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Integrated genome regulation of brain development: Targeting ontogenomic networks in schizophrenia via nanomachine-genome optical communications

  • SUNY Buffalo
  • Maria Sklodowska-Curie Institute of Oncology

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Major breakthroughs in the field of genomics, embryonic stem cell (ESC) biology, optogenetics and biophotonics are enabling the control and monitoring of biological processes through light. By incorporating light-actuated/light-emitting proteins into cells, key biological processes at the sub-cellular level can be controlled and monitored in real time. This article describes a new type panontogenic, i.e., affecting the entire ontogeny or development of an individual organism from its earliest stage to maturity, regulation of the developmental genome and the perspective for its control with nanomachines through optical communication.

Original languageEnglish
Title of host publicationProceedings of the 5th ACM International Conference on Nanoscale Computing and Communication, NANOCOM 2018
PublisherAssociation for Computing Machinery, Inc
ISBN (Electronic)1450357113, 9781450357111
DOIs
StatePublished - Sep 5 2018
Event5th ACM International Conference on Nanoscale Computing and Communication, ACM NanoCom 2018 - Reykjavik, Iceland
Duration: Sep 5 2018Sep 7 2018

Publication series

NameProceedings of the 5th ACM International Conference on Nanoscale Computing and Communication, NANOCOM 2018

Conference

Conference5th ACM International Conference on Nanoscale Computing and Communication, ACM NanoCom 2018
Country/TerritoryIceland
CityReykjavik
Period09/5/1809/7/18

Keywords

  • Brain Machine Interfaces
  • Genomics
  • Nanonetworking
  • Nanophotonics

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