CVLGSep 28, 2022

Analysis and prediction of heart stroke from ejection fraction and serum creatinine using LSTM deep learning approach

arXiv:2209.13799v14 citationsh-index: 33
Originality Synthesis-oriented
AI Analysis

This work addresses heart stroke prediction for healthcare applications, but it is incremental as it applies an existing LSTM method to a specific medical dataset.

The researchers tackled heart stroke prediction by applying an LSTM deep learning model to a dataset of 299 heart failure patients, achieving an analysis that shows an increasing trend in predictions.

The combination of big data and deep learning is a world-shattering technology that can greatly impact any objective if used properly. With the availability of a large volume of health care datasets and progressions in deep learning techniques, systems are now well equipped to predict the future trend of any health problems. From the literature survey, we found the SVM was used to predict the heart failure rate without relating objective factors. Utilizing the intensity of important historical information in electronic health records (EHR), we have built a smart and predictive model utilizing long short-term memory (LSTM) and predict the future trend of heart failure based on that health record. Hence the fundamental commitment of this work is to predict the failure of the heart using an LSTM based on the patient's electronic medicinal information. We have analyzed a dataset containing the medical records of 299 heart failure patients collected at the Faisalabad Institute of Cardiology and the Allied Hospital in Faisalabad (Punjab, Pakistan). The patients consisted of 105 women and 194 men and their ages ranged from 40 and 95 years old. The dataset contains 13 features, which report clinical, body, and lifestyle information responsible for heart failure. We have found an increasing trend in our analysis which will contribute to advancing the knowledge in the field of heart stroke prediction.

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