4 edition of resonant recognition model of macromolecular bioactivity found in the catalog.
Includes bibliographical references (p. 135-139) and index.
|Series||BioMethods ;, vol. 8|
|LC Classifications||QP551 .C727 1997|
|The Physical Object|
|Pagination||xii, 143 p. :|
|Number of Pages||143|
|ISBN 10||3764354879, 0817654879|
|LC Control Number||96043992|
Raimondo Montecuccoli Italian Cruiser Recognition Id Model Like Framburg. $ Xiaomi 1s New Model. pa, Ai Voice Control, Ai Image Recognition. $ Xiaomi 1s New Model. pa, Ai Voice Control, Ai Image Recognition. $ Bumper Cover For Hyundai Tucson Model W Skid Plate And Ped Recognition. Cosic I: The Resonant Recognition Model of Macromolecular Bioactivity: Theory and Applications. Basel: Birkhauser Verlag, Pirogova E, Cosic I: Examination of amino acid indexes within the Resonant Recognition Model. Proc. of the 2nd Conference of the Victorian Chapter of the IEEE EMBS, , pp. Author: Irena Cosic, Vasilis Paspaliaris, Drasko Cosic.
ABOUT QUANTUM INFORMATION MEDICINE. In this context, it should be noted that Resonant Recognition Model I. Cosic, The Resonant Recognition Model of Macromolecular Bioactivity: Theory and Applications, Birkhauser Verlag, Basel, ; G. Keković, D. Raković. Cosic I.: , The Resonant Recognition Model of Macromolecular Bioactivity: Theory and Applications, Birkhauser Verlag, Basel, Switzerland  Ling G. N., , Life at the Cell and Below-Cell Level , pp  Moss F, Ward LM, Sannita WG (February ). “Stochastic resonance and sensory information processing: a tutorial.
Cosic I. Macromolecular Bioactivity: Is it Resonant Interaction between Macromolecules? -Theory and Applications. IEEE Trans on Biomedical Engineering. ; Cosic I. Virtual spectroscopy for fun and profit. Biotechnology. ; Cosic I. The Resonant Recognition Model of Macromolecular Bioactivity: Theory and Applications. Discover Book Depository's huge selection of Irena Cosic books online. Free delivery worldwide on over 20 million titles.
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This book presents an entirely new approach to analysis of biomolecular in teractions, in particular protein-protein and protein-DNA interactions, based on the assumption that these interactions are electromagnetic in nature.
This new ap proach is the basis of the Resonant Recognition Model (RRM), which was devel oped over the last 15 : Paperback.
This book presents an entirely new approach to analysis of biomolecular in teractions, in particular protein-protein and protein-DNA interactions, based on the assumption that these interactions are electromagnetic in nature. This new ap proach is the basis of the Resonant Recognition Model (RRM), which was devel oped over the last 15 years.
The Resonant Recognition Model of Macromolecular Bioactivity: Theory and Applications (Biomethods Book 8) - Kindle edition by Irena Cosic.
Download it once and read it. Cosic I.,Resonant Recognition Model of Protein-Protein and Protein-DNA Recognition, in Bioinstrumentation and Biosensors, ed by Wise D., Marcel Dekker Inc., New York, Cosic I.,Model of Resonant Recognition Between Macromolecules, Monograph Series, Belgrade University Publishing Service.
PATENTS: Krsmanovic V., Cosic I. Biquard J.M, Hearn M.T.W. The Resonant Recognition Model proposes thet these interactions are electromagnetic in their nature and that selectivity is achieved through electromagnetic resonance between interacting.
Once the characteristic frequency of the particular biological function/interaction is identified, it is possible to design an amino acid (or nucleotide) sequence that has only this spectral characteristic. We propose that this sequence designed de novo will have only the desired biological function related to the chosen characteristic frequency.
The procedures and experimental results for the design of this bioactive sequence Author: Irena Cosic. The Resonant Recognition Model (RRM) [1,2] is one attempt to identify the selectivity of protein interactions within the amino acid sequence.
The RRM [ 1, 2 ] is a physico-mathematical approach that interprets protein sequence linear information using digital signal processing by: Here we present a concept, the so- called Resonant Recognition Model (RRM), which is based on a possibility of the resonant electromagnetic (EM) energy transfer between interacting molecules.
This can be achieved by applying the resonant recognition model (RRM), a unique computational model of analysing macromolecular sequences of proteins, DNA and RNA. The resonant recognition model (RRM) is a model which treats the protein sequence as a discrete signal.
It has been shown previously that certain periodicities (frequencies) in this signal characterise protein biological by: The Resonant Recognition Model (RRM) of protein bioactivity is a physi-cal and mathematical model that uses signal analysis to interpret linear in-formation contained in the macromolecular sequence.1–8 The method of ana-lysis is based on a two-stage procedure.1–4 The first step involves the trans.
The Resonant Recognition Model (RRM) was developed by Irene Cosic who was attempting to reconcile the unexpected, marked resemblances between functionally dissimilar proteins. She assumed that a type of spectral density of the spatial sequences of the amino acids in different proteins might be more revealing than simply.
This new approach is incorporated in the Resonant Recognition Model (RRM), which was developed over the last 10 years. It has been shown initially that certain periodicities within the distribution of energies of delocalized electrons along a protein molecule are critical for Cited by: Find recognition model for sale here online.
Shop lots of Recognition Model in stock now. The Resonant Recognition Model Of Macromolecular Bioactivity Biomethods. $ Kawasaki ''89 Model Recognition Manual Book Oem $ The resonant recognition model of macromolecular bioactivity: theory and applications.
[I Cosic] The Resonant Recognition Model (RRM), which has been Read more Rating: (not yet rated) 0 with reviews - Be the first. Subjects: Protein binding. DNA-protein interactions. The validity of the Cosic model can also be seen with molecules defined by simpler structures. For example bovine albumin is a protein that contains amino acids.
The calculated wavelength from the Cosic Resonant Recognition Model for this molecule is ∼ by: Cosic, I. () Macromolecular Bioactivity: Is It Resonant Interaction Between Macromolecules. IEEE Transactions of Biomedical Engineering, 41, Hernández Caceres JL, Cosic I,Cosic D.
Retroviral Proteases Viewed Through The Resonant Recognition Model. Medical Review, 6(2), Here we present the Resonant Recognition Model (RRM) [12–16] as a good candidate for such predictions. RRM is a revolutionary new approach proposing that macromolecular activity is based on electromagnetic resonances [ 12 – 16 ].Cited by: DeepDyve is the largest online rental service for scholarly research with thousands of academic publications available at your fingertips.
DeepDyve is the easiest way to get instant access to the academic journals you need. Molecular recognition plays an important role in biological systems and is observed in between receptor-ligand, antigen-antibody, DNA-protein, sugar-lectin, RNA-ribosome, important example of molecular recognition is the antibiotic vancomycin that selectively binds with the peptides with terminal D-alanyl-D-alanine in bacterial cells through five hydrogen bonds.
 Cosic I.:The Resonant Recognition Model of Macromolecular Bioactivity: Theory and Applications, Birkhauser Verlag, Basel, Switzerland  Ling G. N.,Life at the Cell and Below-Cell Levelpp  Moss F, Ward LM, Sannita WG (February ).The Resonant Recognition Model (RRM) model proposes that macromolecular selective interactions are based on electromagnetic resonant energy transfer between macromolecules in the range of infra-red, visible and ultra-violet light, and, thus, could mimic the specificity enabled by different frequencies (wavelengths) of sunlight [3,4].Cited by: Our recently proposed quantum approach to biomolecular recognition processes is hereby additionally supported by biomolecular Resonant Recognition Model and by quantum-chemical theory of biomolecular non-radiative resonant transitions.
Previously developed general quantumdecoherence framework for biopolymer conformational changes in very selective ligandproteins/ target-receptors Cited by: