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Neuronal decoding of decreased blood sugar levels: A first step towards closed-loop bioelectronic diabetes treatment

A central vision of bioelectronic medicine is to find ways to regulate body states through electric interactions with the nervous system rather than through administration of pharmaceuticals. Diabetes is one of the first major targets for this novel approach: Even the most advanced existing pharmaceutical therapies are still error-prone and complicated, often leaving patients with

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Electrodes Tailored to your Application: Adjustable Degrees of Flexibility

Our °AirRay Electrode Technology allows us to manufacture electrodes that are tailored to your specific needs. The degree of flexibility of the electrodes plays an important role for many applications. Our proprietary laser-aided manufacturing process enables us to vary the flexibility of our electrodes from very soft to harder versions. Our new video gives you an impression

Electrodes Tailored to your Application: Adjustable Degrees of Flexibility Read More »

Wireless Neuromodulation with CorTec Cuff Electrodes and novel ‘Electroparticles’

One of the major sources for complications in chronic neuromodulation are the wires connecting the different parts of the systems, or even penetrating the skin. They account for frequent device failures due to wire breaks and, especially when penetrating the skin, are a permanent risk of tissue irritations or infections. To overcome these problems, a

Wireless Neuromodulation with CorTec Cuff Electrodes and novel ‘Electroparticles’ Read More »

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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