کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
6268591 | 1614633 | 2014 | 9 صفحه PDF | دانلود رایگان |

- F-dynamics is a novel tool to automatically measure filopodia motility in 2D.
- Filopodia movement can be reliably and accurately quantified with F-dynamics.
- F-dynamics can be used to identify difference in dynamics between conditions.
- We demonstrate that lithium treatment increases dendritic filopodia movement.
BackgroundDendritic filopodia are highly motile and flexible protrusions that explore the surroundings in search for an appropriate presynaptic partner. Dendritic filopodia morphologically and functionally transform into postsynaptic dendritic spines, once the appropriate partner has been chosen. Therefore, proper formation of synapses depends on the dynamics of dendritic filopodia and spines. Thus, a rigorous assessment of dendrite filopodia behavior could be informative in providing a link between filopodia dynamics and synaptic development.New methodIn this paper, a tool for automated tracking of filopodia dynamics, the Filopodia-dynamics program (F-dynamics), will be described, tested and applied. The aim of this study is to validate the accuracy and reliability of F-dynamics and to test the program in live neurons.ResultsWe demonstrate that filopodia dynamics can be reliably and accurately quantified using the F-dynamics program. In the present study, this program was used to successfully show that lithium treatment increases filopodia motility.Comparison with exciting methodsF-dynamics is the first analysis program that is able to determine dendritic filopodia dynamics automatically across both the longitudinal and lateral dimensions.ConclusionOur data suggests that this analysis method can be used to differentiate between different experimental conditions and illustrates the potential of the program to measure pharmaceutical or genetic effects on filopodia dynamics.
Journal: Journal of Neuroscience Methods - Volume 236, 30 October 2014, Pages 148-156