C - Chemistry – Metallurgy – 12 – Q
Patent
C - Chemistry, Metallurgy
12
Q
C12Q 1/68 (2006.01) C12M 1/34 (2006.01) C12Q 1/02 (2006.01) H01J 37/26 (2006.01) G06F 19/00 (2006.01)
Patent
CA 2601631
To study regeneration, we take cells from a certain area of a Hydra and/or a Star Fish and/or planaria or other regenerating creatures (for possible use in tissue/stem cells regeneration and proliferation). First we record its regular Genome pre(before) cutting in a certain area of its body... Next we wait until the most expected point in time of release of signals (eg. enzymes) that stimulate the cells in the area of the cut to regenerate and we take cells form the same place, we record the Genome of the regenerating cells. The pre-cut Genome is the control in the experiment. We compare (DNA strands place by place along the nucleotides) of the entire Genomes side by side (possibly divided by Halo Types for easy sorting GP; GV). We use an algorithm/computer/Artificial Intelligence magnify a view of the two Genomes laid side by side and to recognize and only point out/to (high light) where there are differences between two DNA strands (eg. activated versus deactivated or mutated) not even looking at those which are the same. The two entire Genomes would be observed all at once, homing in only where difference are apparent. We may use an electron microscope, possibly with multiple lens and huge number of pixels and possibly video for the close observation of the two entire DNAs (ideally) together at once (possibly with two co-functioning lens) or separate leans for halo-type groups. This method works like programming an algorithm/computer/Artificial Intelligence to pick out a white mouse from a crowd of black mice. We could also use this technique to compare Genomes (DNA) differences between those with heart disease, diabetes, cancer... hereditary diseases and those without the genes. We could also create a device(s) that (Ch 3%) uses this process/method/technique. We Pick out specific difference between two DNA that come from the same parts of the body but each express different regulatory or phenotype features we via observing the entire strands to strands as one big comparison and where most everything is almost the same except single or little groups of genes that are the likely culprits of different regulatory or phenotype features.
Na
Voon Gerard
LandOfFree
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