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S. Parsnejad, Dávila-Montero, S., and Mason, A. J., Use of High-Frequency Pulses to Generate Unique Electrotactile Sensations for Real-Time Feedback in Wearable Sensory Systems, in 2020 IEEE International Symposium on Circuits and Systems (ISCAS), 2020.
S. Parsnejad, Power-Area Efficient Rapid-Response CMOS Frontend for High-Throughput Ion-Channel Sensor Array Microsystems, Michigan State University, 2017.
S. Parsnejad, Gtat, Y., Aridi, R., Brascamp, J. W., and Mason, A. J., Inciting high fidelity tactile sensations using a single electrotactile electrode pair, in 2019 9th International IEEE/EMBS Conference on Neural Engineering (NER), 2019.
S. Parsnejad, Li, H., and Mason, A. J., Compact CMOS amperometric readout for nanopore arrays in high throughput lab-on-CMOS, in Circuits and Systems (ISCAS), 2016 IEEE International Symposium on, 2016.
S. Parsnejad, Dávila-Montero, S., and Mason, A. J., Evaluating Distinct Sensations by Modulating High-Frequency Electrotactile Pulses for Unobtrusive Communication with IoT Devices, in 2020 IEEE 6th World Forum on Internet of Things (WF-IoT), 2020.
S. Parsnejad, Lin, T. - Y., Hu, Y., Wan, H., Ashoori, E., Lillehoj, P., and Mason, A., Compact, adaptive, multichannel electrochemical instrument for point-of-care sensing, in Healthcare Innovation Point-Of-Care Technologies Conference (HI-POCT), 2016 IEEE, 2016.
S. Parsnejad, Ashoori, E., and Mason, A. J., Multi-Electrode electrotactile Stimulation to Combat Skin Dependency in Machine-to-Human Feedback, in 2021 IEEE International Midwest Symposium on Circuits and Systems (MWSCAS), 2021.
S. Parsnejad and Mason, A. J., CMOS Nano-Pore Technology, in CMOS Circuits for Biological Sensing and Processing, Springer, Cham, 2018, pp. 1–21.