A Single-Chip Full-Duplex High Speed Transceiver for Multi-Site Stimulating and Recording Neural Implants
暂无分享,去创建一个
Mohamad Sawan | Leslie A. Rusch | Benoit Gosselin | Hadi Bahrami | Seyed Abdollah Mirbozorgi | L. Rusch | B. Gosselin | M. Sawan | H. Bahrami | S. Mirbozorgi
[1] D W Moran,et al. A chronic generalized bi-directional brain–machine interface , 2011, Journal of neural engineering.
[2] Wen Li,et al. Opto-μECoG Array: A Hybrid Neural Interface With Transparent μECoG Electrode Array and Integrated LEDs for Optogenetics , 2013, IEEE Transactions on Biomedical Circuits and Systems.
[3] Jan M. Rabaey,et al. A 0.013 ${\hbox {mm}}^{2}$, 5 $\mu\hbox{W}$ , DC-Coupled Neural Signal Acquisition IC With 0.5 V Supply , 2012, IEEE Journal of Solid-State Circuits.
[4] Leslie A. Rusch,et al. A low-power 2.4-GHz receiver for wireless implantable neural stimulators , 2014, 2014 IEEE International Symposium on Circuits and Systems (ISCAS).
[5] Linh Hoang,et al. An Integrated 256-Channel Epiretinal Prosthesis , 2010, IEEE Journal of Solid-State Circuits.
[6] Maysam Ghovanloo,et al. Optimization of Data Coils in a Multiband Wireless Link for Neuroprosthetic Implantable Devices , 2010, IEEE Transactions on Biomedical Circuits and Systems.
[7] Mohamad Sawan,et al. A transcutaneous power transfer interface based on a multicoil inductive link , 2012, 2012 Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[8] Jan M. Rabaey,et al. 24.1 A miniaturized 64-channel 225μW wireless electrocorticographic neural sensor , 2014, 2014 IEEE International Solid-State Circuits Conference Digest of Technical Papers (ISSCC).
[9] Jun Tan,et al. A 2.4 GHz ULP Reconfigurable Asymmetric Transceiver for Single-Chip Wireless Neural Recording IC , 2014, IEEE Transactions on Biomedical Circuits and Systems.
[10] Teresa H. Y. Meng,et al. HermesE: A 96-Channel Full Data Rate Direct Neural Interface in 0.13 $\mu$ m CMOS , 2012, IEEE Journal of Solid-State Circuits.
[11] Eran Stark,et al. Large-scale, high-density (up to 512 channels) recording of local circuits in behaving animals. , 2014, Journal of neurophysiology.
[12] Refet Firat Yazicioglu,et al. Ultra-high-density in-vivo neural probes , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[13] Moo Sung Chae,et al. A 128-Channel 6mW Wireless Neural Recording IC with On-the-Fly Spike Sorting and UWB Tansmitter , 2008, 2008 IEEE International Solid-State Circuits Conference - Digest of Technical Papers.
[14] H.-H. Hsieh,et al. Gain-Enhancement Techniques for CMOS Folded Cascode LNAs at Low-Voltage Operations , 2008, IEEE Transactions on Microwave Theory and Techniques.
[15] Maysam Ghovanloo,et al. Design and Optimization of a 3-Coil Inductive Link for Efficient Wireless Power Transmission , 2011, IEEE Transactions on Biomedical Circuits and Systems.
[16] J.R. Long,et al. A 1.2 V Reactive-Feedback 3.1–10.6 GHz Low-Noise Amplifier in 0.13 $\mu{\hbox {m}}$ CMOS , 2007, IEEE Journal of Solid-State Circuits.
[17] Luke Theogarajan,et al. A 10pJ/bit 135Mbps IR-UWB transmitter using pulse position modulation and with on-chip LDO regulator in 0.13µm CMOS for biomedical implants , 2013, 2013 IEEE Topical Conference on Biomedical Wireless Technologies, Networks, and Sensing Systems.
[18] Khalil Najafi,et al. A Low Power Light Weight Wireless Multichannel Microsystem for Reliable Neural Recording , 2014, IEEE Journal of Solid-State Circuits.
[19] Jonathan D. Zuegel,et al. Distributed Waveform Generator: A New Circuit Technique for Ultra-Wideband Pulse Generation, Shaping and Modulation , 2009, IEEE Journal of Solid-State Circuits.
[20] A. Schwartz,et al. High-performance neuroprosthetic control by an individual with tetraplegia , 2013, The Lancet.
[21] Teresa H. Y. Meng,et al. A programmable pulse UWB transmitter with 34% energy efficiency for multichannel neuro-recording systems , 2010, IEEE Custom Integrated Circuits Conference 2010.
[22] Reiji Nakajima,et al. A miniaturized broadband lumped element circulator for reconfigurable front-end system , 2014, 2014 IEEE MTT-S International Microwave Symposium (IMS2014).
[23] Saad Mutashar,et al. Analysis and Optimization of Spiral Circular Inductive Coupling Link for Bio-Implanted Applications on Air and within Human Tissue , 2014, Sensors.
[24] Jan M. Rabaey,et al. A Minimally Invasive 64-Channel Wireless μECoG Implant , 2015, IEEE Journal of Solid-State Circuits.
[25] Mohamad Sawan,et al. High-Speed OQPSK and Efficient Power Transfer Through Inductive Link for Biomedical Implants , 2010, IEEE Transactions on Biomedical Circuits and Systems.
[26] Leslie A. Rusch,et al. BER performance of implant-to-air high-speed UWB data communications for neural recording systems , 2014, 2014 36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society.
[27] Guillaume Charvet,et al. WIMAGINE: Wireless 64-Channel ECoG Recording Implant for Long Term Clinical Applications , 2015, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[28] Xiaoya Fan,et al. A low-power 3.1–5GHz ultra-wideband low noise amplifier utilizing Miller Effect , 2009, 2009 IEEE International Conference on Ultra-Wideband.
[29] Lei Liu,et al. A 100-Channel 1-mW Implantable Neural Recording IC , 2013, IEEE Transactions on Circuits and Systems I: Regular Papers.
[30] Mario Konijnenburg,et al. A 2.4 GHz ULP OOK Single-Chip Transceiver for Healthcare Applications , 2011, IEEE Transactions on Biomedical Circuits and Systems.
[31] Pedram Mohseni,et al. A high-speed circuit architecture for IR-UWB transmission of fast-scan cyclic voltammetry in 0.35 εm CMOS , 2010, 2010 Annual International Conference of the IEEE Engineering in Medicine and Biology.
[32] Mohamad Sawan,et al. A Mixed-Signal Multichip Neural Recording Interface With Bandwidth Reduction , 2009, IEEE Transactions on Biomedical Circuits and Systems.
[33] Mohamad Sawan,et al. A Smart Cage With Uniform Wireless Power Distribution in 3D for Enabling Long-Term Experiments With Freely Moving Animals , 2016, IEEE Transactions on Biomedical Circuits and Systems.
[34] Mohamed Ghorbel,et al. A wireless data and power recovery for biomedical Microsystems implants , 2011, ICM 2011 Proceeding.
[35] Oguz Atasoy,et al. Wireless Energy and Data Transfer for In-Vivo Epileptic Focus Localization , 2013, IEEE Sensors Journal.
[36] Gianluca Lazzi,et al. On the Design of Efficient Multi-Coil Telemetry System for Biomedical Implants , 2013, IEEE Transactions on Biomedical Circuits and Systems.
[37] M. Ghovanloo,et al. A Wireless Implantable Multichannel Microstimulating System-on-a-Chip With Modular Architecture , 2007, IEEE Transactions on Neural Systems and Rehabilitation Engineering.
[38] N. Kuster,et al. The dependence of electromagnetic energy absorption upon human head tissue composition in the frequency range of 300-3000 MHz , 2000 .
[39] Leslie A. Rusch,et al. Biological Channel Modeling and Implantable UWB Antenna Design for Neural Recording Systems , 2015, IEEE Transactions on Biomedical Engineering.
[40] Ondrej Novak,et al. Wireless ultra-wide-band data link for biomedical implants , 2009, 2009 Ph.D. Research in Microelectronics and Electronics.
[41] Ming Yin,et al. A 100-Channel Hermetically Sealed Implantable Device for Chronic Wireless Neurosensing Applications , 2013, IEEE Transactions on Biomedical Circuits and Systems.
[42] S.A. Mahmoud,et al. A fully-integrated linearized CMOS bidirectional distributed amplifier as UWB active circulator , 2008, 2008 International Conference on Microelectronics.
[43] Mau-Chung Frank Chang,et al. Wireless Gigabit Data Telemetry for Large-Scale Neural Recording , 2015, IEEE Journal of Biomedical and Health Informatics.
[44] Fan Zhang,et al. Design of a 300-mV 2.4-GHz Receiver Using Transformer-Coupled Techniques , 2013, IEEE Journal of Solid-State Circuits.
[45] Karim Abdelhalim,et al. The 128-Channel Fully Differential Digital Integrated Neural Recording and Stimulation Interface , 2010, IEEE Transactions on Biomedical Circuits and Systems.
[46] David D. Wentzloff,et al. Pulse-based ultra-wideband transmitters for digital communication , 2007 .