the light beam reflected from the target or the object located in proximity to the target during a procedure, and (iii) based at least in part on the relationship obtained in step (i) and the measured number of pixels in step (ii), determining at least one of a size of the target or a distance of the target from the tip of the endoscope.

Methods And Apparatus For Calibration Of A Sensor Associated With An Endoscope

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US Patent:
20210251473, Aug 19, 2021
Filed:
Apr 13, 2021
Appl. No.:
17/229056
Inventors:
- Maple Grove MN, US
Jane BAREAU - Needham MA, US
Laura KEITH - Acton MA, US
James McNALLY - San Diego CA, US
Jason SPROUL - Watertown MA, US
Assignee:
Boston Scientific Scimed, Inc. - Maple Grove MN
International Classification:
A61B 1/00
Abstract:
Embodiments of the invention include an apparatus including an enclosure configured to receive an endoscope having an electromagnetic radiation sensor. The apparatus also includes an electromagnetic radiation source having at least a portion disposed within the enclosure. The electromagnetic radiation source is configured to emit electromagnetic radiation based on a calibration instruction. The electromagnetic radiation sensor is configured to receive at least a portion of the electromagnetic radiation when at least a portion of the endoscope is coupled to the enclosure.

Flexible And/Or Pushable Tubular Device

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US Patent:
20190388651, Dec 26, 2019
Filed:
Sep 9, 2019
Appl. No.:
16/564892
Inventors:
- Southborough MA, US
Jane Bareau - Needham MA, US
International Classification:
A61M 25/01
B33Y 80/00
Abstract:
The teachings herein relate to devices for insertion into a cavity, opening or other passageway that requires the bending of the device to conform to a curved or even tortuous shape of the path. The devices include axial support components for translating forces for moving the device forward in the path. The axial support components preferably include adjacent components capable of rocking for tilting the device in one or more directions. The device preferably includes one or more lateral support components for limiting any lateral motion of an axial support component relative to an adjacent axial support component.

Methods And Apparatus For Calibration Of A Sensor Associated With An Endoscope

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US Patent:
20190029500, Jan 31, 2019
Filed:
Oct 2, 2018
Appl. No.:
16/149843
Inventors:
- Maple Grove MN, US
Jane BAREAU - Needham MA, US
Laura KEITH - Acton MA, US
James McNALLY - San Diego CA, US
Jason SPROUL - Watertown MA, US
Assignee:
Boston Scientific Scimed, Inc. - Maple Grove MN
International Classification:
A61B 1/00
Abstract:
Embodiments of the invention include an apparatus including an enclosure configured to receive an endoscope having an electromagnetic radiation sensor. The apparatus also includes an electromagnetic radiation source having at least a portion disposed within the enclosure. The electromagnetic radiation source is configured to emit electromagnetic radiation based on a calibration instruction. The electromagnetic radiation sensor is configured to receive at least a portion of the electromagnetic radiation when at least a portion of the endoscope is coupled to the enclosure.
Jane L Bareau from Needham, MA, age ~62 Get Report