Difference between revisions of "Dendrite/es"

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(Created page with "Las dentritas son las prolongaciones del soma o cuerpo neuronal que fungen como receptores de impulsos electroquímicos provenientes de otras neuronas.")
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The dendrites of a neuron are thin and branch often, close to the cell body. Based on the specific pattern of the dendrites branching, or a neuron's dendritic arbor, neuroscientists are able to classify the neuron. [[JAM-B Cell| JAM-B cells]] a particularly notable example of how a cell's dendritic arbor can be used to identify a cell. In about 85% of JAM-B cells, there exists a marked asymmetry in the dendritic arbor.<ref name="kim2008">In-Jung Kim et al. [http://hebb.mit.edu/courses/connectomics/Kim%20molecular%20identification%20retinal%20cell%20type%20upward%20motion%2008.pdf Molecular identification of a retinal cell type that responds to upward motion] (2008). Nature <strong>452</strong>: 478-482</ref>
 
The dendrites of a neuron are thin and branch often, close to the cell body. Based on the specific pattern of the dendrites branching, or a neuron's dendritic arbor, neuroscientists are able to classify the neuron. [[JAM-B Cell| JAM-B cells]] a particularly notable example of how a cell's dendritic arbor can be used to identify a cell. In about 85% of JAM-B cells, there exists a marked asymmetry in the dendritic arbor.<ref name="kim2008">In-Jung Kim et al. [http://hebb.mit.edu/courses/connectomics/Kim%20molecular%20identification%20retinal%20cell%20type%20upward%20motion%2008.pdf Molecular identification of a retinal cell type that responds to upward motion] (2008). Nature <strong>452</strong>: 478-482</ref>
  
==References==
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==Referencias==
 
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Latest revision as of 17:27, 16 August 2019

Las dentritas son las prolongaciones del soma o cuerpo neuronal que fungen como receptores de impulsos electroquímicos provenientes de otras neuronas.

Dendritic Arbor

A side view of a JAM-B cell showing the asymmetrical dendritic field.[1]

The dendrites of a neuron are thin and branch often, close to the cell body. Based on the specific pattern of the dendrites branching, or a neuron's dendritic arbor, neuroscientists are able to classify the neuron. JAM-B cells a particularly notable example of how a cell's dendritic arbor can be used to identify a cell. In about 85% of JAM-B cells, there exists a marked asymmetry in the dendritic arbor.[1]

Referencias

  1. 1.0 1.1 In-Jung Kim et al. Molecular identification of a retinal cell type that responds to upward motion (2008). Nature 452: 478-482