DocumentCode
2997803
Title
Novel neural interface for modulation of neuronal activity based on millimeter wave exposure
Author
Pikov, Victor ; Siegel, Peter H.
Author_Institution
Neural Eng. Program, Huntington Medial Res. Institutes, Pasadena, CA, USA
fYear
2011
fDate
7-8 April 2011
Firstpage
147
Lastpage
151
Abstract
Realizing a minimally-invasive interface with the brain for treating neurological disorders represents a considerable challenge for modern medicine. Implantable neuromodulation devices have been successfully used for treating a variety of neurological disorders, such as Parkinson´s disease, dystonia, epilepsy, chronic pain, and migraine. However, the implantation trauma and the risks associated with chronic presence of the implant in the nervous tissue have limited the widespread use of these devices. Minimally-invasive technologies based on the surface electrical stimulation and transcranial magnetic stimulation have been developed to modulate the neuronal excitability in the brain, but their spatial resolution, limited to several centimeters, is insufficient for selective stimulation of millimeter-scale neuronal populations in the brain. Here, we describe some unique benefits afforded by a novel non-contact neuromodulation technique that employs millimeter waves. Using the leech ganglion preparation, we demonstrate a profound suppression of neuronal excitability induced by a low-power millimeter wave exposure. Based on these findings, we discuss the possible mechanisms and implications for developing a minimally-invasive neuromodulation therapy.
Keywords
biological effects of fields; biomedical electrodes; diseases; medical disorders; neurophysiology; prosthetics; radiation therapy; Parkinson´s disease; chronic pain; dystonia; electrical stimulation; epilepsy; implantable neuromodulation devices; implantation trauma; migraine; millimeter wave exposure; minimally-invasive neuromodulation therapy; neural interface; neurological disorders; neuronal activity; neuronal excitability; noncontact neuromodulation technique; transcranial magnetic stimulation; Biomembranes; Electrical stimulation; Millimeter wave technology; Neurons; Optical waveguides; Plasmas; Temperature measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Life Science Systems and Applications Workshop (LiSSA), 2011 IEEE/NIH
Conference_Location
Bethesda, MD
Print_ISBN
978-1-4577-0421-5
Type
conf
DOI
10.1109/LISSA.2011.5754180
Filename
5754180
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