Engelmann J, Wallach A, Maler L. Linking active sensing and spatial learning in weakly electric fish. Current opinion in neurobiology. 2021;71:1-10.Weakly electric fish can learn the spatial layout of their environment using only their short-range electric sense. During spatial learning, active sensing motions are used to memorize landmark locations so that they can serve as anchors for idiothetic-based navigation. A hindbrain feedback circuit selectively amplifies the electrosensory input arising from these motions. The ascending electrolocation pathway preferentially transmits this information to the pallial regions involved in spatial learning and navigation. Similarities in both behavioral patterns and hindbrain circuitry of gymnotiform...
Animal multisensory systems are able to cope with discrepancies in information provided by individua...
von der Emde G, Amey M, Engelmann J, et al. Active electrolocation in Gnathonemus petersii: behaviou...
Animals routinely use autogenous movement to regulate the information encoded by their sensory syste...
Jung SN, Künzel S, Engelmann J. Spatial learning through active electroreception in Gnathonemus pete...
Hofmann V, Sanguinetti-Scheck JI, Gómez-Sena L, Engelmann J. Sensory flow as a basis for a novel dis...
Pedraja F, Hofmann V, Goulet J, Engelmann J. Task related sensorimotor adjustments increase the sens...
Most animals possess multiple sensory systems, which can be used during navigation. Different senses...
von der Emde G, Behr K, Bouton B, Engelmann J, Fetz S, Folde C. 3-Dimensional Scene Perception durin...
Animals use navigational strategies ranging from taxes, landmark and compass orientation, and path i...
Hofmann V, Sanguinetti-Scheck JI, Gómez-Sena L, Engelmann J. From static electric images to electric...
Animals are inundated by stimuli as they undergo the challenges of daily life. To cope, they possess...
Sensory systems have been shaped by evolution to extract information that is relevant for decision m...
It is well-known that weakly electric fish can exhibit extreme temporal acuity at the behavioral lev...
Animals can efficiently process sensory stimuli whose attributes vary over orders of magnitude by de...
Learning the spatial organization of the environment is essential for most animals’ survival. This r...
Animal multisensory systems are able to cope with discrepancies in information provided by individua...
von der Emde G, Amey M, Engelmann J, et al. Active electrolocation in Gnathonemus petersii: behaviou...
Animals routinely use autogenous movement to regulate the information encoded by their sensory syste...
Jung SN, Künzel S, Engelmann J. Spatial learning through active electroreception in Gnathonemus pete...
Hofmann V, Sanguinetti-Scheck JI, Gómez-Sena L, Engelmann J. Sensory flow as a basis for a novel dis...
Pedraja F, Hofmann V, Goulet J, Engelmann J. Task related sensorimotor adjustments increase the sens...
Most animals possess multiple sensory systems, which can be used during navigation. Different senses...
von der Emde G, Behr K, Bouton B, Engelmann J, Fetz S, Folde C. 3-Dimensional Scene Perception durin...
Animals use navigational strategies ranging from taxes, landmark and compass orientation, and path i...
Hofmann V, Sanguinetti-Scheck JI, Gómez-Sena L, Engelmann J. From static electric images to electric...
Animals are inundated by stimuli as they undergo the challenges of daily life. To cope, they possess...
Sensory systems have been shaped by evolution to extract information that is relevant for decision m...
It is well-known that weakly electric fish can exhibit extreme temporal acuity at the behavioral lev...
Animals can efficiently process sensory stimuli whose attributes vary over orders of magnitude by de...
Learning the spatial organization of the environment is essential for most animals’ survival. This r...
Animal multisensory systems are able to cope with discrepancies in information provided by individua...
von der Emde G, Amey M, Engelmann J, et al. Active electrolocation in Gnathonemus petersii: behaviou...
Animals routinely use autogenous movement to regulate the information encoded by their sensory syste...