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E Arbuthnott

Publications and source records attributed to E Arbuthnott.

4 recordsLinked to original sources

Methods of estimation of spine density--are spines evenly distributed throughout the dendritic field?

Dendritic spines are small protrusions extending from the dendrites of nerve cells, which bear the majority of synapses. In the past, researchers quantified spine density as the number of visible spines per estimated micrometre of dendrite. This estimate ignores all those spines hidden from view due to their position on the dendrite. Dendrites vary in diameter and the underestimation in some will be greater than others. Estimation of dendritic length is also subjective and difficult in those which are tortuous. The Felman & Peters (1979) geometrical equation takes account of these criteria and provides a method of estimating 'true' spine numbers which does not involve slow and laborious reconstruction. This study compares ratios derived from both methods of estimation (spine density 2:1) at three loci in three experimental groups. Mean values of dendritic diameters and spine dimensions show the major cause for variation in the ratios between loci to be the shaft diameter of the dendrite. However, the greater ratio for apical as compared with basal and oblique dendrites is not as great as expected, bearing in mind that apical dendrites are approximately 2.5 times larger than oblique and basal dendrites. Therefore the spine distribution may not be the same throughout the dendritic field. Estimations of spine density based on visible spine counts are quicker, easier and sufficient for comparisons within the same locus. 'True' estimates (spine density 2) are more accurate and should be used when comparisons are being made between loci, cell types and species.

Animals

Neural plasticity of the hippocampal (CA1) pyramidal cell--quantitative changes in spine density following handling and injection for drug testing.

A quantitative assessment of the spine density of apical, basal and oblique dendrites on pyramidal neurons of area CA1 of the hippocampus was made in three experimental groups. The results of a group injected with a tricyclic antidepressant were compared statistically with a saline-injected group and an unhandled control group. A statistical analysis of variance indicated significant (P less than 0.01) differences between drug and control groups and between saline and control groups in two of the loci assessed (basal and oblique dendrites). These findings suggest that the sensory stimulation provided by daily injection and handling is responsible for the increases in spine density in drug- and saline-injected animals. A single control group is insufficient in experiments of this type. Experimental protocol is extremely important and the dramatic morphological changes produced by simple routine processes should not be under-estimated.

Animals