IP Library › Granted Patent US 11,234,584
Granted Patent B2
US 11,234,584 · App. 15/374,769 · Granted Feb 1, 2022

Molecular chemical imaging endoscopic imaging systems

Inventors: Patrick Treado (Pittsburgh, PA); Shona Stewart (Pittsburgh, PA); Matthew P. Nelson (Pittsburgh, PA)
Assignee: CHEMIMAGE CORPORATION
A61B1/07A61B1/00186A61B1/042A61B1/043A61B1/0607A61B1/0638A61B1/0646A61B1/00009A61B5/0033A61B5/0071A61B5/0075A61B5/0084A61B5/0097
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Quick Facts
Patent No.
US 11,234,584
App. No.
15/374,769
Filed
Dec 9, 2016
Granted
Feb 1, 2022
Kind
B2
Art Unit
2487
USPC
348/68
Abstract

Medical imaging systems for use in conjunction with an endoscope are described. Generally, the medical imaging system includes an illumination source configured to generate illuminating photons. The illuminating photons are transmitted to one or more filters configured to filter a first plurality of illuminating photons and generate a first plurality of filtered photons comprising a first passband wavelength and a second plurality of filtered photons comprising a second passband wavelength. A sample is then illuminated with the first plurality of filtered photons and the second plurality of filtered photons to generate a first plurality of interacted photons and a second plurality of interacted photons. One or more detectors are configured to detect the first plurality of interacted photons and the second plurality of interacted photons and generate one or more image data sets.

Claims (12)

1. An imaging system for use in an endoscope, the imaging system comprising:

an illumination source configured to generate illuminating photons;

one or more filters selected from conformal filters, multivariate optical element (MOE) filters, patterned etalon filters, acousto-optic tunable filters (AOTF), multi-conjugate filters and combinations thereof, configured to filter a first plurality of illuminating photons and generate a first plurality of filtered photons comprising first multi-passband wavelengths and a second plurality of filtered photons comprising second multi-pas sband wavelengths, wherein the first multi-pas sband wavelengths differ from the second multi-passband wavelengths, and wherein a sample is illuminated with the first plurality of filtered photons and the second plurality of filtered photons to generate a first plurality of interacted photons and a second plurality of interacted photons;

at least two detectors comprising a first detector configured to detect the first plurality of interacted photons and a second detector configured to detect the second plurality of interacted photons, the first detector configured to generate a first image data set corresponding to the first plurality of interacted photons and the second detector configured to generate a second image data set corresponding to the second plurality of interacted photons.

2. An imaging system for use in an endoscope, the imaging system comprising:

an illumination source configured to illuminate a sample and generate interacted photons;

one or more filters selected from conformal filters, multivariate optical element (MOE) filters, patterned etalon filters, acousto-optic tunable filters (AOTF), multi-conjugate filters, and combinations thereof, configured to filter one or more of a first plurality of the interacted photons and transmit first multi-passband wavelengths and a second plurality of the interacted photons and transmit second multi-passband wavelengths, wherein the first multi-passband wavelengths differ from the second multi-passband wavelengths;

at least two detectors comprising a first detector configured to detect the first multi-passband wavelengths and a second detector configured to detect the second multi-passband wavelengths, the first detector configured to generate a first image data set of the first multi-passband wavelength and the second detector configured to generate a second image data set of the second multi-passband wavelength.

3. The imaging system of claim 1 , wherein the illumination source includes at least one of a quartz tungsten halogen light source, a metal halide light source, a light emitting diode (LED), a laser, or a broadband illumination source.

4. The imaging system of claim 3 , wherein the light emitting diode (LED) includes at least one of a LED array having a uniform selection of emitters which emit over a constant wavelength range, a LED array having a plurality of emitters which emit over a diversity of wavelength ranges, a pulsed LED, or a pulsed LED array.

5. The imaging system of claim 2 , wherein the illumination source includes at least one of a quartz tungsten halogen light source, a metal halide light source, a light emitting diode (LED), a laser, or a broadband illumination source.

6. The imaging source of claim 5 , wherein the light emitting diode (LED) includes at least one of a LED array having a uniform selection of emitters which emit over a constant wavelength range, a LED array having a plurality of emitters which emit over a diversity of wavelength ranges, a pulsed LED, or a pulsed LED array.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2020
From: TREADO, PATRICK; NELSON, MATTHEW; STEWART, SHONA
To: CHEMIMAGE CORPORATION
Reel/Frame 052940/0785 →
Continuity (4)
Continuation 15932435 · Dec 9, 2015
Provisional Application 62113958 · Feb 9, 2015
Provisional Application 62089777 · Dec 9, 2014
Related Publication 20180116494A1 · May 3, 2018