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Nikola Štambuk

Showing results (1-10 of 13) with videos related to

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Bio Systems|August 31, 2021
Relational model of the standard genetic codePaško Konjevoda, Nikola Štambuk
Data in Brief|April 14, 2020
The temperature dependence of amino acid hydrophobicity data is related to the genetic coding algorithm for complementary (sense and antisense) peptide interactionsNikola Štambuk, Paško Konjevoda
Bio Systems|September 15, 2019
Determining amino acid scores of the genetic code table: Complementarity, structure, function and evolutionNikola Štambuk, Paško Konjevoda
International Journal of Molecular Sciences|September 10, 2021
Antisense Peptide Technology for Diagnostic Tests and Bioengineering ResearchNikola Štambuk, Paško Konjevoda, Josip Pavan
Bio Systems|September 22, 2023
How ambiguity codes specify molecular descriptors and information flow in Code BiologyNikola Štambuk, Paško Konjevoda, Albert Štambuk
Bio Systems|September 23, 2025
Relational model of all genetic codesNikola Štambuk, Paško Konjevoda, Albert Štambuk
Bio Systems|September 17, 2023
New algorithm for the analysis of nucleotide and amino acid evolutionary relationships based on Klein four-groupNikola Štambuk, Paško Konjevoda, Krunoslav Brčić-Kostić, et al.
Bio Systems|October 18, 2024
Novel amino acid distance matrices based on conductance measureNikola Štambuk, Elena Fimmel, Paško Konjevoda, et al.
Bio Systems|November 7, 2017
Genetic coding algorithm for sense and antisense peptide interactionsNikola Štambuk, Paško Konjevoda, Petra Turčić, et al.
International Journal of Molecular Sciences|May 29, 2014
A simple three-step method for design and affinity testing of new antisense peptides: an example of erythropoietinNikola Štambuk, Zoran Manojlović, Petra Turčić, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Bio Systems|August 31, 2021
Relational model of the standard genetic codePaško Konjevoda, Nikola Štambuk
Data in Brief|April 14, 2020
The temperature dependence of amino acid hydrophobicity data is related to the genetic coding algorithm for complementary (sense and antisense) peptide interactionsNikola Štambuk, Paško Konjevoda
Bio Systems|September 15, 2019
Determining amino acid scores of the genetic code table: Complementarity, structure, function and evolutionNikola Štambuk, Paško Konjevoda
International Journal of Molecular Sciences|September 10, 2021
Antisense Peptide Technology for Diagnostic Tests and Bioengineering ResearchNikola Štambuk, Paško Konjevoda, Josip Pavan
Bio Systems|September 22, 2023
How ambiguity codes specify molecular descriptors and information flow in Code BiologyNikola Štambuk, Paško Konjevoda, Albert Štambuk
Bio Systems|September 23, 2025
Relational model of all genetic codesNikola Štambuk, Paško Konjevoda, Albert Štambuk
Bio Systems|September 17, 2023
New algorithm for the analysis of nucleotide and amino acid evolutionary relationships based on Klein four-groupNikola Štambuk, Paško Konjevoda, Krunoslav Brčić-Kostić, et al.
Bio Systems|October 18, 2024
Novel amino acid distance matrices based on conductance measureNikola Štambuk, Elena Fimmel, Paško Konjevoda, et al.
Bio Systems|November 7, 2017
Genetic coding algorithm for sense and antisense peptide interactionsNikola Štambuk, Paško Konjevoda, Petra Turčić, et al.
International Journal of Molecular Sciences|May 29, 2014
A simple three-step method for design and affinity testing of new antisense peptides: an example of erythropoietinNikola Štambuk, Zoran Manojlović, Petra Turčić, et al.
Pageof 2