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Article type: Research Article
Authors: Senthilkumar, T.a; * | Kumarganesh, S.b | Sivakumar, P.a | Periyarselvam, K.a
Affiliations: [a] GRT Institute of Engineering and Technology, Tiruttani, Tamilnadu, India | [b] Knowledge Institute of Technology, Salem, India
Correspondence: [*] Corresponding author. T. Senthilkumar, Associate Professor, GRT Institute of Engineering and Technology, Tiruttani, Tamilnadu, India. E-mail: [email protected].
Abstract: Alzheimer’s disease (A.D.) is the most widespread type of Dementia, and it is not a curable neurodegenerative disease that affects millions of older people. Researchers were able to use their understanding of Alzheimer’s disease risk variables to develop enrichment processes for longitudinal imaging studies. Using this method, they reduced their sample size and study time. This paper describes the primitive detective of Alzheimer’s diseases using Neuroimaging techniques. Several preprocessing methods were used to ensure that the dataset was ready for subsequent feature extraction and categorization. The noise was reduced by converting and averaging many scan frames from real to DCT space. Both sides of the averaged image were filtered and combined into a single shot after being converted to real space. InceptionV3 and DenseNet201 are two pre-trained models used in the suggested model. The PCA approach was used to select the traits, and the resulting explained variance ratio was 0.99The Simons Foundation Autism Research Initiative (SFARI)—Simon’s Simplex Collection (SSC)—and UCI machine learning datasets showed that our method is faster and more successful at identifying complete long-risk patterns when compared to existing methods.
Keywords: Alzheimer’s disease, machine learning, SVM, neuroimaging techniques, MRI
DOI: 10.3233/JIFS-220628
Journal: Journal of Intelligent & Fuzzy Systems, vol. 43, no. 4, pp. 4431-4444, 2022
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