Carolina Remke

Webinar über Cuff-Elektroden für die Erfoschung des Peripheren Nervensystems

Nehmen Sie am 8. Februar um 17h an unserem Webinar zum Thema “Arbeiten mit Cuff-Elektroden in der in vivo Erforschung des Peripheren Nervensystems” auf Inside Scientific teil (in englischer Sprache)! Experten wie Dr. Téa Tsaava vom Feinstein Institute, New York, Christopher Langdale von der Duke University, Durham und CorTec CTO Dr. Martin Schüttler diskutieren neuartige […]

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Join Our Webinar on Utilizing Nerve Cuffs for Peripheral Nerve Research

On February 8 at 17h CET / 11 a.m. EST we are hosting the webinar “Utilizing Nerve Cuffs for in vivo Peripheral Nerve Research” on Inside Scientific. Experts like Dr. Téa Tsaava from the Feinstein Institute, New York,  Christopher Langdale from Duke University, Durham, and CorTec CTO Dr. Martin Schüttler discuss novel cuff electrodes for

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Wyss Center announces collaboration with CorTec

CorTec and the Wyss Center, a non-profit neurotechnology translation organization, have signed a partnership agreement. They will collaborate in developing a novel, minimally invasive brain monitoring and stimulation device. The partners will work together on research, design and development of a device for continuous, long-term, monitoring of the brain’s electrophysiological signals for clinical diagnostic and

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Wyss Center und CorTec kündigen Kooperation an

CorTec und das Wyss Center, eine non-profit Organisation für den Transfer von Neurotechnologie mit Sitz in Genf, haben einen Kooperationsvertrag geschlossen. Ziel der Partnerschaft ist es, ein neuartiges Implantat für Monitoring und Stimulation von Hirnaktivität zu entwickeln. Die Partner kooperieren hinsichtlich der Erforschung, des Designs und der Entwicklung eines Systems für kontinuierliches Langzeit-Monitoring der elektrophysiologischen

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Wir besuchen die NANS in Las Vegas

Dieses Jahr besuchen wir das jährliche Treffen der North American Neuromodulation Society vom 11. bis zum 14. Januar in Las Vegas. Wir freuen uns Sie bei unserer ePoster Präsentation in der ‘Next Generation Brain-Devices’ Session zu treffen! Dr. Fabian Kohler: ‘An Implantable Brain‐Computer Interface for Investigation of Closed‐Loop Therapies’, ePoster Präsentation – Samstag, 13. Januar,

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We are visiting the Neuromodulation Meeting in Las Vegas

This year we are visiting the 21st Annual Meeting of the North American Neuromodulation Society from 11th – 12th January in Las Vegas. Listen to our talk in the ‘Next Generation Brain Devices’  Session: Dr. Fabian Kohler: ‘An Implantable Brain‐Computer Interface for Investigation of Closed‐Loop Therapies’, ePoster Presentation – Saturday 13 January, 7:15-7:25 at Caesars

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SPECIFICATIONS

FEATURE 

Recording channels 

Sampling rate 

Sampling dynamic range 

High pass filter cut-off 

Low pass filter cut-off 

Amplifier band pass gain 

Band pass roll-off 

Reference


Stimulation 

Stimulation channels 

Current 

Current source 

Pulse width 

Power supply 

Wireless data transmission 

Closed Loop latency

VALUE

32 

1 kHz 

16 bit (74 nV smallest increment) 

ca. 2 Hz 

325 Hz 

Adjustable: 100-750 

20 dB/dec 

Any (subset) of the recording channels selectable by software or one dedicated hard-wired additional contact 

Current-controlled, biphasic, rectangular, asymmetric stimulus pulses (cathodic amplitude with pulse width followed by an anodic counter pulse of 1/4x amplitude and 4x pulse width) 

 32 

Max. -6 mA / +1.5 mA (24 µA increments) within

 compliance voltage range of -11 V to +5 V 

Can be directed to any of the 32 electrode contacts 

Negative phase: 10 µs – 2,500 µs

Wireless inductive, 120-140 kHz

Bi-directional, radio frequency in 2400-2483.5 MHz band ≤ 40 ms

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