Neural Pharmacodynamic State Space Modeling

02/22/2021
by   Zeshan Hussain, et al.
0

Modeling the time-series of high-dimensional, longitudinal data is important for predicting patient disease progression. However, existing neural network based approaches that learn representations of patient state, while very flexible, are susceptible to overfitting. We propose a deep generative model that makes use of a novel attention-based neural architecture inspired by the physics of how treatments affect disease state. The result is a scalable and accurate model of high-dimensional patient biomarkers as they vary over time. Our proposed model yields significant improvements in generalization and, on real-world clinical data, provides interpretable insights into the dynamics of cancer progression.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
07/21/2023

A New Deep State-Space Analysis Framework for Patient Latent State Estimation and Classification from EHR Time Series Data

Many diseases, including cancer and chronic conditions, require extended...
research
03/17/2022

DeepAD: A Robust Deep Learning Model of Alzheimer's Disease Progression for Real-World Clinical Applications

The ability to predict the future trajectory of a patient is a key step ...
research
03/13/2018

A Probabilistic Disease Progression Model for Predicting Future Clinical Outcome

In this work, we consider the problem of predicting the course of a prog...
research
10/24/2018

Forecasting Individualized Disease Trajectories using Interpretable Deep Learning

Disease progression models are instrumental in predicting individual-lev...
research
11/28/2019

HyperTraPS: Inferring probabilistic patterns of trait acquisition in evolutionary and disease progression pathways

The explosion of data throughout the biomedical sciences provides unprec...
research
03/02/2023

Implicit Neural Representations for Modeling of Abdominal Aortic Aneurysm Progression

Abdominal aortic aneurysms (AAAs) are progressive dilatations of the abd...
research
10/17/2019

A Parametric Perceptual Deficit Modeling and Diagnostics Framework for Retina Damage using Mixed Reality

Age-related Macular Degeneration (AMD) is a progressive visual impairmen...

Please sign up or login with your details

Forgot password? Click here to reset