Todorović D et al.
(2020):
The impact of chronic exposure to a magnetic field on energy metabolism and locomotion of Blaptica dubia
Todorović D et al.
(2019):
Long-term exposure of cockroach Blaptica dubia (Insecta: Blaberidae) nymphs to magnetic fields of different characteristics: effects on antioxidant biomarkers and nymphal gut mass
Zmejkoski D et al.
(2017):
Different responses of Drosophila subobscura isofemale lines to extremely low frequency magnetic field (50 Hz, 0.5 mT): fitness components and locomotor activity
Dimitrijevic D et al.
(2014):
Extremely low frequency magnetic field (50 Hz, 0.5 mT) modifies fitness components and locomotor activity of Drosophila subobscura
Todorovic D et al.
(2013):
The influence of static magnetic field (50 mT) on development and motor behaviour of Tenebrio (Insecta, Coleoptera)
Dimitrijević D et al.
(2013):
Temporal pattern of Drosophila subobscura locomotor activity after exposure to extremely low frequency magnetic field (50 Hz, 0.5 mT)
Todorovic D et al.
(2012):
Effect of magnetic fields on antioxidative defense and fitness-related traits of Baculum extradentatum (insecta, phasmatodea)
Portelli LA et al.
(2012):
Reduction of the background magnetic field inhibits ability of Drosophila melanogaster to survive ionizing radiation
Ilijin L et al.
(2011):
The response of dorsomedial A1' and dorsolateral L2' neurosecretory neurons of Lymantria dispar L. caterpillars to the acute effects of magnetic fields
Gonet B et al.
(2009):
Effects of extremely low-frequency magnetic fields on the oviposition of Drosophila melanogaster over three generations
Stanojevic V et al.
(2005):
Effects of Extremely Low Frequency (50 Hz) Magnetic Field on Development Dynamics of the Housefly (Musca domestica L.)
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