Arthur Porto
Arthur Porto
Florida Museum of Natural History
Bestätigte E-Mail-Adresse bei
Zitiert von
Zitiert von
The evolution of modularity in the mammalian skull I: morphological integration patterns and magnitudes
A Porto, FB de Oliveira, LT Shirai, V De Conto, G Marroig
Evolutionary Biology 36, 118-135, 2009
The evolution of modularity in the mammalian skull II: evolutionary consequences
G Marroig, LT Shirai, A Porto, FB de Oliveira, V De Conto
Evolutionary Biology 36, 136-148, 2009
Modularity: genes, development, and evolution
D Melo, A Porto, JM Cheverud, G Marroig
Annual review of ecology, evolution, and systematics 47, 463-486, 2016
Size variation, growth strategies, and the evolution of modularity in the mammalian skull
A Porto, LT Shirai, FB de Oliveira, G Marroig
Evolution 67 (11), 3305-3322, 2013
SlicerMorph: An open and extensible platform to retrieve, visualize and analyse 3D morphology
S Rolfe, S Pieper, A Porto, K Diamond, J Winchester, S Shan, ...
Methods in Ecology and Evolution 12 (10), 1816-1825, 2021
Covariance structure in the skull of Catarrhini: a case of pattern stasis and magnitude evolution
FB de Oliveira, A Porto, G Marroig
Journal of Human Evolution 56 (4), 417-430, 2009
Computer vision, machine learning, and the promise of phenomics in ecology and evolutionary biology
MD Lürig, S Donoughe, EI Svensson, A Porto, M Tsuboi
Frontiers in Ecology and Evolution 9, 642774, 2021
How many more? Sample size determination in studies of morphological integration and evolvability
M Grabowski, A Porto
Methods in Ecology and Evolution, 2016
ALPACA: A fast and accurate computer vision approach for automated landmarking of three‐dimensional biological structures
A Porto, S Rolfe, AM Maga
Methods in Ecology and Evolution 12 (11), 2129-2144, 2021
ML‐morph: A fast, accurate and general approach for automated detection and landmarking of biological structures in images
A Porto, KL Voje
Methods in Ecology and Evolution 11 (4), 500-512, 2020
Rate of evolutionary change in cranial morphology of the marsupial genus Monodelphis is constrained by the availability of additive genetic variation
A Porto, H Sebastião, SE Pavan, JL VandeBerg, G Marroig, JM Cheverud
Journal of evolutionary biology 28 (4), 973-985, 2015
Measuring the magnitude of morphological integration: the effect of differences in morphometric representations and the inclusion of size
FA Machado, A Hubbe, D Melo, A Porto, G Marroig
Evolution, 2019
Evolvability in the fossil record
AC Love, M Grabowski, D Houle, LH Liow, A Porto, M Tsuboi, KL Voje, ...
Paleobiology 48 (2), 186-209, 2022
Evolution of the Genotype-to-Phenotype Map and the Cost of Pleiotropy in Mammals
A Porto, R Schmelter, JL VandeBerg, G Marroig, JM Cheverud
Genetics, 2016
Selection response decomposition (SRD): a new tool for dissecting differences and similarities between matrices
G Marroig, D Melo, A Porto, H Sebastiao, G Garcia
Evolutionary Biology 38, 225-241, 2011
Revisiting a Landmark Study System: No Evidence for a Punctuated Mode of Evolution in Metrarabdotos
KL Voje, E Di Martino, A Porto
The American Naturalist 195 (5), 899-917, 2020
Genome-wide linkage scan for loci influencing plasma triglyceride levels
JM Peralta, NB Blackburn, A Porto, J Blangero, J Charlesworth
BMC proceedings 12, 151-156, 2018
Does lack of evolvability constrain adaptation? If so, on what time scales?
KL Voje, M Grabowski, A Holstad, A Porto, M Tsuboi, GH Bolstad
Evolvability: A Unifying Concept in Evolutionary Biology, 2023
Reliability of genomic predictions of complex human phenotypes
A Porto, JM Peralta, NB Blackburn, J Blangero
BMC proceedings 12, 157-161, 2018
Automated landmarking via multiple templates
C Zhang, A Porto, S Rolfe, A Kocatulum, AM Maga
Plos one 17 (12), e0278035, 2022
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