1,724,329 research outputs found
Fate of adipocyte progenitors during adipogenesis in mice fed a high-fat diet
富山大学博士(医学)Article富山大学・富医薬博甲第388号・MUHAMMAD BILAL・2022/03/23
公開論文
Muhammad Bilal, Allah Nawaz, Tomonobu Kado, Muhammad Rahil Aslam, Yoshiko Igarashi, Ayumi Nishimura, Yoshiyuki Watanabe, Takahide Kuwano, Jianhui Liu, Hiroyuki Miwa, Takumi Era, Koichi Ikuta, Johji Imura, Kunimasa Yagi, Takashi Nakagawa, Shiho Fujisaka, Kazuyuki Tobe,
Fate of adipocyte progenitors during adipogenesis in mice fed a high-fat diet,Molecular Metabolism,Volume 54,2021,101328,
ISSN 2212-8778,
https://doi.org/10.1016/j.molmet.2021.101328
Meta-Swin: Lightweight Image Super-Resolution Swin Transformer for Metaverse Applications
DeepIOD: Towards A Context-Aware Indoor–Outdoor Detection Framework Using Smartphone Sensors
Accurate indoor–outdoor detection (IOD) is essential for location-based services, context-aware computing, and mobile applications, as it enhances service relevance and precision. However, traditional IOD methods, which rely only on GPS data, often fail in indoor environments due to signal obstructions, while IMU data are unreliable on unseen data in real-time applications due to reduced generalizability. This study addresses this research gap by introducing the DeepIOD framework, which leverages IMU sensor data, GPS, and light information to accurately classify environments as indoor or outdoor. The framework preprocesses input data and employs multiple deep neural network models, combining outputs using an adaptive majority voting mechanism to ensure robust and reliable predictions. Experimental results evaluated on six unseen environments using a smartphone demonstrate that DeepIOD achieves significantly higher accuracy than methods using only IMU sensors. Our DeepIOD system achieves a remarkable accuracy rate of 98–99% with a transition time of less than 10 ms. This research concludes that DeepIOD offers a robust and reliable solution for indoor–outdoor classification with high generalizability, highlighting the importance of integrating diverse data sources to improve location-based services and other applications requiring precise environmental context awareness
sj-pdf-3-pie-10.1177_09544089221126439 - Supplemental material for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation
Supplemental material, sj-pdf-3-pie-10.1177_09544089221126439 for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation by Awatif Alhowaity, Yasir Mehmood, Haneen Hamam and Muhammad Bilal in Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering</p
sj-pdf-1-pie-10.1177_09544089221126439 - Supplemental material for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation
Supplemental material, sj-pdf-1-pie-10.1177_09544089221126439 for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation by Awatif Alhowaity, Yasir Mehmood, Haneen Hamam and Muhammad Bilal in Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering</p
sj-pdf-5-pie-10.1177_09544089221126439 - Supplemental material for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation
Supplemental material, sj-pdf-5-pie-10.1177_09544089221126439 for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation by Awatif Alhowaity, Yasir Mehmood, Haneen Hamam and Muhammad Bilal in Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering</p
sj-pdf-2-pie-10.1177_09544089221126439 - Supplemental material for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation
Supplemental material, sj-pdf-2-pie-10.1177_09544089221126439 for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation by Awatif Alhowaity, Yasir Mehmood, Haneen Hamam and Muhammad Bilal in Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering</p
sj-docx-1-pie-10.1177_09544089221076592 - Supplemental material for Thermal investigation of peristaltic pumping of modified hybrid nanofluid (Al2O3−TiO2−Cu)/H2O) through a complex wavy convergent channel with electro-magneto-hydrodynamic phenomenon
Supplemental material, sj-docx-1-pie-10.1177_09544089221076592 for Thermal investigation of peristaltic pumping of modified hybrid nanofluid (Al2O3−TiO2−Cu)/H2O) through a complex wavy convergent channel with electro-magneto-hydrodynamic phenomenon by Khurram Javid, Muhammad Bilal, Nasir Ali and Sami Ullah Khan in Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering</p
sj-pdf-4-pie-10.1177_09544089221126439 - Supplemental material for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation
Supplemental material, sj-pdf-4-pie-10.1177_09544089221126439 for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation by Awatif Alhowaity, Yasir Mehmood, Haneen Hamam and Muhammad Bilal in Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering</p
sj-pdf-8-pie-10.1177_09544089221126439 - Supplemental material for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation
Supplemental material, sj-pdf-8-pie-10.1177_09544089221126439 for Radiative flow of nanofluid past a convected vertical Riga plate with activation energy and nonlinear heat generation by Awatif Alhowaity, Yasir Mehmood, Haneen Hamam and Muhammad Bilal in Proceedings of the Institution of Mechanical Engineers, Part E: Journal of Process Mechanical Engineering</p
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