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  1. The title of the post is a copy and paste from the title and third paragraph of the linked academic press release here:

    > New AI neural network approach detects heart failure from a single heartbeat with 100% accuracy

    > Published in Biomedical Signal Processing and Control Journal, their research drastically improves existing CHF detection methods typically focused on heart rate variability that, whilst effective, are time-consuming and prone to errors.

    Journal Reference:

    Mihaela Porumb, Ernesto Iadanza, Sebastiano Massaro, Leandro Pecchia,

    A convolutional neural network approach to detect congestive heart failure,

    Biomedical Signal Processing and Control, Volume 55, 2020, 101597, ISSN 1746-8094,

    Link: http://www.sciencedirect.com/science/article/pii/S1746809419301776

    DOI: https://doi.org/10.1016/j.bspc.2019.101597.

    Abstract:

    Congestive Heart Failure (CHF) is a severe pathophysiological condition associated with high prevalence, high mortality rates, and sustained healthcare costs, therefore demanding efficient methods for its detection. Despite recent research has provided methods focused on advanced signal processing and machine learning, the potential of applying Convolutional Neural Network (CNN) approaches to the automatic detection of CHF has been largely overlooked thus far. This study addresses this important gap by presenting a CNN model that accurately identifies CHF on the basis of one raw electrocardiogram (ECG) heartbeat only, also juxtaposing existing methods typically grounded on Heart Rate Variability. We trained and tested the model on publicly available ECG datasets, comprising a total of 490,505 heartbeats, to achieve 100% CHF detection accuracy. Importantly, the model also identifies those heartbeat sequences and ECG’s morphological characteristics which are class-discriminative and thus prominent for CHF detection. Overall, our contribution substantially advances the current methodology for detecting CHF and caters to clinical practitioners’ needs by providing an accurate and fully transparent tool to support decisions concerning CHF detection.

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