Natural Science

Natural Science

ISSN Print: 2150-4091
ISSN Online: 2150-4105
www.scirp.org/journal/ns
E-mail: ns@scirp.org
"Symmetry of echinoderms: From initial bilaterally-asymmetric metamerism to pentaradiality"
written by Sergey V. Rozhnov,
published by Natural Science, Vol.6 No.4, 2014
has been cited by the following article(s):
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[1] Hydrocoel morphogenesis forming the pentaradial body plan in a sea cucumber, Apostichopus japonicus
Scientific reports, 2022
[2] Evolutionary Transformations of the Metazoan Body Plan: Genomic-Morphogenetic Correlations
Paleontological Journal, 2021
[3] Two Coils in the Morphology of Myelodactylids (Crinoidea, Disparida): the Morphogenetic Basis of Their Formation and Adaptation Potential
Paleontological Journal, 2021
[4] Coelom Metamerism in Echinodermata
Paleontological Journal, 2021
[5] The 90th Anniversary of the Borissiak Paleontological Institute, Russian Academy of Sciences: from the “Golden Age” of Paleontology to New Perspectives
2021
[6] Symmetry Transformations in Metazoan Evolution and Development
2021
[7] Cystoblastus and the origin of the Hemicosmitoida (Echinodermata: Blastozoa).
Estonian Journal of Earth Sciences, 2021
[8] Streptoiocrinus gen. nov.(Disparida, Crinoidea) from the Lower and Middle Ordovician of the Leningrad Region, and Fluctuating Asymmetry of Radial Symmetry
2020
[9] Genomic insights of body plan transitions from bilateral to pentameral symmetry in Echinoderms
2020
[10] Origin and significance of Lovén's Law in echinoderms
2020
[11] Three‐Legged Locomotion and the Constraints on Limb Number: Why Tripeds Don't Have a Leg to Stand On
2019
[12] A phylogenomic rodent tree reveals the repeated evolution of masseter architectures
2019
[13] Weighted gene co-expression network analysis reveals potential genes involved in early metamorphosis process in sea cucumber Apostichopus japonicus
Biochemical and Biophysical Research Communications, 2018
[14] Larval and Adult Body Axes in Echinoderms
Reproductive and Developmental Strategies, 2018
[15] Architectonics of Metazoa as the Basis for the Reconstruction of the Ontogeny and Phylogeny of Extinct Taxa
2018
[16] ПРИБАЛТИЙСКИЕ ОРДОВИКСКИЕ ПАРАКРИНОИДЕИ И КЛЮЧЕВЫЕ ПРОБЛЕМЫ СРАВНИТЕЛЬНОЙ МОРФОЛОГИИ ПЕЛЬМАТОЗОЙНЫХ ИГЛОКОЖИХ
2017
[17] Five palaeobiological laws needed to understand the evolution of the living biota
Nature Ecology & Evolution, 2017
[18] Ordovician Paracrinoids from the Baltic: Key Problems of Comparative Morphology of Pelmatozoan Echinoderms
Paleontological Journal, 2017
[19] Arms versus brachioles: Morphogenetic basis of similarity and differences in food-gathering appendages of pelmatozoan echinoderms
Paleontological Journal, 2016
[20] Modularity and heterochronies in the evolution of metazoa: Paleontological aspect
Paleontological Journal, 2015
[21] Cystoblastus and the origin of the Hemicosmitoida (Echinodermata: Blastozoa); pp. 165–181
[22] SINCE 1952
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