Article ID Journal Published Year Pages File Type
866735 Biosensors and Bioelectronics 2014 6 Pages PDF
Abstract

•A new system that can image wide area by multiple micro image sensors.•Concatenated implantable micro sensors enable less-invasive fluorescence imaging.•Multiple-area imaging system visualized a neural activity in living animal brain.

Measurement of brain activity in multiple areas simultaneously by minimally invasive methods contributes to the study of neuroscience and development of brain machine interfaces. However, this requires compact wearable instruments that do not inhibit natural movements. Application of optical potentiometry with voltage-sensitive fluorescent dye using an implantable image sensor is also useful. However, the increasing number of leads required for the multiple wired sensors to measure larger domains inhibits natural behavior. For imaging broad areas by numerous sensors without excessive wiring, a web-like sensor that can wrap the brain was developed. Kaleidoscopic potentiometry is possible using the imaging system with concatenated sensors by changing the alignment of the sensors. This paper describes organization of the system, evaluation of the system by a fluorescence imaging, and finally, functional brain fluorescence plurimetry by the sensor. The recorded data in rat somatosensory cortex using the developed multiple-area imaging system compared well with electrophysiology results.

Related Topics
Physical Sciences and Engineering Chemistry Analytical Chemistry
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