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Hippocampal Astrocytes in Migrating and Wintering Semipalmated Sandpiper Calidris pusilla

Overview of attention for article published in Frontiers in Neuroanatomy, January 2018
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Title
Hippocampal Astrocytes in Migrating and Wintering Semipalmated Sandpiper Calidris pusilla
Published in
Frontiers in Neuroanatomy, January 2018
DOI 10.3389/fnana.2017.00126
Pubmed ID
Authors

Dario Carvalho-Paulo, Nara G. de Morais Magalhães, Diego de Almeida Miranda, Daniel G. Diniz, Ediely P. Henrique, Isis A. M. Moraes, Patrick D. C. Pereira, Mauro A. D. de Melo, Camila M. de Lima, Marcus A. de Oliveira, Cristovam Guerreiro-Diniz, David F. Sherry, Cristovam W. P. Diniz

Abstract

Seasonal migratory birds return to the same breeding and wintering grounds year after year, and migratory long-distance shorebirds are good examples of this. These tasks require learning and long-term spatial memory abilities that are integrated into a navigational system for repeatedly locating breeding, wintering, and stopover sites. Previous investigations focused on the neurobiological basis of hippocampal plasticity and numerical estimates of hippocampal neurogenesis in birds but only a few studies investigated potential contributions of glial cells to hippocampal-dependent tasks related to migration. Here we hypothesized that the astrocytes of migrating and wintering birds may exhibit significant morphological and numerical differences connected to the long-distance flight. We used as a model the semipalmated sandpiper Calidris pusilla, that migrates from northern Canada and Alaska to South America. Before the transatlantic non-stop long-distance component of their flight, the birds make a stopover at the Bay of Fundy in Canada. To test our hypothesis, we estimated total numbers and compared the three-dimensional (3-D) morphological features of adult C. pusilla astrocytes captured in the Bay of Fundy (n = 249 cells) with those from birds captured in the coastal region of Bragança, Brazil, during the wintering period (n = 250 cells). Optical fractionator was used to estimate the number of astrocytes and for 3-D reconstructions we used hierarchical cluster analysis. Both morphological phenotypes showed reduced morphological complexity after the long-distance non-stop flight, but the reduction in complexity was much greater in Type I than in Type II astrocytes. Coherently, we also found a significant reduction in the total number of astrocytes after the transatlantic flight. Taken together these findings suggest that the long-distance non-stop flight altered significantly the astrocytes population and that morphologically distinct astrocytes may play different physiological roles during migration.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 32 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 32 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 5 16%
Student > Master 4 13%
Researcher 4 13%
Student > Ph. D. Student 4 13%
Student > Doctoral Student 2 6%
Other 4 13%
Unknown 9 28%
Readers by discipline Count As %
Neuroscience 8 25%
Agricultural and Biological Sciences 4 13%
Nursing and Health Professions 3 9%
Medicine and Dentistry 2 6%
Environmental Science 1 3%
Other 3 9%
Unknown 11 34%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 2. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 10 January 2018.
All research outputs
#14,963,216
of 23,015,156 outputs
Outputs from Frontiers in Neuroanatomy
#714
of 1,167 outputs
Outputs of similar age
#256,093
of 442,576 outputs
Outputs of similar age from Frontiers in Neuroanatomy
#27
of 41 outputs
Altmetric has tracked 23,015,156 research outputs across all sources so far. This one is in the 32nd percentile – i.e., 32% of other outputs scored the same or lower than it.
So far Altmetric has tracked 1,167 research outputs from this source. They typically receive more attention than average, with a mean Attention Score of 8.9. This one is in the 33rd percentile – i.e., 33% of its peers scored the same or lower than it.
Older research outputs will score higher simply because they've had more time to accumulate mentions. To account for age we can compare this Altmetric Attention Score to the 442,576 tracked outputs that were published within six weeks on either side of this one in any source. This one is in the 39th percentile – i.e., 39% of its contemporaries scored the same or lower than it.
We're also able to compare this research output to 41 others from the same source and published within six weeks on either side of this one. This one is in the 26th percentile – i.e., 26% of its contemporaries scored the same or lower than it.