ResearchTrend.AI
  • Papers
  • Communities
  • Events
  • Blog
  • Pricing
Papers
Communities
Social Events
Terms and Conditions
Pricing
Parameter LabParameter LabTwitterGitHubLinkedInBlueskyYoutube

© 2025 ResearchTrend.AI, All rights reserved.

  1. Home
  2. Papers
  3. 1711.04036
  4. Cited By
Physiological and behavioral profiling for nociceptive pain estimation
  using personalized multitask learning

Physiological and behavioral profiling for nociceptive pain estimation using personalized multitask learning

10 November 2017
D. Martinez
Ognjen Rudovic
Rosalind W. Picard
ArXivPDFHTML

Papers citing "Physiological and behavioral profiling for nociceptive pain estimation using personalized multitask learning"

6 / 6 papers shown
Title
Multi-task Neural Networks for Pain Intensity Estimation using
  Electrocardiogram and Demographic Factors
Multi-task Neural Networks for Pain Intensity Estimation using Electrocardiogram and Demographic Factors
Stefanos Gkikas
Chariklia Chatzaki
Manolis Tsiknakis
23
7
0
28 Jul 2024
Automatic Estimation of Self-Reported Pain by Trajectory Analysis in the
  Manifold of Fixed Rank Positive Semi-Definite Matrices
Automatic Estimation of Self-Reported Pain by Trajectory Analysis in the Manifold of Fixed Rank Positive Semi-Definite Matrices
Benjamin Szczapa
Mohamed Daoudi
Stefano Berretti
P. Pala
A. Bimbo
Z. Hammal
CVBM
21
8
0
05 Sep 2022
Pain Detection with fNIRS-Measured Brain Signals: A Personalized Machine
  Learning Approach Using the Wavelet Transform and Bayesian Hierarchical
  Modeling with Dirichlet Process Priors
Pain Detection with fNIRS-Measured Brain Signals: A Personalized Machine Learning Approach Using the Wavelet Transform and Bayesian Hierarchical Modeling with Dirichlet Process Priors
D. Martinez
Ke Peng
Arielle J. Lee
D. Borsook
Rosalind W. Picard
19
27
0
30 Jul 2019
Detection of Real-world Driving-induced Affective State Using
  Physiological Signals and Multi-view Multi-task Machine Learning
Detection of Real-world Driving-induced Affective State Using Physiological Signals and Multi-view Multi-task Machine Learning
D. Martinez
Neska El Haouij
Rosalind W. Picard
16
21
0
19 Jul 2019
Deep Reinforcement Learning for Optimal Critical Care Pain Management
  with Morphine using Dueling Double-Deep Q Networks
Deep Reinforcement Learning for Optimal Critical Care Pain Management with Morphine using Dueling Double-Deep Q Networks
D. Martinez
Patrick C Eschenfeldt
Sassan Ostvar
Myles A. Ingram
C. Hur
Rosalind W. Picard
OffRL
11
40
0
25 Apr 2019
Multi-task multiple kernel machines for personalized pain recognition
  from functional near-infrared spectroscopy brain signals
Multi-task multiple kernel machines for personalized pain recognition from functional near-infrared spectroscopy brain signals
D. Martinez
Ke Peng
Sarah C. Steele
Arielle J. Lee
D. Borsook
Rosalind W. Picard
13
12
0
21 Aug 2018
1