Universiti Teknologi Malaysia Institutional Repository

DSPnet: a self-onn model for robust DSPN diagnosis from temperature maps.

Khandakar, Amith and Chowdhury, Muhammad E. H. and Ibne Reaz, Mamun and Kiranyaz, Serkan and Hasan, Anwarul and Rahman, Tawsifur and Md. Ali, Sawal Hamid and Shapiai At. Abd. Razak,, Mohd. Ibrahim and A. Bakar, Ahmad Ashrif and Podder, Kanchon Kanti and Chowdhury, Moajjem Hossain and Faisal, Md. Ahasan Atick (2023) DSPnet: a self-onn model for robust DSPN diagnosis from temperature maps. IEEE Sensors Journal, 23 (5). pp. 5370-5381. ISSN 1530-437X

Full text not available from this repository.

Official URL: http://dx.doi.org/10.1109/JSEN.2023.3235252

Abstract

Diabetic sensorimotor polyneuropathy (DSPN) leads to pain, diabetic foot ulceration (DFU), amputation, and death. The diagnosis of advanced DSPN to identify those at risk is key to preventing DFU and amputation. Alterations in foot pressure and temperature may help to detect DSPN and the risk of DFU. We have applied a robust machine-learning approach to identify patients with severe DSPN using standing foot temperature maps generated using temperature sensor data. A robust shallow operational neural network model DSPNet is proposed. The study utilized a labeled dataset from the University Hospital Magdeburg, Magdeburg, Germany, consisting of temperature sensor data from eight different points on the foot in seating and standing positions in patients with severe DSPN (n =25) and healthy controls (n =18). The proposed network achieved an F1 score of 90.3% for identifying patients with DSPN and outperformed current state-of-the-art deep-learning network methods. This is the first of its kind of research where the results confirm that temperature maps are not only effective in the detection of those at high risk of DFU but also in identifying patients with severe DSPN. Such sensors could easily be incorporated into smart insoles.

Item Type:Article
Uncontrolled Keywords:Deep learning; diabetic foot; diabetic sensorimotor polyneuropathy (DSPN); noninvasive diagnosis; plantar foot temperature map; self-operational neural network
Subjects:T Technology > T Technology (General) > T58.6-58.62 Management information systems
Divisions:Malaysia-Japan International Institute of Technology
ID Code:104946
Deposited By: Muhamad Idham Sulong
Deposited On:25 Mar 2024 09:43
Last Modified:25 Mar 2024 09:43

Repository Staff Only: item control page