LingPeiHo/Ho_Taylor_Byrne-SpOOx-2.0: SpOOx 2.0

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Autori principali: Stephen Taylor, Simon McG, martinSergeant, Joshua Bull, LingPeiHo, Emmanouela Repapi, Kevin Rue-Albrecht
Natura: Recurso digital
Pubblicazione: Zenodo 2025
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author Stephen Taylor
Simon McG
martinSergeant
Joshua Bull
LingPeiHo
Emmanouela Repapi
Kevin Rue-Albrecht
author_facet Stephen Taylor
Simon McG
martinSergeant
Joshua Bull
LingPeiHo
Emmanouela Repapi
Kevin Rue-Albrecht
contents <p>The suite of mathematical tools available in (SpOOx 2.0) enable, (a) identification of pairs of cells types that are more frequently co-located with each other than would be expected under complete spatial randomness (CSR) [via a 2-step sequential method - quadrat correlation matrix (QCM) then, cross pair correlation function (cross-PCF)] (b) determines whether three cell types are co-located with each other more frequently than under CSR, [using a mathematical function called neighborhood correlation function (NCF)] and (c) construct a network of contacting cells [ via calculation of 'adjacency contact network(ACN) and then contacting cell network (CCN)] For more details on running these individual functions see src/spatialstats</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15719296
institution Zenodo
language
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle LingPeiHo/Ho_Taylor_Byrne-SpOOx-2.0: SpOOx 2.0
Stephen Taylor
Simon McG
martinSergeant
Joshua Bull
LingPeiHo
Emmanouela Repapi
Kevin Rue-Albrecht
<p>The suite of mathematical tools available in (SpOOx 2.0) enable, (a) identification of pairs of cells types that are more frequently co-located with each other than would be expected under complete spatial randomness (CSR) [via a 2-step sequential method - quadrat correlation matrix (QCM) then, cross pair correlation function (cross-PCF)] (b) determines whether three cell types are co-located with each other more frequently than under CSR, [using a mathematical function called neighborhood correlation function (NCF)] and (c) construct a network of contacting cells [ via calculation of 'adjacency contact network(ACN) and then contacting cell network (CCN)] For more details on running these individual functions see src/spatialstats</p>
title LingPeiHo/Ho_Taylor_Byrne-SpOOx-2.0: SpOOx 2.0
url https://doi.org/10.5281/zenodo.15719296