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Michael A Choma, 481056 Greenwood Dr, Menlo Park, CA 94025

Michael Choma Phones & Addresses

1056 Greenwood Dr, Menlo Park, CA 94025   

28231 Town Walk Dr, Hamden, CT 06518    203-9035920   

206 Duke St, Durham, NC 27701   

221 W Newton St #3, Boston, MA 02116   

11480 Hessler Rd, Cleveland, OH 44106   

Cleveland Heights, OH   

Marlboro, NJ   

Houston, TX   

206 N Duke St APT 204, Durham, NC 27701   

Work

Position: Sales Occupations

Education

Degree: High school graduate or higher

Mentions for Michael A Choma

Career records & work history

Medicine Doctors

Michael Choma Photo 1

Dr. Michael A Choma, Boston MA - MD (Doctor of Medicine)

Specialties:
Pediatrics
Address:
300 Longwood Ave, Boston, MA 02115
617-3558241 (Phone)
CHILDRENS HOSPITAL BOSTON
300 Longwood Ave, Boston, MA 02115
617-3556117 (Phone) 617-7387066 (Fax)
Languages:
English
Education:
Medical School
Duke Univ Sch Of Med
Graduated: 2002
Michael Choma Photo 2

Michael A Choma, Hamden CT

Specialties:
Pediatrics
Age:
47
Address:
12132 Town Walk Dr, Hamden, CT 06518
617-6452123 (Phone)
Languages:
English
Michael Choma Photo 3

Michael A Choma

Specialties:
Pediatrics
Education:
Duke University(2006)
Michael Choma Photo 4

Michael A Choma, Boston MA

Specialties:
Pediatrician
Address:
300 Longwood Ave, Boston, MA 02115

Michael Choma resumes & CV records

Resumes

Michael Choma Photo 27

Vice President Of Clinical Solutions

Location:
Menlo Park, CA
Industry:
Research
Work:
Lookdeep Health
Vice President of Clinical Solutions
Facebook Mar 2018 - Mar 2019
Biomedical Optical Scientist
Facebook Jun 2017 - Mar 2018
Neural Imaging Engineer @ Building 8, Facebook
Yale University School of Medicine Jun 2017 - Mar 2018
Adjunct Associate Professor
Yale University School of Medicine 2017 - 2018
Associate Professor
Yale University School of Medicine 2011 - 2017
Assistant Professor
Education:
Duke University 2006
Doctor of Medicine, Doctorates, Medicine
Duke University 2004
Doctorates, Doctor of Philosophy, Biomedical Engineering, Philosophy
Case Western Reserve University
Bachelors, Bachelor of Science, Biomedical Engineering
Skills:
Science, Microscopy, Biomedical Engineering, Molecular Biology, Confocal Microscopy, Optics, Life Sciences, Physics, Research, Image Processing, Lifesciences, Cancer, Cell Biology, Fluorescence Microscopy, Matlab, Medicine, Photonics, Pediatrics, Medical Imaging, Neuroscience, Python, Optical Coherence Tomography, Biophotonics, Human Physiology, Medical Lasers
Michael Choma Photo 28

Michael Choma

Michael Choma Photo 29

Michael Choma

Michael Choma Photo 30

Michael Choma

Location:
United States
Michael Choma Photo 31

Michael Choma

Location:
United States
Michael Choma Photo 32

Michael Choma

Location:
United States

Publications & IP owners

Us Patents

System And Method For Low Coherence Broadband Quadrature Interferometry

US Patent:
7019838, Mar 28, 2006
Filed:
May 28, 2004
Appl. No.:
10/855652
Inventors:
Joseph A. Izatt - Raleigh NC, US
Michael Choma - Durham NC, US
Changhuei Yang - Pasadena CA, US
Assignee:
Duke University - Durham NC
International Classification:
G01B 9/02
US Classification:
356479, 356497
Abstract:
A quadrature broadband interferometry system and method obtains a complete complex interferometric signal instantaneously in both homodyne and heterodyne systems in a simple, compact, and inexpensive setup. This is accomplished by separating interferometric components from non-interferometric components in each of at least two detector signals of an interferometer having a number of N×N couplers, scaling the interferometric components, and generating real and imaginary parts of a complex interferometric signal from the scaled interferometric components. The detector signals preferably derive from a broadband light source coupled to the interferometer, and the number of N×N couplers may be one or more, with N≧3.

Method For Optical Coherence Tomography Imaging With Molecular Contrast

US Patent:
7075658, Jul 11, 2006
Filed:
Jan 26, 2004
Appl. No.:
10/765010
Inventors:
Joseph A. Izatt - Durham NC, US
Divakar K. Rao - Indore, IN
Changhuei Yang - Durham NC, US
Michael A. Choma - Durham NC, US
Siavash Yazdanfar - Cambridge MA, US
Andrew M. Rollins - Cleveland OH, US
Brian E. Applegate - Durham NC, US
Assignee:
Duke University - Durham NC
Case Western Reserve University - Cleveland OH
International Classification:
G01B 9/02
US Classification:
356479
Abstract:
Spatial information, such as concentration and displacement, about a specific molecular contrast agent, may be determined by stimulating a sample containing the agent, thereby altering an optical property of the agent. A plurality of optical coherence tomography (OCT) images may be acquired, at least some of which are acquired at different stimulus intensities. The acquired images are used to profile the molecular contrast agent concentration distribution of the sample.

Methods And Systems For Reducing Complex Conjugate Ambiguity In Interferometric Data

US Patent:
7336366, Feb 26, 2008
Filed:
Jan 20, 2006
Appl. No.:
11/336652
Inventors:
Michael Choma - Durham NC, US
Joseph A. Izatt - Raleigh NC, US
Anjul Davis - Durham NC, US
Assignee:
Duke University - Durham NC
International Classification:
G01B 9/02
G01B 11/02
US Classification:
356479, 356456, 356497
Abstract:
A complex conjugate ambiguity can be resolved in an Optical Coherence Tomography (OCT) interferogram. A reference light signal is propagated along a reference path. A sample light signal is impinged on a sample reflector. The reference light signal is frequency shifted with respect to the sample light signal to thereby separate a positive and a negative displacement of a complex conjugate component of the OCT interferogram.

Methods, Systems And Computer Program Products For Characterizing Structures Based On Interferometric Phase Data

US Patent:
7633627, Dec 15, 2009
Filed:
Jan 20, 2006
Appl. No.:
11/337166
Inventors:
Michael Choma - Durham NC, US
Joseph A. Izatt - Raleigh NC, US
Audrey Ellerbee - Durham NC, US
Marinko Sarunic - Durham NC, US
Assignee:
Duke University - Durham NC
International Classification:
G01B 9/02
US Classification:
356479
Abstract:
Structure profiles from optical interferometric data can be identified by obtaining a plurality of broadband interferometric optical profiles of a structure as a function of structure depth in an axial direction. Each of the plurality of interferometric optical profiles include a reference signal propagated through a reference path and a sample signal reflected from a sample reflector in the axial direction. An axial position corresponding to at least a portion of the structure is selected. Phase variations of the plurality of interferometric optical profiles are determined at the selected axial position. A physical displacement of the structure is identified based on the phase variations at the selected axial position.

Methods, Systems And Computer Program Products For Characterizing Structures Based On Interferometric Phase Data

US Patent:
8077325, Dec 13, 2011
Filed:
Dec 9, 2009
Appl. No.:
12/634153
Inventors:
Michael Choma - Durham NC, US
Joseph A. Izatt - Raleigh NC, US
Audrey Ellerbee - Durham NC, US
Marinko Sarunic - Durham NC, US
Assignee:
Duke University - Durham NC
International Classification:
G01N 21/41
US Classification:
356517
Abstract:
Structure profiles from optical interferometric data can be identified by obtaining a plurality of broadband interferometric optical profiles of a structure as a function of structure depth in an axial direction. Each of the plurality of interferometric optical profiles include a reference signal propagated through a reference path and a sample signal reflected from a sample reflector in the axial direction. An axial position corresponding to at least a portion of the structure is selected. Phase variations of the plurality of interferometric optical profiles are determined at the selected axial position. A physical displacement of the structure is identified based on the phase variations at the selected axial position.

Methods And Compositions For Detecting Misfolded Proteins

US Patent:
2019035, Nov 21, 2019
Filed:
May 8, 2019
Appl. No.:
16/406942
Inventors:
- New Haven CT, US
Catalin S. Buhimschi - Columbus OH, US
Michael Choma - Hamden CT, US
Hemant Tagare - North Haven CT, US
Stephan Michael Jonas - Alsdorf, DE
Assignee:
Yale University - New Haven CT
International Classification:
G01N 33/68
G01N 33/52
Abstract:
Various aspects and embodiments of the present disclosure are directed to methods and compositions (e.g., kits) for the identification of subjects with misfolded proteins in their urine. For example, methods and compositions for determining that a urine sample from a pregnant woman contains or does not contain misfolded are provided. In some embodiments, the presence of misfolded proteins in a urine sample from a pregnant woman is an indication of preeclampsia.

Methods And Compositions For Detecting Misfolded Proteins

US Patent:
2015029, Oct 15, 2015
Filed:
Apr 10, 2015
Appl. No.:
14/683908
Inventors:
- NEW HAVEN CT, US
CATALIN S. BUHIMSCHI - COLUMBUS OH, US
MICHAEL CHOMA - HAMDEN CT, US
HEMANT TAGARE - NORTH HAVEN CT, US
STEPHAN MICHAEL JONAS - ALSDORF, DE
Assignee:
YALE UNIVERSITY - NEW HAVEN CT
International Classification:
G01N 33/68
Abstract:
Various aspects and embodiments of the present disclosure are directed to methods and compositions (e.g., kits) for the identification of subjects with misfolded proteins in their urine. For example, methods and compositions for determining that a urine sample from a pregnant woman contains or does not contain misfolded are provided. In some embodiments, the presence of misfolded proteins in a urine sample from a pregnant woman is an indication of preeclampsia.

Systems And Methods For Imaging Using A Random Laser

US Patent:
2014011, Apr 24, 2014
Filed:
Apr 16, 2012
Appl. No.:
14/110937
Inventors:
Hui Cao - New Haven CT, US
Brandon Redding - New Haven CT, US
Michael Choma - Hamden CT, US
Assignee:
YALE UNVIVERSITY - New Haven CT
International Classification:
H04N 5/235
H01S 3/10
US Classification:
348241, 372 20
Abstract:
Systems and methods are provided for imaging using complex lasers. In general, a complex laser may be used as an electromagnetic source for an imaging application. The use of a lower spatial coherence configured complex laser in imaging applications may advantageously mitigate coherent artifacts in imaging such as cross-talk and speckle and improve overall image quality. Imaging applications where a complex laser may be useful include both incoherent imaging applications, such as digital light projectors and traditional microscopy, and coherent imaging applications, such as optical coherence tomography (OCT) and holography. The systems and methods provided also enable controlling the degree of spatial coherence of a complex laser.

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