Ultrasonically Powered Neuromodulation Platform Intended for Spatially and Directionally Selective Electrical Stimulation
Kolovou Kouri, K.; Holzapfel, L.; Ferreira Dias, D.; Meixner, L.; Serdijn, W. A.; Giagka, V.
Show abstract
Vagus nerve stimulation (VNS), a well-established application of electrical neuromodulation, has been effective in treating dis-orders such as epilepsy and depression. Recent neuroscientific advancements have identified further potential in VNS, calling for technical advancements to explore these possibilities. To address this, we developed a neuromodulation platform that can perform both neural activity excitation and inhibition, to further explore spatially and directionally selective stimulation. The platform can be powered wirelessly through ultrasound and includes a charge balancing mechanism to enhance stimulation safety. The platform performs biphasic and monophasic voltage-controlled stimulation, using 6 electrodes for excitation and 2 for inhibition. The pulse width can be varied between 0 and 1500 {micro}s, and the pulse repetition rate between 1 Hz and 1 kHz for excitation and 1 kHz to 50 kHz for inhibition. The implemented charge balancing mechanism uses a digital PID controller to reduce the voltage offset at the stimulation site to values as low as 2 mV. The introduced neuromodulation platform provides a versatile experimental tool intended for, but not limited to, VNS in pre-clinical and clinical settings. It is designed using only commercially available components and is easily reproducible, allowing to explore the possibilities of VNS while identifying the necessary components and processes for developing a miniaturized version.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Wireless networks of injectable microelectronic stimulators based on rectification of volume conducted high frequency currents 97%
- A Block-Capable and Module-Extendable 4-Channel Stimulator for Acute Neurophysiology 97%
- Neuromodulation of a peripheral nerve using fully polymeric cuff electrodes: Understanding predictability of selective stimulation 95%
Similar papers in this journal
- A low-cost protocol for reconditioning of deep-brain neural microelectrodes with material failure for electrophysiology recording 94%
- Biophysical modeling of the electric field magnitude and distribution induced by electrical stimulation with intracerebral electrodes 93%
- Optogenetic Modulation of Cortical Neurons Using Organic Light Emitting Diodes (OLEDs) 93%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Optimal Multichannel Artifact Prediction and Removal for Brain Machine Interfaces and Neural Prosthetics 95%
- Investigating the Efficacy of Peripheral Nerve Stimulation and Spinal Cord Stimulation for Providing Natural Somatosensory Feedback in Bionic Prostheses for Transhumeral Amputees 93%
- Spiking neural networks provide accurate, efficient and robust models for whisker stimulus classification and allow for inter-individual generalization 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.