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What is Multilayer Perceptron (MLP)

Diverse Perspectives and State-of-the-Art Approaches to the Utilization of Data-Driven Clinical Decision Support Systems
A fully connected class of feedforward artificial neural network (ANN).
Published in Chapter:
Systematic Literature Review: XAI and Clinical Decision Support
Thomas M. Connolly (DS Partnership, UK), Mario Soflano (Glasgow Caledonian University, UK), and Petros Papadopoulos (University of Strathclyde, UK)
DOI: 10.4018/978-1-6684-5092-5.ch008
Abstract
Machine learning (ML) applications hold significant promise for innovation within healthcare; however, their full potential has not yet been realised, with limited reports of their clinical and cost benefits in clinical practice. This is due to complex clinical, ethical, and legal questions arising from the lack of understanding about how some ML models operate and come to make decisions. eXplainable AI (XAI) is an approach to help address this problem and make ML models understandable. This chapter reports on a systematic literature review investigating the use of XAI in healthcare within the last six years. Three research questions identified as issues in the literature were examined around how bias was dealt with, which XAI techniques were used, and how the applications were evaluated. Findings show that other than class imbalance and missing values, no other types of bias were accounted for in the shortlisted papers. There were no evaluations of the explainability outputs with clinicians and none of the shortlisted papers used an interventional study or RCT.
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Chatbots vs. AI Chatbots vs. Virtual Assistants
A misnomer for a modern feedforward artificial neural network. This network comprises fully connected neurons that use a non-linear activation function. It is structured with a minimum of three layers and is particularly noteworthy for its capability to discern non-linearly separable input.
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Software Cost Estimation using Soft Computing Approaches
MLP is typically composed of several layers of many computing elements called nodes. Each node receives an input signal from other nodes or external inputs and then after processing the signals locally through a transfer function it outputs a transformed signal to other nodes or final result
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