An implantable ENG detector with in-system velocity selective recording (VSR) capability

Author:

Clarke Chris,Rieger Robert,Schuettler Martin,Donaldson Nick,Taylor JohnORCID

Funder

European Comission

Publisher

Springer Science and Business Media LLC

Subject

Computer Science Applications,Biomedical Engineering

Reference14 articles.

1. Brindley G, Rushton D (eds) (1995) Clinical neurology: neuroprostheses, vol 14, no 1. Baillieres-Tindall, London, pp 21–34

2. Chew DJ, Zhu L et al (2013) A microchannel neuroprosthesis for bladder control after spinal cord injury in rat. Sci Trans Med 5:210ra155

3. Clarke C, Xu X, Rieger R, Taylor J, Donaldson N (2009) An implanted system for multi-site nerve cuff-based ENG recording using velocity selectivity. Analog Integr Circuit Sign Process 58(2):91–104

4. Donaldson PEK (1983) The Cooper cable—an implantable multiconductor cable for neurological prostheses. MBEC 21(3):371–374

5. Haugland M, Hoffer J (1994) Artifact-free sensory nerve signals obtained from cuff electrodes during functional electrical stimulation of nearby muscles. IEEE Trans Rehabil Eng 2:37–40

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1. CMOS Analogue Velocity-Selective Neural Processing System;Electronics;2024-01-31

2. An Analog Front-End for Non-Invasive Cutaneous Neural Signal Acquisition and Latency Quantification;2020 IEEE 63rd International Midwest Symposium on Circuits and Systems (MWSCAS);2020-08

3. An Integrated Signal Acquisition AFE for Latency Quantification of ENG Signals;2019 IEEE MIT Undergraduate Research Technology Conference (URTC);2019-10-11

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