DeepGestalt - Identifying Rare Genetic Syndromes Using Deep Learning

01/23/2018
by   Yaron Gurovich, et al.
0

Facial analysis technologies have recently measured up to the capabilities of expert clinicians in syndrome identification. To date, these technologies could only identify phenotypes of a few diseases, limiting their role in clinical settings where hundreds of diagnoses must be considered. We developed a facial analysis framework, DeepGestalt, using computer vision and deep learning algorithms, that quantifies similarities to hundreds of genetic syndromes based on unconstrained 2D images. DeepGestalt is currently trained with over 26,000 patient cases from a rapidly growing phenotype-genotype database, consisting of tens of thousands of validated clinical cases, curated through a community-driven platform. DeepGestalt currently achieves 91 genetic syndromes and has outperformed clinical experts in three separate experiments. We suggest that this form of artificial intelligence is ready to support medical genetics in clinical and laboratory practices and will play a key role in the future of precision medicine.

READ FULL TEXT

page 5

page 6

page 7

research
08/01/2019

Clinical acceptance of software based on artificial intelligence technologies (radiology)

There is a methodological framework for the process of clinical trials o...
research
02/01/2023

The Past, Current, and Future of Neonatal Intensive Care Units with Artificial Intelligence

Artificial intelligence (AI), specifically a branch of AI called deep le...
research
07/19/2021

Machine Learning and Deep Learning Methods for Building Intelligent Systems in Medicine and Drug Discovery: A Comprehensive Survey

With the advancements in computer technology, there is a rapid developme...
research
01/25/2018

Deep Learning in Pharmacogenomics: From Gene Regulation to Patient Stratification

This Perspective provides examples of current and future applications of...
research
10/23/2022

Few-Shot Meta Learning for Recognizing Facial Phenotypes of Genetic Disorders

Computer vision-based methods have valuable use cases in precision medic...
research
11/17/2017

Detecting hip fractures with radiologist-level performance using deep neural networks

We developed an automated deep learning system to detect hip fractures f...
research
09/24/2019

LitGen: Genetic Literature Recommendation Guided by Human Explanations

As genetic sequencing costs decrease, the lack of clinical interpretatio...

Please sign up or login with your details

Forgot password? Click here to reset