Inventor

Aydogan Ozcan

Inventor
Los Angeles, CA, US

Overview

46→
Patents
2005–2021
Patent span
Physics
Primary field (CPC G)

Patents· 46 as inventor

Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.

G01Nprimary
G01NInvestigating or analysing materials by determining their chemical or physical properties23%
G01JMeasurement of intensity, velocity, spectral content, polarisation, phase or pulse characteristics of infrared, visible or ultraviolet light9%
G02BOptical elements, systems or apparatus9%
G03HHolographic processes or apparatus9%
G06TImage data processing or generation, in general7%
G01BMeasuring length, thickness or similar linear dimensions6%
G06KGraphical data reading5%
A61BDiagnosis3%
G06VImage or video recognition or understanding3%
H04NPictorial communication, e.g. television3%
PatentTitleYear
11,054,357Mobile microscopy system for air quality monitoring202110,871,745Device and method for iterative phase recovery based on pixel super-resolved on-chip holography202010,838,192Method and device for high-resolution color imaging using merged images from holographic and lens-based devices202010,795,315Method and system for pixel super-resolution of multiplexed holographic color images202010,663,466Portable rapid diagnostic test reader and methods of using the same202010,365,214Method and device for detection and spatial mapping of mercury concentration in water samples201910,248,838Method and device for single molecule imaging201910,175,215Method and device for quantification of plant chlorophyll content201910,088,663Device and method for tunable vapor condensed nanolenses20189,767,341'Method and device for holographic opto-fluidic microscopy'20179,715,099'Maskless imaging of dense samples using multi-height lensfree microscope'20179,683,938'Fluorescent imaging using a flatbed scanner'20179,605,941'Lens-free tomographic imaging devices and methods'20179,588,037'High throughput lens-free three-dimensional tracking of sperm'20179,331,113'Wide-field lensless fluorescent imaging on a chip'20169,202,835'Microscopy method and system incorporating nanofeatures'20159,170,599'Optical image processing using maximum or minimum phase functions'20159,057,702'Compact wide-field fluorescent imaging on a mobile device'20159,007,433'Incoherent lensfree cell holography and microscopy on a chip'20158,916,390'Portable rapid diagnostic test reader'20148,874,403'Apparatus and method for processing optical coherence tomography imaging data'20148,866,063'Lens-free wide-field super-resolution imaging device'20148,842,901'Compact automated semen analysis platform using lens-free on-chip microscopy'20148,693,762'Inertial particle focusing flow cytometer'20148,244,086'Apparatus and methods using hollow-core fiber tapers'20128,219,350'Apparatus for measuring a frequency-domain optical coherence tomography power spectrum from a sample'20128,150,644'Femtosecond spectroscopy using minimum or maximum phase functions'20128,082,117'Optical image processing using minimum phase functions'20118,032,322'Apparatus for measuring a frequency-domain optical coherence tomography power spectrum from a sample'20118,009,948'Apparatus and methods using hollow-core fiber tapers'20117,746,480'Apparatus for characterizing fiber Bragg gratings'20107,742,665'Apparatus and methods using hollow-core fiber tapers'20107,643,952'Optical image processing using minimum phase functions'20107,493,227'Method for determining the complex scattering function of an optical coherence tomography sample'20097,480,034'Apparatus for characterizing fiber bragg gratings'20097,417,742'Method for estimating the optical nonlinearity of a material'20087,385,683'Method of characterizing fiber Bragg gratings using iterative processing'20087,369,953'Femtosecond spectroscopy using minimum phase functions'20087,365,851'Method of measuring a physical function using a composite function which includes the physical function and an arbitrary reference function'20087,313,493'Method of retrieving phase and magnitude of weak ultra-short optical pulses using a stronger unknown pulse'20077,259,868'Method for determining the optical nonlinearity profile of a material'20077,236,247'Method of measuring a physical function using a composite function which includes the physical function and an arbitrary reference function'20077,236,246'Method of measuring a physical function using a composite function which includes the physical function and an arbitrary reference function'20077,133,134'Method of measuring a physical function using a symmetric composite function'20067,050,169'Method of measuring a physical function using a composite function which includes the physical function and an arbitrary reference function'20066,856,393'Method of measuring a physical function using a composite function which includes the physical function and an arbitrary reference function'2005

Career & activity timeline

Assembled from patent assignee/location history and declaration credentials.

2005–2015Patents assigned to UNIV LELAND STANFORD JUNIOR (24)· patent assignee history
2005–2010Based in Menlo Park, CA, US· patent location history
2007–2015Based in Boston, MA, US· patent location history
2008–2021Based in Los Angeles, CA, US· patent location history
2011–2017Patents assigned to OZCAN AYDOGAN (16)· patent assignee history
2011–2015Patents assigned to DIGONNET MICHEL J F (5)· patent assignee history
2011–2015Patents assigned to KINO GORDON S (5)· patent assignee history
2014–2021Patents assigned to UNIV CALIFORNIA (22)· patent assignee history

Inventor activity

Assignee and location history derived from the patent record.

Assignees
AssigneePatentsSpan
UNIV LELAND STANFORD JUNIOR242005–2015
UNIV CALIFORNIA222014–2021
OZCAN AYDOGANself162011–2017
DIGONNET MICHEL J F52011–2015
KINO GORDON S52011–2015
Locations
LocationPatentsSpan
Los Angeles, California, US272008–2021
Menlo Park, California, US112005–2010
Boston, Massachusetts, US82007–2015