Computational Intelligence and Neuroscience

Safe and Fair Machine Learning for Neuroscience


Publishing date
01 Dec 2022
Status
Published
Submission deadline
22 Jul 2022

Lead Editor

1Instituto de Telecomunicações, Aveiro, Portugal

2University of Fortaleza, Fortaleza, Brazil

3University of Essex, Essex, UK


Safe and Fair Machine Learning for Neuroscience

Description

As machine learning (ML) moves from purely theoretical models to practical applications, the issue of safety and fairness for ML begins to become increasingly relevant. ML has shown increasing proficiency in neuroscience, even performing better than humans in certain tasks. Together with the cornucopia of neuroscience data becoming available in the big data era, ML is destined to achieve even more superior efficacy in many tasks by leveraging it.

However, accompanying the capabilities, the inherent safety and fairness issues associated with ML have profound implications. ML models are algorithms trained on existing data, and as such, they often carry the biases of prior practice. Without vigilance and surveillance methods, even the most well-intentioned ML model can propagate the biases present in the training data. Moreover, vulnerabilities in ML models can be easily exploited by attackers advertently or inadvertently to achieve desired pernicious results or exacerbate power imbalances. Neuroscience explores how the brain executes various perceptual, cognitive, and motor tasks. ML-based artificial intelligence techniques allow big data to be processed with intelligent computers, which provides new possibilities for neuroscience such as how thousands of neurons and nodes communicate to handle massive information and how the brain generates behaviors and controls them. Researchers often overlook the risks of data-fying neuroscience because of the safety and fairness issue of ML models. Attention has been drawn to the much more profound and more fundamental problem that the safety and fairness issue in ML models exacerbates imbalances and risk, and the consequences are especially severe for neuroscience. Thus, ensuring safety and fairness in ML models for neuroscience becomes a crucial component in the advancement of ML in neuroscience.

This Special Issue welcomes original research and review articles discussing the fairness and safety implications of the use of ML in real-world neuroscience systems, proposing methods to detect, prevent, and/or alleviate undesired fairness and safety issues that ML-based systems might exhibit, analyzing the vulnerability of neuroscience ML systems to adversarial attacks and the possible defense mechanisms, and, more generally, any paper that stimulates progress on topics related to fair and safe ML in neuroscience. Hence, we hope to make sure that with the application of new technologies such as ML, across the continuum of care, technology aids humanity and not the reverse.

Potential topics include but are not limited to the following:

  • Fairness and bias of ML in neuroscience
  • Application of transparency to safety and fairness of ML in neuroscience
  • Measurement & mismeasurement of safety and fairness
  • Understanding disparities in the predicted outcome
  • Construction of unbiased ML models for neuroscience
  • Bias removal of ML use cases for neuroscience
  • Interpretability of ML in neuroscience
  • Recourse and contestability of biased ML results
  • Emphasis on learning underrepresented groups
  • Safe reinforcement learning in neuroscience
  • Safe neuroscience robotic control
  • Ethical and legal consequences of using ML in real-world systems
  • Safety of deploying reinforcement learning in neuroscience
  • Any novelties for enabling the safety and fairness of ML in neuroscience

Articles

  • Special Issue
  • - Volume 2022
  • - Article ID 1003243
  • - Research Article

Analysis of 22-year Drought Characteristics in Heilongjiang Province Based on Temperature Vegetation Drought Index

Li Wu | Youzhi Zhang | ... | Zhiqun Lv
  • Special Issue
  • - Volume 2022
  • - Article ID 6901601
  • - Research Article

An Intelligent Supervision for Supply Chain Finance and Logistics Based on Internet of Things

Wei Bai | Yongbin Liu | Jingjie Wang
  • Special Issue
  • - Volume 2022
  • - Article ID 3667187
  • - Research Article

[Retracted] An Intelligent Optimization for Building Design Based on BP Neural Network and SPEA-II Multiobjective Algorithm

Haiman Xu
  • Special Issue
  • - Volume 2022
  • - Article ID 8234066
  • - Research Article

A Sport Monitoring System Based on the Optimized Adaptive Fuzzy PID Control Algorithm in OneNet Internet of Things and Cloud Platform

Di Zhang | Hyun Joo Min
  • Special Issue
  • - Volume 2022
  • - Article ID 6752067
  • - Research Article

Key Feature Extraction Method of Electroencephalogram Signal by Independent Component Analysis for Athlete Selection and Training

Zhongwei Huang | Lifen Cheng | Yang Liu
  • Special Issue
  • - Volume 2022
  • - Article ID 8504369
  • - Research Article

Technical Diagnosis on Elite Female Discus Athletes Based on Grey Relational Analysis

Dong Chen | Xuejun Ma | Jiawei Dong
  • Special Issue
  • - Volume 2022
  • - Article ID 3343427
  • - Research Article

A Model Study on Raw Material Chemical Composition to Predict Sinter Quality Based on GA-RNN

Yifan Li | Qunwei Zhang | ... | Zezheng Li
  • Special Issue
  • - Volume 2022
  • - Article ID 2836486
  • - Research Article

High Similarity Image Recognition and Classification Algorithm Based on Convolutional Neural Network

Zhizhe Liu | Luo Sun | Qian Zhang
  • Special Issue
  • - Volume 2022
  • - Article ID 1499801
  • - Research Article

E-Commerce Information System Management Based on Data Mining and Neural Network Algorithms

Qing Zhang | Abdul Rashid Abdullah | ... | Mass Hareeza Ali
  • Special Issue
  • - Volume 2022
  • - Article ID 4865808
  • - Research Article

Texture Image Compression Algorithm Based on Self-Organizing Neural Network

Jianmin Han

We have begun to integrate the 200+ Hindawi journals into Wiley’s journal portfolio. You can find out more about how this benefits our journal communities on our FAQ.