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Bothrioplana
Platyhelminthes) at the Queensland Museum B.M
Analysis of Fox Genes in Schmidtea Mediterranea Reveals New Families
Analysis of Fox Genes in Schmidtea Mediterranea Reveals New Families
Phylum Platyhelminthes
Developmental Diversity in Free-Living Flatworms Martín-Durán and Egger
Systematics and Taxonomy of Polyclad Flatworms with a Special Emphasis on the Morphology of the Nervous System Sigmer Y
Platyhelminthes): 1
ABSTRACTS Sponsored by TABLE of CONTENT
Nuclear Genomic Signals of the ‘Microturbellarian’ Roots of Platyhelminth Evolutionary Innovation
Phylogenetic Relationships of the Triclads (Platyhelminthes, Seriata
The Pirna Pathway in Planarian Flatworms
Systematics and Taxonomy of Polyclad Flatworms with a Special Emphasis on the Morphology of the Nervous System
Global Diversity of Free Living Flatworms (Platyhelminthes, “Turbellaria”) in Freshwater
Genome and Transcriptome of the Regeneration-Competent Flatworm, Macrostomum Lignano
Ultrastructural Patterns of the Excretory Ducts of Basal Neodermatan Groups (Platyhelminthes) and New Protonephridial Characters of Basal Cestodes Larisa G
Animal-Evolution.-Interrelationships
Reviewing the Invertebrate Fauna of Southern African Temporary Wetlands
Nuclear Genomic Signals of the ‘Microturbellarian’ Roots of Platyhelminth Evolutionary Innovation Christopher E Laumer1*, Andreas Hejnol2, Gonzalo Giribet1
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Evolution of Flatworm Central Nervous Systems: Insights from Polyclads
Cellular Processes in Segmentation
Autonomous and Non-Autonomous Regulation on Planarian Growth and Regeneration: Smed-Bls, Canonical Wnt Signalling and Fox Family