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Biological Information Processing in Single Microtubules
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In: DTIC (2014)
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Abstract:
In biology textbooks, we are taught to believe that biology is all about chemical reactions. However, recent discovery of electromagnetic sensing and antenna like communication of key biomaterials demand for the existence of a world of physical communication and energy exchange squarely parallel to the chemical only biology believed to date. This finding suggests that so-called safe mobile communications \201100 kHz to 300 GHz\202 across the globe are not safe anymore. The discovery noted above also unravels that from basic protein molecules to the giant biological structure; every part of an integrated biological system absorbs and radiates to communicate in a distinct frequency band. This means, multiple frequency bands operate simultaneously in a biological system and if energy is injected at a local part of any band is distributed all over the entire system. Thus, the biological operational mechanisms and its evolutions are not discrete events as we are taught. Even a linguistic conversation using sound can affect a molecular scale phenomenon and rhythms are eventual expressions that emerge from those molecules. Thus, biological systems like our brain, organs change in every living life form at every moment, define and redefine rhythms of our life \201e.g. circadian, cardiac\202 according to our environment. Our objective is to develop the algorithm that correlates the environment, biological rhythms and the molecular dynamics at the atomic scale, the triangular connecting route will create a new biology, observed but never seen before.
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Keyword:
*BRAIN; *CYTOLOGY; *ELECTRICAL PROPERTIES; Anatomy and Physiology; BIOLOGICAL INFORMATION PROCESSING; COMMUNICATION AND RADIO SYSTEMS; FOREIGN REPORTS; Genetic Engineering and Molecular Biology; INFORMATION PROCESSING; JAPAN; MICROTUBULES; NANOWIRES; NERVE TRANSMISSION; ORGANS(ANATOMY); PROTEINS; SOUND; SYMPOSIA; SYNCHRONISM; VOICE COMMUNICATIONS
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URL: http://oai.dtic.mil/oai/oai?&verb=getRecord&metadataPrefix=html&identifier=ADA597480 http://www.dtic.mil/docs/citations/ADA597480
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2 |
Using Target Network Modelling to Increase Battlespace Agility
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In: DTIC (2013)
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3 |
Enabling Efficient Intelligence Analysis in Degraded Environments
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In: DTIC (2013)
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An Approach Using MIP Products for the Development of the Coalition Battle Management Language Standard
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In: DTIC (2013)
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6 |
Automated Extraction and Characterisation of Social Network Data from Unstructured Sources -- An Ontology-Based Approach
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In: DTIC (2013)
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7 |
Interacting with Multi-Robot Systems Using BML
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In: DTIC (2013)
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QUT Para at TREC 2012 Web Track: Word Associations for Retrieving Web Documents
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In: DTIC (2012)
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Conference Report: Cultural and Linguistic Advancement for Mission Success: Enhancing Language, Regional and Cultural Capabilities Across Whole of Government for an Effective COIN Strategy
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In: DTIC (2012)
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Compressed Domain Automatic Level Control Based on ITU-T G.722.2
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In: DTIC (2012)
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11 |
Trends in Human-Computer Interaction to Support Future Intelligence Analysis Capabilities
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In: DTIC (2011)
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An Intelligence Process Model Based on a Collaborative Approach
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In: DTIC (2011)
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13 |
A Smarter Common Operational Picture: The Application of Abstraction Hierarchies to Naval Command and Control
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In: DTIC (2011)
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14 |
Semantic Analysis of Military Relevant Texts for Intelligence Purposes
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In: DTIC (2011)
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15 |
Multilingual Content Extraction Extended with Background Knowledge for Military Intelligence
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In: DTIC (2011)
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Related Entity Finding: University of Waterloo at TREC 2010 Entity Track
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In: DTIC (2010)
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A Novel Framework for Related Entities Finding: ICTNET at TREC 2009 Entity Track
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In: DTIC (2009)
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19 |
Relevance Feedback based on Constrained Clustering: FDU at TREC 09
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In: DTIC (2009)
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