[1] Fardoost, Ali, Koosha Karimi, Aratrika Bhattacharya, Viresh Patel, Matthew Lucien Saintyl, Samanthia Grace Welsh, and Mehdi Javanmard. "From Biomarkers to Biosensors: Transforming Comorbidity Management in Dialysis Care." Sensors 26, no. 6 (2026): 1929. https://doi.org/10.3390/s26061929
[2] Fardoost, Ali, and Mehdi Javanmard. "Optimizing Nanowell Biosensor Fabrication: Evaluation of Metal Deposition and Oxide Layer Modification." Biosensors and Bioelectronics: X (2025): 100713. https://doi.org/10.1016/j.biosx.2025.100713
[3] Fardoost, A., Karimi, K., Singh, J. et al. Enhancing glaucoma care with smart contact lenses: An overview of recent developments. Biomed Microdevices 27, 18 (2025). https://doi.org/10.1007/s10544-025-00740-7
[4] Hossein Ataee, Mohammad Seraj, Reihane Mahdavi, Ali Fardoost, Abdollah Shafee1, Khosro Shamsi, Mohammadreza Fattahi, Hojat Ebrahiminik, Parisa Hoseinpour, Shahram Sane, Mehran Ghazimoghaddam, Mohammad Esmaeel Akbari, Mohammad Abdolahad. 2025. Impedance-based Detection of Cervical Lymph-node Involvement in Thyroid Cancer Patients: A Human Model Study. Surgery Today (2025): 1-9. https://doi.org/10.1007/s00595-025-03033-x
[5] Aghaei F, Delshad B, Mahdavi R, Fardoost A, Hajighasemi F, et al. Real-time Monitoring of Peripheral Blood After Electrochemical Therapy by Electrical Impedance Spectroscopy: A Clinical Trial Study. Int J Cancer Manag. 2024; 17(1): e156446. https://doi.org/10.5812/ijcm-156446
[6] Fardoost, Ali, Koosha Karimi, Harshitha Govindaraju, Pegah Jamali, and Mehdi Javanmard. 2024. Applications of microfluidics in mRNA vaccine development: A review. Biomicrofluidics 18, no. 6 (2024). https://doi.org/10.1063/5.0228447
[7] Karimi, K.; Fardoost, A.; Mhatre, N.; Rajan, J.; Boisvert, D.; Javanmard, M. A Thorough Review of Emerging Technologies in Micro- and Nanochannel Fabrication: Limitations, Applications, and Comparison. Micromachines 2024, 15, 1274. https://doi.org/10.3390/mi15101274
[8] Karimi, K.; Fardoost, A.; Javanmard, M. Comprehensive Review of FinFET Technology: History, Structure, Challenges, Innovations, and Emerging Sensing Applications. Micromachines 2024, 15, 1187. https://doi.org/10.3390/mi15101187
[9] Fardoost, A.; Raji, H.; Javanmard, M. Optimization of Nanowell-Based Label-Free Impedance Biosensor Based on Different Nanowell Structures. Biosensors 2024, 14, 426. https://doi.org/10.3390/bios14090426
[10] Beheshti Firoozabadi, J., Mahdavi, R., Shamsi, K., Ataee, H., Shafiee, A., Ebrahiminik, H., Chegini, H., Hoseinpour, P., Moradi, A., Yousefpour, N., Aghaei, F., Fardoost, A., Ghelichli, A., Mokhtari Dowlatabad, H., Hajighasemi, F., Sami, N., Rouhollah Miri, S., Akbari, M. E., & Abdolahad, M. (2022). Intraoperative Assessment of High-Risk Thyroid Nodules Based on Electrical Impedance Measurements: A Feasibility Study. Diagnostics, 12(12), 2950. https://doi.org/10.3390/diagnostics12122950
[1] Ali Fardoost, Abuzar Nikzad, and Mehdi Javanmard. Rapid label-free nanowell biosensor enables robust sepsis screening via serum IL-6 quantification in minutes.