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BioComputers
#1



Peter P. Gariaev*, Boris I. Birshtein*, Alexander M. Iarochenko*, Peter J. Marcer**,

George G. Tertishny*, Katherine A. Leonova*, Uwe Kaempf **.

* Institute Control of Sciences Russian Academy of Sciences,

Moscow, Russia [email protected], http://aha.ru/ gariaev, and

Wave Genetics Inc. 87 Scollard Street, Toronto, Ontario, Canada, M5R 1G4, [email protected],

**53 Old Vicarage Green, Keynsham, Bristol, BS31 2DH, UK
Institut f. Klinische, Diagnostische und Differentielle Psychologie- Am Falkenbrunnen - D-01062 Dresden TU, Dresden, Germany


The DNA-wave Biocomputer

Abstract

This paper reports experimental work carried out in Moscow at the Institute of Control Sciences, Wave Genetics Inc. and theoretical work from several sources. This work changes the notion about the genetic code essentially. It asserts: -

1) That the evolution of biosystems has created genetic "texts", similar to natural context dependent texts in human languages, shaping the text of these speech-like patterns.

2) That the chromosome apparatus acts simultaneously both as a source and receiver of these genetic texts, respectively decoding and encoding them, and

3) That the chromosome continuum of multicellular organisms is analogous to a static-dynamical multiplex time-space holographic grating, which comprises the space-time of an organism in a convoluted form.

That is to say, the DNA action, theory predicts and which experiment confirms,

i) is that of a "gene-sign" laser and its solitonic electro-acoustic fields, such that the gene-biocomputer "reads and understands" these texts in a manner similar to human thinking, but at its own genomic level of "reasoning". It asserts that natural human texts (irrespectively of the language used), and genetic "texts" have similar mathematical-linguistic and entropic-statistic characteristics, where these concern the fractality of the distribution of the character frequency density in the natural and genetic texts, and where in case of genetic "texts", the characters are identified with the nucleotides, and ii) that DNA molecules, conceived as a gene-sign continuum of any biosystem, are able to form holographic pre-images of biostructures and of the organism as a whole as a registry of dynamical "wave copies" or "matrixes , succeeding each other. This continuum is the measuring, calibrating field for constructing its biosystem.

Introduction.
How did this new theory take shape? The principle problem of the creation of the genetic code, as seen in all the approaches [Gariaev 1994; Fatmi et al. 1990; Perez 1991: Clement et al. 1993; Marcer, Schempp 1996; Patel, 2000] was to explain the mechanism by means of which a third nucleotide in an encoding triplet, is selected. To understand, what kind of mechanism resolves this typically linguistic problem of removing homonym indefiniteness, it is necessary firstly to postulate a mechanism for the context-wave orientations of ribosomes in order to resolve the problem of a precise selection of amino acid during protein synthesis [Maslow, Gariaev 1994]. This requires that some general informational intermediator function with a very small capacity, within the process of convolution versus development of sign regulative patterns of the genome-biocomputer endogenous physical fields. It lead to the conceptualization of the genome's associative-holographic memory and its quantum nonlocality. These assumptions produce a chromosome apparatus and fast wave genetic information channels connecting the chromosomes of the separate cells of an organism into a holistic continuum, working as the biocomputer, where one of the field types produced by the chromosomes, are their radiations. This postulated capability of such "laser radiations" from chromosomes and DNA, as will be shown, has already been demonstrated experimentally in Moscow, by the Gariaev Group. Thus it seems the accepted notions about the genetic code must change fundamentally, and in doing so it will be not only be possible to create and understand DNA as a wave biocomputer, but to gain from nature a more fundamental understanding of what information [Marcer in press] really is! For the Gariaev Group's experiments in Moscow and Toronto say that the current understanding of genomic information i.e. the genetic code, is only half the story [Marcer this volume].

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#2
Biocomputing is one of the upcoming field in the areas of mole-cularelectronics and nanotechnology. The idea behind blending biology with technology is due to the limitations faced by the semiconductor designers in decreasing the size of the silicon chips, which directly affects the processor speed. Biocomputers consists of biochips unlike the normal computers, which are silicon-based computers. This biochip consists of biomaterial such as nucleic acid, enzymes, etc.

The power of a biocomputer is that it acts as a massively parallel computer and has immense data storage capability.Thus, it can be used to solve NP-complete problems with higher efficiency.The possibilities for bio-computers include developing a credit-card size computer that could design a super-efficient global air-traffic control system. The basic idea behind bio-computing is to use molecular reactions for computational purposes.Biocomputing is one of the upcoming field in the areas of mole-cularelectronics and nanotechnology.

The idea behind blending biology with technology is due to the limitations faced by the semiconductor designers in decreasing the size of the silicon chips, which directly affects the processor speed. Biocomputers consists of biochips unlike the normal computers, which are silicon-based computers. This biochip consists of biomaterial such as nucleic acid, enzymes, etc. The power of a biocomputer is that it acts as a massively parallel computer and has immense data storage capability.Thus, it can be used to solve NP-complete problems with higher efficiency.The possibilities for bio-computers include developing a credit-card size computer that could design a super-efficient global air-traffic control system..
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#3
Biocomputing is one of the upcoming field in the areas of mole-cularelectronics and nanotechnology. The idea behind blending biology with technology is due to the limitations faced by the semiconductor designers in decreasing the size of the silicon chips, which directly affects the processor speed. Biocomputers consists of biochips unlike the normal computers, which are silicon-based computers. This biochip consists of biomaterial such as nucleic acid, enzymes, etc. The power of a biocomputer is that it acts as a massively parallel computer and has immense data storage capability.Thus, it can be used to solve NP-complete problems with higher efficiency.The possibilities for bio-computers include developing a credit-card size computer that could design a super-efficient global air-traffic control system. The basic idea behind bio-computing is to use molecular reactions for computational purposes. Biocomputing is one of the upcoming field in the areas of mole-cularelectronics and nanotechnology. The idea behind blending biology with technology is due to the limitations faced by the semiconductor designers in decreasing the size of the silicon chips, which directly affects the processor speed. Biocomputers consists of biochips unlike the normal computers, which are silicon-based computers. This biochip consists of biomaterial such as nucleic acid, enzymes, etc. The power of a biocomputer is that it acts as a massively parallel computer and has immense data storage capability.Thus, it can be used to solve NP-complete problems with higher efficiency.The possibilities for bio-computers include developing a credit-card size computer that could design a super-efficient global air-traffic control system
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#4
Dear sir,
I am TE-computer Science student.I want to present seminar on the topic "Bio Computers". Help me to present it in an outstanding manner which gives much impression by including valuable information,images, videos and power point presentations which is related to my seminar topic.
Please do the needful.
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#5
please go through the following threads for more information on 'BioComputers'.

http://seminarsprojects.net/Thread-biolo...ull-report
http://seminarsprojects.net/Thread-biocomputers--1155
http://seminarsprojects.net/Thread-biocomputers
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#6
to get information about the topic Biocomputers full report ppt and related topic refer the page link bellow

http://seminarsprojects.net/Thread-biocomputers--1155

http://seminarsprojects.net/Thread-bioco...?pid=69344
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#7
to get information about the topic Biocomputers full report ppt and related topic refer the page link bellow

http://seminarsprojects.net/Thread-biocomputers--1155

http://seminarsprojects.net/Thread-bioco...?pid=69344
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#8
to get information about the topic Bio computers full report ppt and related topic refer the page link bellow

http://seminarsprojects.net/Thread-biocomputers--1155
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#9
please send me the complete seminar report and ppts for BIOCOMPUTERS as early as possible..
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