Scinovex
article Open Access

Ultrastructure of dendritic spines: correlation between synaptic and spine morphologies

Frontiers in Neuroscience · 2007 · Vol. 1(1) · pp. 131–143
Jon I. Arellano

Abstract

Dendritic spines are critical elements of cortical circuits, since they establish most excitatory synapses. Recent studies have reported correlations between morphological and functional parameters of spines. Specifically, the spine head volume is correlated with the area of the postsynaptic density (PSD), the number of postsynaptic receptors and the ready-releasable pool of transmitter, whereas the length of the spine neck is proportional to the degree of biochemical and electrical isolation of the spine from its parent dendrite. Therefore, the morphology of a spine could determine its synaptic strength and learning rules.To better understand the natural variability of neocortical spine morphologies, we used a combination of gold-toned Golgi impregnations and serial thin-section electron microscopy and performed three-dimensional reconstructions of spines from layer 2/3 pyramidal cells from mouse visual cortex. We characterized the structure and synaptic features of 144 completed reconstructed spines, and analyzed their morphologies according to their positions. For all morphological parameters analyzed, spines exhibited a continuum of variability, without clearly distinguishable subtypes of spines or clear dependence of their morphologies on their distance to the soma. On average, the spine head volume was correlated strongly with PSD area and weakly with neck diameter, but not with neck length. The large morphological diversity suggests an equally large variability of synaptic strength and learning rules.

Neuroscience and Neuropharmacology ResearchNeural dynamics and brain functionMolecular spectroscopy and chiralityDendritic spineSPINE (molecular biology)UltrastructureDendritic filopodiaNeuroscienceAnatomyBiologyCell biology

Funding

  • John Merck Fund
  • Instituo Cajal
  • National Eye Institute
Citations
554
FWCI
2.09
field-weighted impact
References
70
Percentile
86%
vs. same field & year
Citations per year
Cited by
Experience-dependent structural synaptic plasticity in the mammalian brain
Nature reviews. Neuroscience · 2009 · 1,936 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

Ultrastructure of dendritic spines: correlation between synaptic and spine morphologies · Scinovex