DocumentCode
2779818
Title
Joining microelectronics and microionics: Nerve cells and brain tissue on semiconductor chips
Author
Fromherz, Peter
Author_Institution
Max Planck Inst. for Biochem., Munich
fYear
2007
fDate
11-13 Sept. 2007
Firstpage
36
Lastpage
45
Abstract
The direct electrical interfacing of semiconductor chips with individual nerve cells and with brain tissue is considered. At first, the structure of the cell-chip contact is described and then the electrical coupling is characterized between ion channels, the electrical elements of nerve cells, and transistors and capacitors of silicon chips. On that basis the signal transmission between microelectronics and microionics is implemented in both directions. Simple hybrid neuroelectronic systems are assembled with neuron pairs and with small neuronal networks. Finally, the interfacing with capacitors and transistors is extended to brain tissue on silicon. The application of CMOS chips with capacitively coupled recording and stimulation sites allows an imaging of neuronal activity with high spatiotemporal resolution. Goal of the work in an integration of neuronal network dynamics and digital electronics on a microscopic level for applications in brain research, medical prosthetics and information technology.
Keywords
CMOS integrated circuits; brain; neural nets; neurophysiology; CMOS chips; brain tissue; cell-chip contact; digital electronics; direct electrical interfacing; electrical coupling; hybrid neuroelectronic systems; microelectronics; microionics; nerve cells; neuronal network dynamics; semiconductor chips; Assembly systems; Biological neural networks; Brain; Capacitors; Contacts; Couplings; High-resolution imaging; Microelectronics; Neurons; Silicon;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid State Device Research Conference, 2007. ESSDERC 2007. 37th European
Conference_Location
Munich
ISSN
1930-8876
Print_ISBN
978-1-4244-1123-8
Electronic_ISBN
1930-8876
Type
conf
DOI
10.1109/ESSDERC.2007.4430878
Filename
4430878
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