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Mechanisms of Development|December 6, 2005
ventral veins lacking is required for specification of the tritocerebrum in embryonic brain development of DrosophilaStefan Meier, Simon G Sprecher, Heinrich Reichert, et al.
Current Biology : CB|February 5, 2019
Inverse Control of Turning Behavior by Dopamine D1 Receptor Signaling in Columnar and Ring Neurons of the Central Complex in DrosophilaBenjamin Kottler, Richard Faville, Jessika Cristina Bridi, et al.
EMBO Reports|August 13, 2011
Drosophila syndecan regulates tracheal cell migration by stabilizing Robo levelsJoachim G Schulz, Helga Ceulemans, Emmanuel Caussinus, et al.
Plos Biology|August 17, 2023
Optogenetic cleavage of the Miro GTPase reveals the direct consequences of real-time loss of function in DrosophilaFrancesca Mattedi, Ethlyn Lloyd-Morris, Frank Hirth, et al.
Science (New York, N.Y.)|June 29, 2023
Response to Comment on "The lower Cambrian lobopodian <i>Cardiodictyon</i> resolves the origin of euarthropod brains"Nicholas J Strausfeld, Xianguang Hou, Marcel E Sayre, et al.
Acta Neuropathologica|December 25, 2013
Modelling C9ORF72 hexanucleotide repeat expansion in amyotrophic lateral sclerosis and frontotemporal dementiaAlan Stepto, Jean-Marc Gallo, Christopher E Shaw, et al.
Nature Communications|August 28, 2025
Brain anatomy of the Cambrian fossil Jianfengia multisegmentalis informs euarthropod phylogenyNicholas J Strausfeld, David R Andrew, Xianguang Hou, et al.
Scientific Reports|January 9, 2021
Thermoresponsive motor behavior is mediated by ring neuron circuits in the central complex of DrosophilaEdgar Buhl, Benjamin Kottler, James J L Hodge, et al.
Science (New York, N.Y.)|November 24, 2022
The lower Cambrian lobopodian <i>Cardiodictyon</i> resolves the origin of euarthropod brainsNicholas J Strausfeld, Xianguang Hou, Marcel E Sayre, et al.
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