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Systematic Biology, ISSN 1063-5157, 08/2003, Volume 52, Issue 4, pp. 528 - 538
Abstract The problem of missing data is often considered to be the most important obstacle in reconstructing the phylogeny of fossil taxa and in combining data... 
Missing data | Phylogenetic accuracy | Incomplete taxa | Computer simulations | Supertrees | Combining data | Fossils | TREE COMPARISON METRICS | EVOLUTIONARY BIOLOGY | incomplete taxa | phylogenetic accuracy | supertrees | combining data | fossils | computer simulations | PARSIMONY | missing data | CHARACTERS | MAMMALS
Journal Article
Systematic Biology, ISSN 1063-5157, 10/2005, Volume 54, Issue 5, pp. 731 - 742
Journal Article
Methods in Ecology and Evolution, ISSN 2041-210X, 08/2013, Volume 4, Issue 8, pp. 724 - 733
Summary Applying phylogeny‐based analyses of trait evolution and diversification in the fossil record generally involves transforming an unscaled cladogram... 
comparative methods | cladistics | incomplete sampling | diversification | fossil time‐trees | extinct lineages | palaeontology | Extinct lineages | Fossil time-trees | Incomplete sampling | Cladistics | Diversification | Comparative methods | Palaeontology | EVOLUTIONARY | CONFIDENCE-INTERVALS | BODY-SIZE | RECORD | RADIATION | PROBABILITY | ORIGINS | ECOLOGY | fossil time-trees | Studies | Phylogenetics | Evolution | Methods
Journal Article
Systematic Biology, ISSN 1063-5157, 3/2015, Volume 64, Issue 2, pp. 256 - 266
The utility of fossils in evolutionary contexts is dependent on their accurate placement in phylogenetic frameworks, yet intrinsic and widespread missing data... 
Missing data | taphonomy | phylogeny | stem-group | soft-bodied | paleontology | DECAY | INCOMPLETE TAXA | CHARACTERS | BRADORIIDA | ANATOMY | EVOLUTIONARY BIOLOGY | KUNMINGELLA | CHORDATE | VERTEBRATE | MORPHOLOGY | Invertebrates - classification | Animals | Bias | Computer Simulation | Classification - methods | Phylogeny | Invertebrates - anatomy & histology | Fossils | Regular
Journal Article
Systematic Biology, ISSN 1063-5157, 2/2009, Volume 58, Issue 1, pp. 87 - 99
The genomics revolution offers great promise for resolving the phylogeny of living taxa, but does it offer any benefits for reconstructing relationships among... 
Taxa | Missing data | Parsimony | Plant morphology | Phylogenetics | Phylogeny | Topology | Estimated taxes | Bayesian analysis | Fossils | morphology | MORPHOLOGICAL DATA | fossils | MISSING DATA | INCOMPLETE TAXA | EVOLUTIONARY BIOLOGY | Accuracy | IMPACT | EVOLUTION | AMNIOTE PHYLOGENY | genomics | phylogeny | EXTANT TAXA | DATA SETS | PARSIMONY | Genomics | Bayes Theorem | Classification
Journal Article
Systematic Biology, ISSN 1063-5157, 10/2007, Volume 56, Issue 5, pp. 753 - 766
Systematists disagree whether data from fossils should be included in parsimony analyses. In a handful of well-documented cases, the addition of fossil data... 
Datasets | Taxa | Biological taxonomies | Missing data | Branches | Parsimony | Phylogenetics | Evolution | Phylogeny | Fossils | Leaf stability | Relationships | MPTs | Resolution | EVOLUTIONARY BIOLOGY | PHYLOGENETIC-RELATIONSHIPS | CHINA | CAMBRIAN EXPLOSION | MAMMALIA | MISSING DATA | EVO-DEVO | EXTANT TAXA | INCOMPLETE TAXA | SQUAMATE PHYLOGENY | MULTIPLE TREES | Classification - methods | Animals | Extinction, Biological | Genetics | Journals | Behavior
Journal Article
Palaeontology, ISSN 0031-0239, 01/2010, Volume 53, Issue 1, pp. 1 - 9
:  As phylogenetic analyses become larger, one of the greatest methodological difficulties is representing speciose supraspecific clades in higher‐level... 
exemplars | cladistics | supraspecific taxa | phylogeny | Archosauria | evolution | missing data | Missing data | Supraspecific taxa | Evolution | Exemplars | Cladistics | Phylogeny | CHELICERATA | SALAMANDERS | CLASSIFICATION | INCOMPLETE TAXA | CLADISTIC-ANALYSIS | FROGS | PARSIMONY ANALYSIS | ORIGIN | PALEONTOLOGY | LARGE DATA SETS | Analysis | Paleontology | Data analysis | Taxonomy | Research methodology | Optimization
Journal Article
Journal of Mammalian Evolution, ISSN 1064-7554, 12/2008, Volume 15, Issue 4, pp. 231 - 259
A total evidence phylogenetic analysis was performed for 14 extant and 18 fossil caniform genera using a data matrix of 5.6 kbp of concatenated sequence data... 
Life Sciences | Human Genetics | Carnivora | DNA | Morphology | Anthropology | Arctoidea | Total evidence | Phylogeny | Evolutionary Biology | Animal Genetics and Genomics | MORPHOLOGICAL DATA | MISSING DATA | INCOMPLETE TAXA | MOLECULAR PHYLOGENY | SINGLE ORIGIN | RETENTION INDEX | ZOOLOGY | MUSTELIDAE CARNIVORA | CYTOCHROME-B GENES | DATA SETS | ORDER CARNIVORA | Analysis | Museums | Paleontology | Phylogenetics | Dentition | Teeth | Fossils | Data processing
Journal Article