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20162019
most citedInformation Theory and the Length Distribution of all Discrete Systems

6 citations · 14 across the 3 of their papers we have counts for

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q-bio.OT2019★ 2 cited

CoHSI V: Identical multiple scale-independent systems within genomes and computer software

Les Hatton, Gregory Warr

A mechanism-free and symbol-agnostic conservation principle, the Conservation of Hartley-Shannon Information (CoHSI) is predicted to constrain the structure of discrete systems reg…

q-bio.OT2018

CoHSI IV: Unifying Horizontal and Vertical Gene Transfer - is Mechanism Irrelevant ?

Les Hatton, Gregory Warr

In previous papers we have described with strong experimental support, the organising role that CoHSI (Conservation of Hartley-Shannon Information) plays in determining important g…

q-bio.OT2018

CoHSI III: Long proteins and implications for protein evolution

Les Hatton, Gregory Warr

The length distribution of proteins measured in amino acids follows the CoHSI (Conservation of Hartley-Shannon Information) probability distribution. In previous papers we have ver…

q-bio.OT2018

CoHSI II; The average length of proteins, evolutionary pressure and eukaryotic fine structure

Les Hatton, Gregory Warr

The CoHSI (Conservation of Hartley-Shannon Information) distribution is at the heart of a wide-class of discrete systems, defining (amongst other properties) the length distributio…

q-bio.OT2018

CoHSI I; Detailed properties of the Canonical Distribution for Discrete Systems such as the Proteome

Les Hatton, Gregory Warr

The CoHSI (Conservation of Hartley-Shannon Information) distribution is at the heart of a wide-class of discrete systems, defining the length distribution of their components among…

q-bio.OT2017★ 6 cited

Information Theory and the Length Distribution of all Discrete Systems

Les Hatton, Gregory Warr

We begin with the extraordinary observation that the length distribution of 80 million proteins in UniProt, the Universal Protein Resource, measured in amino acids, is qualitativel…