2019
DOI: 10.1002/andp.201800375
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Forecasting Laurent Polynomial in the Chern–Simons Current of V3 Loop Time Series

Abstract: The genetic variation in the V3 loop obstruction component of gp120 HIV glycoprotein is defined as a solitary standing wave function with the transition state between the interaction of wave function in the DNA and RNA hidden states. It is a parasitism co-state generated from the coupling between two pairs of hidden 8 states of Laurent polynomial in the Chern-Simons current of HIV genotypes. A modified Nahm equation for a biology with Lax pairs is defined as the pairs of viral glycoprotein states with the tran… Show more

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Cited by 6 publications
(2 citation statements)
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“…The visualization of comparative difference between the cancer and normal genes can help in building the databases and the classification of different types of genes in the future. The picture shows the tensor correlation of the Chern-Simons current from (ITD − IMF)chain 1 (6), between normal (blue) and cancer (red) genes in 28 selected samples of bone cancer for the first 1000 amino acids. We can see that the signature of mutation appears between the amino acids 400 and 600.…”
Section: Empirical Analysis Of Cancer Gene Signaturementioning
confidence: 99%
See 1 more Smart Citation
“…The visualization of comparative difference between the cancer and normal genes can help in building the databases and the classification of different types of genes in the future. The picture shows the tensor correlation of the Chern-Simons current from (ITD − IMF)chain 1 (6), between normal (blue) and cancer (red) genes in 28 selected samples of bone cancer for the first 1000 amino acids. We can see that the signature of mutation appears between the amino acids 400 and 600.…”
Section: Empirical Analysis Of Cancer Gene Signaturementioning
confidence: 99%
“…We try to show that it can be done by a new way of unifying triplet states of DNA, RNA, and protein. The new approach of the Chern-Simons current in the genotype with a mathematical model of the hidden state in a genome [6] is trying to answer some questions. The suppersymetry approach [7] was also used for the model of graphene wormhole and for the computation of the Chern-Simons current in a Josephson junction of superconductor states in the graphene.…”
Section: Introductionmentioning
confidence: 99%