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Browsing by Subject "heterogeneity"

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  • Mäkinen, Hilla (2023)
    Morphological features are considered as markers of microglial functionality, and they show regional heterogeneity in the brain. Recently the sleep-wake cycle was shown to affect microglial morphology in mice and correlate with cortical sleep slow wave activity (SWA). Microglial sizes and ramification increased during the dark period and decreased during the light period in cerebral areas associated with SWA, suggesting that neuronal activation could be affecting microglial morphology through SWA. I studied microglia in the hindbrain areas with and without functional connection to SWA to further investigate the association between SWA and alterations in morphology, and to investigate if there are differences in microglial morphology and their diurnal alterations in brain regions other than those commonly investigated. I examined three hindbrain areas (cerebellar cortex (CC), deep cerebellar nucleus (DCN) and medial vestibular nucleus (MVN)) and somatosensory cortex (SC) of mice (n=15) at two timepoints: 6 hours after the light onset (high SWA) and offset (low SWA). My aims were to answer if there are morphological differences in microglia between 1) the four brain areas at both timepoints and 2) between the two timepoints in each brain area. My hypotheses were that CC and DCN which have functional connections to cortical SWA, would show similar diurnal morphology alterations as demonstrated in the cerebral areas, and MVN that has no known cortical SWA connection, would lack significant alterations. As microglia are heterogenous throughout brain, I expected microglia to differ between different brain areas, especially the hindbrain and the SC. I found that microglial morphologies significantly differed between the hindbrain and the cortex, while the hindbrain areas were more similar in morphology. Moreover, the brain areas demonstrated diurnal morphology alterations of microglia with varying extent: CC and DCN microglial morphology did not correlate with SWA as clearly as SC did, and interestingly, morphological features of MVN microglia showed a pattern opposite to other areas, microglia being larger during the light period than the dark period. These results highlight the importance of the diurnal time to microglial morphology and the heterogeneity of microglia between different brain regions.
  • Tahvanainen, Meeri (2022)
    The ongoing growth and densification of urban areas is threatening biodiversity in cities. Previously continuous habitats are reduced and fragmented into smaller areas, which increases the edge effect and changes the qualities of the original habitat. Urban greenspaces are frequently used by people, and disturbances, such as trampling, and understorey management are increasing the similarity of habitat patches (i.e. homogenisation). In this study, I investigated the effects of small-scale homogeneity in forests produced by urbanisation on the distribution patterns and trait composition of carabid beetles. Sampling was done with pitfall traps during the summer of 2021 and altogether 21 study sites were selected in the City of Lahti, Finland. The study sites represented three different environments: 1) structurally complex (heterogenous) habitat in remnant spruce forests in the city, 2) structurally simple (homogenous) habitat in remnant spruce forests in the city, 3) structurally simple habitat under spruce trees in managed urban parks. In addition to the beetles, a set of environmental variables was collected to quantify the complexity of the three habitat types. As expected, habitat homogeneity affected carabid beetle species composition so that the proportion of generalist and open-habitat species was greater in homogenous sites, including homogenous forest remnants and highly homogenous urban parks, whereas the proportion of forest specialists was greater in heterogenous forests. Species richness was higher in the homogenous sites due to species-rich open-habitat genera in the carabid beetle family. Trait distribution at the community level showed clear differences between the three studied habitat types. As expected, the proportions of large and heavy species were higher in the forest habitats than in the parks, whereas homogenous habitats, especially highly homogenous park sites consisted of a higher proportion of flight capable species than heterogenous forests. At the species level, individual beetles were generally smaller in the parks, whereas the results between the two forest types varied and a clear difference between habitat specialists and generalists could not be detected. As cities grow, keeping the management of greenspaces moderate, selecting native vegetation, and preserving decaying woody material are ways to increase habitat heterogeneity, which according to this study, can support biodiversity and life of different organisms in urban areas.