IP Library Granted Patent US 11,385,222
Granted Patent B2
US 11,385,222 · App. 16/239,634 · Granted Jul 12, 2022

Fluorescence histo-tomography (FHT) systems and methods

Inventors: John W. Hoppin (Boston, MA); John V. Frangioni (Wayland, MA); Robert William Holt (Boston, MA); Mohammed Q. Qutaish (Medford, MA); Marc Edward Seaman (Norwood, MA); Mark W. Bordo (Worcester, MA); Jacob Yost Hesterman (Newton, MA)
Assignee: Emit Imaging, Inc.
G01N33/5023A61B5/0073G06T5/003G06T7/30H04N5/2252H04N5/247A61B5/0071G06T2207/10056G06T2207/30024
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Quick Facts
Patent No.
US 11,385,222
App. No.
16/239,634
Granted
Jul 12, 2022
Kind
B2
Abstract

In one embodiment, a fluorescence histo-tomography (FHT) system is disclosed. The FHT system includes an imaging housing, a fluorescence camera located within the housing, a white light camera located within the imaging housing, and a fluorescence light source located within the imaging housing. The FHT system further includes a support mount configured to support the imaging housing within a chamber of a slicing apparatus such that the cameras and fluorescence light source are aimed towards a block face of a tissue specimen retained within the chamber.

Claims (45)

1. A fluorescence histo-tomography (FHT) system comprising:

a housing having a handle;

one or more cameras located within the housing;

a fluorescence excitation light source located within the housing; and

a support mount coupled to a chamber of a slicing apparatus and configured to removably position the housing with respect to the chamber such that the one or more cameras and the fluorescence excitation light source are aimed towards a first block face of a tissue specimen retained within the chamber.

2. The FHT system as in claim 1 , wherein the support mount is removably positionable on a floor of the chamber.

3. The FHT system as in claim 1 , further comprising:

processing circuitry that includes a processor configured to execute a process and a memory to store the process executed by the processor, the process when executed operable to:

control a first camera of the one or more cameras to capture a first image of the first block face in a visible spectrum;

control a second camera of the one or more cameras to capture a second image of the first block face in a near infrared or infrared spectrum; and

process the first image and the second image to form a combined image.

4. The FHT system as in claim 3 , wherein the process, when executed, is further operable to:

cause the slicing apparatus to expose a second block face of the tissue specimen; and

generate a second combined image of the second block face.

5. The FHT system as in claim 1 , further comprising:

a gas container storing a pressurized gas;

a nozzle coupled to the gas container and positionable within the chamber of the slicing apparatus to direct the nozzle towards the tissue specimen; and

a control mechanism that controls a flow of the pressurized gas towards the tissue specimen within the chamber via the nozzle.

6. The FHT system as in claim 1 , further comprising:

one or more multi-colored fiducials for insertion into the tissue specimen.

7. The FHT system as in claim 1 , wherein the slicing apparatus comprises a cryomicrotome.

8. The FHT system as in claim 1 , further comprising:

a fiducial positioning apparatus forming a plurality of apertures through which fiducials may be inserted around the tissue specimen.

9. The FHT system as in claim 1 , wherein the one or more cameras are configured to detect a fluorophore within the tissue specimen at a wavelength between a range of approximately 200 nm to 1000 nm, when the first block face of the tissue specimen is illuminated with the fluorescence excitation light source.

10. The FHT system as in claim 1 , wherein the support mount is configured to position the one or more cameras at a fixed distance relative to the first block face.

11. A fluorescence histo-tomography (FHT) system comprising:

an imaging housing having a handle to allow a user to removably position the imaging housing with respect to a chamber of a slicing apparatus;

a first camera and a second camera located within the imaging housing, the first camera configured to acquire visible spectrum images of a first block face of a tissue specimen within the slicing apparatus and the second camera configured to acquire infrared spectrum images of the first block face;

a fluorescence excitation light source located within the imaging housing; and

a support mount coupled to the chamber and configured to support the imaging housing adjacent to the chamber such that the first camera, the second camera, and the fluorescence excitation light source are aimed towards the first block face.

12. The FHT system as in claim 11 , further comprising:

a gas container storing a pressurized gas;

a nozzle coupled to the gas container and positionable within the chamber of the slicing apparatus to direct the nozzle towards the tissue specimen; and

a control mechanism that controls a flow of the pressurized gas towards the tissue specimen within the chamber via the nozzle.

13. The FHT system as in claim 11 , wherein the support mount is removably positionable on a floor of the chamber.

14. The FHT system as in claim 11 , wherein the support mount is configured to position the first camera and the second camera at a fixed distance relative to the first block face.

15. The FHT system as in claim 11 , further comprising:

processing circuitry that includes a processor configured to execute a process and a memory to store the process executed by the processor, the process when executed operable to:

cause the first camera to acquire a first image of the first block face;

cause the second camera to acquire a second image of the first block face;

generate a first combined image of the first block face based on the first image and the second image;

cause the slicing apparatus to expose a second block face of the tissue specimen;

cause the first camera to acquire a third image of the second block face;

cause the second camera to acquire a fourth image of the second block face; and

generate a second combined image of the second block face.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2020
From: HOPPIN, JOHN W.; FRANGIONI, JOHN V.; HOLT, ROBERT WILLIAM; QUTAISH, MOHAMMED Q.; SEAMAN, MARC EDWARD; BORDO, MARK W.; HESTERMAN, JACOB YOST
To: EMIT IMAGING, INC.
Reel/Frame 053950/0140 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2019
From: INVICRO, LLC
To: EMIT IMAGING, INC,
Reel/Frame 048337/0902 →
Continuity (5)
Continuation 15253149 · Aug 31, 2016
Continuation In Part 15158928 · May 19, 2016
Provisional Application 62211930 · Aug 31, 2015
Provisional Application 62164800 · May 21, 2015
Related Publication 20190154665A1 · May 23, 2019
Cited By (1)
US 12,292,437