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20082019
most citedProbabilities of unranked and ranked anomaly zones under birth-death models

2 citations · 2 across the 3 of their papers we have counts for

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q-bio.PE2019★ 2 cited

Probabilities of unranked and ranked anomaly zones under birth-death models

Anastasiia Kim, Noah A. Rosenberg, James H. Degnan

A labeled gene tree topology that is more probable than the labeled gene tree topology matching a species tree is called \textit{anomalous}. Species trees that can generate such an…

q-bio.PE2017

Split probabilities and species tree inference under the multispecies coalescent model

Elizabeth S. Allman, James H. Degnan, John A. Rhodes

Using topological summaries of gene trees as a basis for species tree inference is a promising approach to obtain acceptable speed on genomic-scale datasets, and to avoid some unde…

q-bio.PE2016

Species tree inference from gene splits by Unrooted STAR methods

Elizabeth S. Allman, James H. Degnan, John A. Rhodes

The method was proposed by Liu and Yu to infer a species tree topology from unrooted topological gene trees. While its statistical consistency under the multispeci…

q-bio.PE2013

Hybrid-Lambda: simulation of multiple merger and Kingman gene genealogies in species networks and species trees

Sha Zhu, James H Degnan, Bjarki Eldon

Hybrid-Lambda is a software package that simulates gene trees under Kingman or two Lambda-coalescent processes within species networks or species trees. It is written in C++, and r…

q-bio.PE2008

Properties of Consensus Methods for Inferring Species Trees from Gene Trees

James H. Degnan

Consensus methods provide a useful strategy for combining information from a collection of gene trees. An important application of consensus methods is to combine gene trees to est…