Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification

Lung cancer accounts for approximately 20% of cancer deaths and is the second most common cancer among men and women, with an average age of diagnosis of 70 years. Early and accurate detection is crucial for improving patient outcomes through timely intervention and treatment. Enhancing lesion chara...

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書誌詳細
出版年:JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY
主要な著者: Jafery, Nurul Najiha; Sulaiman, Siti Noraini; Osman, Muhammad Khusairi; Karim, Noor Khairiah Abdul; Soh, Zainal Hisham Che; Isa, Nor Ashidi Mat
フォーマット: Article; Early Access
言語:English
出版事項: SPRINGER SINGAPORE PTE LTD 2025
主題:
オンライン・アクセス:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001438966000001
author Jafery
Nurul Najiha; Sulaiman
Siti Noraini; Osman
Muhammad Khusairi; Karim
Noor Khairiah Abdul; Soh
Zainal Hisham Che; Isa
Nor Ashidi Mat
spellingShingle Jafery
Nurul Najiha; Sulaiman
Siti Noraini; Osman
Muhammad Khusairi; Karim
Noor Khairiah Abdul; Soh
Zainal Hisham Che; Isa
Nor Ashidi Mat
Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
Engineering
author_facet Jafery
Nurul Najiha; Sulaiman
Siti Noraini; Osman
Muhammad Khusairi; Karim
Noor Khairiah Abdul; Soh
Zainal Hisham Che; Isa
Nor Ashidi Mat
author_sort Jafery
spelling Jafery, Nurul Najiha; Sulaiman, Siti Noraini; Osman, Muhammad Khusairi; Karim, Noor Khairiah Abdul; Soh, Zainal Hisham Che; Isa, Nor Ashidi Mat
Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY
English
Article; Early Access
Lung cancer accounts for approximately 20% of cancer deaths and is the second most common cancer among men and women, with an average age of diagnosis of 70 years. Early and accurate detection is crucial for improving patient outcomes through timely intervention and treatment. Enhancing lesion characterisation is key to advancing diagnostic accuracy. Deep learning provides a powerful tool for early diagnosis by enabling the development of sophisticated models that can accurately classify lung lesions in CT scans. This study investigates the effectiveness of two deep learning architectures for this purpose: a hybrid 1D-CNN-LSTM and a VGG16-1D-LSTM model. Both models classify lung lesions in CT scans using regression features and are evaluated with optimisers such as Adam, RMSprop, and SGD. Result reveal that the hybrid 1D-CNN-LSTM model with the Adam optimizer achieved 96% accuracy, 90% precision, 94.74% recall, and a 92.31% F1-score. The VGG16-1D-LSTM model with Adam also achieved 96% accuracy but with 85% precision, 100% recall, and a 91.89% F1-score. These findings suggest that the hybrid 1D-CNN-LSTM architecture with Adam optimisation offers a promising approach for accurate lung lesion classification, potentially improving early detection and patient outcomes in lung cancer cases.
SPRINGER SINGAPORE PTE LTD
1975-0102
2093-7423
2025


10.1007/s42835-025-02182-w
Engineering

WOS:001438966000001
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001438966000001
title Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
title_short Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
title_full Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
title_fullStr Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
title_full_unstemmed Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
title_sort Comparative Analysis of Hybrid 1D-CNN-LSTM and VGG16-1D-LSTM for Lung Lesion Classification
container_title JOURNAL OF ELECTRICAL ENGINEERING & TECHNOLOGY
language English
format Article; Early Access
description Lung cancer accounts for approximately 20% of cancer deaths and is the second most common cancer among men and women, with an average age of diagnosis of 70 years. Early and accurate detection is crucial for improving patient outcomes through timely intervention and treatment. Enhancing lesion characterisation is key to advancing diagnostic accuracy. Deep learning provides a powerful tool for early diagnosis by enabling the development of sophisticated models that can accurately classify lung lesions in CT scans. This study investigates the effectiveness of two deep learning architectures for this purpose: a hybrid 1D-CNN-LSTM and a VGG16-1D-LSTM model. Both models classify lung lesions in CT scans using regression features and are evaluated with optimisers such as Adam, RMSprop, and SGD. Result reveal that the hybrid 1D-CNN-LSTM model with the Adam optimizer achieved 96% accuracy, 90% precision, 94.74% recall, and a 92.31% F1-score. The VGG16-1D-LSTM model with Adam also achieved 96% accuracy but with 85% precision, 100% recall, and a 91.89% F1-score. These findings suggest that the hybrid 1D-CNN-LSTM architecture with Adam optimisation offers a promising approach for accurate lung lesion classification, potentially improving early detection and patient outcomes in lung cancer cases.
publisher SPRINGER SINGAPORE PTE LTD
issn 1975-0102
2093-7423
publishDate 2025
container_volume
container_issue
doi_str_mv 10.1007/s42835-025-02182-w
topic Engineering
topic_facet Engineering
accesstype
id WOS:001438966000001
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001438966000001
record_format wos
collection Web of Science (WoS)
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