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Drosophila neurons actively regulate axonal tension in vivo
Rajagopalan Jagannathan Rajagopalan
, Tofangchi Alireza Tofangchi
,
M. Taher A. Saif
Mechanical Science and Engineering
Bioengineering
Beckman Institute for Advanced Science and Technology
Carl R. Woese Institute for Genomic Biology
Biomedical and Translational Sciences
Center for South Asian and Middle Eastern Studies
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Keyphrases
Drosophilidae
100%
Mechanical Force
100%
Axonal Tension
100%
Mechanical Tension
50%
In Vitro Study
50%
High-resolution
50%
Neurite
50%
Force Sensor
50%
Mechanical Response
50%
Applied Force
50%
Mechanical Behavior
50%
Neuromuscular Junction
50%
Axon
50%
Deformation Response
50%
Forced Deformation
50%
Cultured Neurons
50%
Motor Neuron
50%
Viscoelastic Solid
50%
Linear Force
50%
Force Relaxation
50%
Paucity
50%
Drosophila Embryo
50%
Micromechanical Forces
50%
Relaxation to Steady State
50%
Neuronal Behavior
50%
Agricultural and Biological Sciences
Neurite
100%
in Vitro Studies
100%
in Vivo Studies
100%
Neuromuscular Junction
100%
Axon
100%
Neuroscience
In Vivo
100%
Behavior (Neuroscience)
50%
In Vitro
25%
Neurite
25%
Neuromuscular Junction
25%
Axon
25%