Dendritic spines are one of the key functional components of neurons. Their morphological changes are correlated with neuronal activity. Neuroscientists study spine shape variations to understand their relation with neuronal activity. Currently this analysis performed manually, the availability of reliable automated tools would assist neuroscientists and accelerate this research. Previously, morphological features based spine analysis has been performed and reported in the literature. In this paper, we explore the idea of using and comparing manifold learning techniques for classifying spine shapes. We start with automatically segmented data and construct our feature vector by stacking and concatenating the columns of images. Further, we ap...
The common approach in morphological analysis of dendritic spines of mammalian neuronal cells is to ...
Statistical characterization of morphological changes of dendritic spines is becoming of crucial int...
Neuronal cells are characterized by a close relationship between their functional state and morpholo...
Neuronal morphology and function are highly coupled. In particular, dendritic spine morphology is st...
Dendritic spines, membranous protrusions of neurons, are one of the few prominent characteristics of...
Dendritic spines, membranous protrusions of neurons, are one of the few prominent characteristics of...
Functional properties of a neuron are coupled with its morphology, particularly the morphology of de...
Analysis of dendritic spines is an essential task to understand the functional behavior of neurons. ...
Background: Neuronal morphology and function are highly coupled. In particular, dendritic spine morp...
Abstract Dendritic spines form most excitatory synaptic inputs in neurons and these spines are alter...
The common approach in morphological analysis of dendritic spines of mammalian neuronal cells is to ...
Dendritic spines are described as neuronal protrusions. The morphology of dendritic spines and dendr...
The structure of neuronal dendrites and their spines underlie the connectivity of neural networks. D...
IEEEDendritic spines are dynamic, submicron-scale protrusions on neuronal dendrites that receive neu...
Synaptic plasticity, the cellular basis for learning and memory, is mediated by a complex biochemica...
The common approach in morphological analysis of dendritic spines of mammalian neuronal cells is to ...
Statistical characterization of morphological changes of dendritic spines is becoming of crucial int...
Neuronal cells are characterized by a close relationship between their functional state and morpholo...
Neuronal morphology and function are highly coupled. In particular, dendritic spine morphology is st...
Dendritic spines, membranous protrusions of neurons, are one of the few prominent characteristics of...
Dendritic spines, membranous protrusions of neurons, are one of the few prominent characteristics of...
Functional properties of a neuron are coupled with its morphology, particularly the morphology of de...
Analysis of dendritic spines is an essential task to understand the functional behavior of neurons. ...
Background: Neuronal morphology and function are highly coupled. In particular, dendritic spine morp...
Abstract Dendritic spines form most excitatory synaptic inputs in neurons and these spines are alter...
The common approach in morphological analysis of dendritic spines of mammalian neuronal cells is to ...
Dendritic spines are described as neuronal protrusions. The morphology of dendritic spines and dendr...
The structure of neuronal dendrites and their spines underlie the connectivity of neural networks. D...
IEEEDendritic spines are dynamic, submicron-scale protrusions on neuronal dendrites that receive neu...
Synaptic plasticity, the cellular basis for learning and memory, is mediated by a complex biochemica...
The common approach in morphological analysis of dendritic spines of mammalian neuronal cells is to ...
Statistical characterization of morphological changes of dendritic spines is becoming of crucial int...
Neuronal cells are characterized by a close relationship between their functional state and morpholo...