AUTOMATED METHODS TO COUNT CORNEAL SUBBASAL NERVES

Patent №

US 9,757,022

Granted

2017-09-12

Filed 2016

Owner

THE JOHNS HOPKINS UNIVERSITY

+1 more

Lab

AI components

2

vision · hardware

Assignment

Recorded

Dataset

AIPD

2023_r1 edition

Application

15152645

The present invention is directed to a software algorithm that measures the number of corneal nerve fibers in images captured by microscopy including images from patients obtained by in vivo corneal confocal microscopy, a noninvasive technique. The present invention solves a complicated segmentation problem, by exploiting the piece wise linear nature of the nerve fibers—i.e., the nerves are made up of a lot of straight line segments. The image is split into sub-regions, where each sub-region contains nerves mostly running in the same, straight direction. Having the nerves all in straight-lines within a single 2d image region dramatically simplifies the segmentation problem. The image intensities are summed in the direction of the nerves to reduce the 2d representation to a 1d signal having pronounced peaks where the nerves are located.

VisionAI hardwareA61B 3/0025A61B 3/1025A61B 3/13A61B 5/4047A61B 5/0068A61B 5/4029A61B 2576/02G16H 30/40

AI classification

Vision1.00
AI hardware1.00
Machine learning0.02
Evolutionary computation0.00
Knowledge representation0.00
Speech0.00
Natural language0.00
Planning0.00

Ownership

THE JOHNS HOPKINS UNIVERSITY

assignment · 428090182

VOXELERON LLC

assignment · 428090215

Assignors

MANKOWSKI, JOSEPH L.

On an employer assignment, the assignors are typically the inventors.

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