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Artikel 11 Nachruf auf Erika Krauße
Enthalten in NTM Bd. 12, Nr. 1, date:3.2004: 51-59
Online Ressource
Artikel 12 Representation of the Microcosm – The Claim for Objectivity in 19th Century Scientific Microphotography
Enthalten in Journal of the history of biology Bd. 35, Nr. 2, date:6.2002: 221-250
Online Ressource
Artikel 13 Common general morphological pattern of peptidergic neurons in the arachnid brain: crustacean cardioactive peptide-immunoreactive neurons in the protocerebrum of seven arachnid species
Enthalten in Cell & tissue research Bd. 279, Nr. 1, date:1.1995: 183-197
Online Ressource
Artikel 14 Structure and development of the larval central complex in a holometabolous insect, the beetle Tenebrio molitor
Enthalten in Cell & tissue research Bd. 268, Nr. 2, date:5.1992: 341-358
Online Ressource
Artikel 15 Constancies in the neuronal architecture of the suboesophageal ganglion at metamorphosis in the beetleTenebrio molitor L
Enthalten in Cell & tissue research Bd. 266, Nr. 1, date:10.1991: 173-190
Online Ressource
Artikel 16 Crustacean cardioactive peptide-immunoreactive neurons in the ventral nerve cord and the brain of the meal beetle Tenebrio molitor during postembryonic development
Enthalten in Cell & tissue research Bd. 265, Nr. 1, date:7.1991: 129-144
Online Ressource
Artikel 17 Serotonin-immunoreactive brain interneurons persist during metamorphosis of an insect: a developmental study of the brain of Tenebrio molitor L. (Coleoptera)
Enthalten in Cell & tissue research Bd. 259, Nr. 2, date:2.1990: 345-360
Online Ressource
Artikel 18 Metamorphic changes in the central projects of hair sensilla inTenebrio molitor L. (Insecta: Coleoptera)
Enthalten in Cell & tissue research Bd. 259, Nr. 1, date:1.1990: 159-175
Online Ressource
Artikel 19 Proctolin-immunoreactive neurons persist during metamorphosis of an insect: A developmental study of the ventral nerve cord of Tenebrio molitor(Coleoptera)
Enthalten in Cell & tissue research Bd. 257, Nr. 1, date:7.1989: 217-225
Online Ressource
Artikel 20 Absence of sensory input does not affect persistent neurons in Tenebrio molitor metamorphosis (Insecta: Coleoptera)
Enthalten in Development genes and evolution Bd. 196, Nr. 8, date:12.1987: 486-491
Online Ressource


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