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Nils Otto

Showing results (1-10 of 31) with videos related to

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Ambix|September 8, 2016
Making Early Modern Medicine: Reproducing Swedish BittersNils-Otto Ahnfelt, Hjalmar Fors
Berichte Zur Wissenschaftsgeschichte|September 5, 2020
Historical Continuity or Different Sensory Worlds? What we Can Learn about the Sensory Characteristics of Early Modern Pharmaceuticals by Taking Them to a Trained Sensory PanelNils-Otto Ahnfelt, Hjalmar Fors, Karin Wendin
JMIR Formative Research|August 14, 2025
Value-Based Framework for Evaluating Pre-Commercial Procurement: Case Study of Value-Based Key Performance IndicatorsNils-Otto Ørjasæter, Kari Jorunn Kværner, Linn Nathalie Støme
Neuron|May 25, 2024
Compensatory enhancement of input maintains aversive dopaminergic reinforcement in hungry DrosophilaEleonora Meschi, Lucille Duquenoy, Nils Otto, et al.
Computers in Biology and Medicine|October 5, 2014
Quantifying subtle locomotion phenotypes of Drosophila larvae using internal structures based on FIM imagesBenjamin Risse, Dimitri Berh, Nils Otto, et al.
Journal of Visualized Experiments : Jove|January 16, 2015
FIM imaging and FIMtrack: two new tools allowing high-throughput and cost effective locomotion analysisBenjamin Risse, Nils Otto, Dimitri Berh, et al.
Plos Computational Biology|May 12, 2017
FIMTrack: An open source tracking and locomotion analysis software for small animalsBenjamin Risse, Dimitri Berh, Nils Otto, et al.
Computers in Biology and Medicine|January 12, 2018
Automatic non-invasive heartbeat quantification of Drosophila pupaeDimitri Berh, Aaron Scherzinger, Nils Otto, et al.
IEEE Transactions on Bio-Medical Engineering|January 24, 2017
FIM$^{2c\;}$: Multicolor, Multipurpose Imaging System to Manipulate and Analyze Animal BehaviorBenjamin Risse, Nils Otto, Dimitri Berh, et al.
IEEE Transactions on Bio-Medical Engineering|January 24, 2017
An FIM-Based Long-Term In-Vial Monitoring System for Drosophila LarvaeDimitri Berh, Benjamin Risse, Tim Michels, et al.
Pageof 4

Showing results (1-10 of 31) with videos related to

Sort By:
Pageof 4
Ambix|September 8, 2016
Making Early Modern Medicine: Reproducing Swedish BittersNils-Otto Ahnfelt, Hjalmar Fors
Berichte Zur Wissenschaftsgeschichte|September 5, 2020
Historical Continuity or Different Sensory Worlds? What we Can Learn about the Sensory Characteristics of Early Modern Pharmaceuticals by Taking Them to a Trained Sensory PanelNils-Otto Ahnfelt, Hjalmar Fors, Karin Wendin
JMIR Formative Research|August 14, 2025
Value-Based Framework for Evaluating Pre-Commercial Procurement: Case Study of Value-Based Key Performance IndicatorsNils-Otto Ørjasæter, Kari Jorunn Kværner, Linn Nathalie Støme
Neuron|May 25, 2024
Compensatory enhancement of input maintains aversive dopaminergic reinforcement in hungry DrosophilaEleonora Meschi, Lucille Duquenoy, Nils Otto, et al.
Computers in Biology and Medicine|October 5, 2014
Quantifying subtle locomotion phenotypes of Drosophila larvae using internal structures based on FIM imagesBenjamin Risse, Dimitri Berh, Nils Otto, et al.
Journal of Visualized Experiments : Jove|January 16, 2015
FIM imaging and FIMtrack: two new tools allowing high-throughput and cost effective locomotion analysisBenjamin Risse, Nils Otto, Dimitri Berh, et al.
Plos Computational Biology|May 12, 2017
FIMTrack: An open source tracking and locomotion analysis software for small animalsBenjamin Risse, Dimitri Berh, Nils Otto, et al.
Computers in Biology and Medicine|January 12, 2018
Automatic non-invasive heartbeat quantification of Drosophila pupaeDimitri Berh, Aaron Scherzinger, Nils Otto, et al.
IEEE Transactions on Bio-Medical Engineering|January 24, 2017
FIM$^{2c\;}$: Multicolor, Multipurpose Imaging System to Manipulate and Analyze Animal BehaviorBenjamin Risse, Nils Otto, Dimitri Berh, et al.
IEEE Transactions on Bio-Medical Engineering|January 24, 2017
An FIM-Based Long-Term In-Vial Monitoring System for Drosophila LarvaeDimitri Berh, Benjamin Risse, Tim Michels, et al.
Pageof 4