35 research outputs found

    Innate Immune Pathways Promote Oligodendrocyte Progenitor Cell Recruitment to the Injury Site in Adult Zebrafish Brain

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    The oligodendrocyte progenitors (OPCs) are at the front of the glial reaction to the traumatic brain injury. However, regulatory pathways steering the OPC reaction as well as the role of reactive OPCs remain largely unknown. Here, we compared a long-lasting, exacerbated reaction of OPCs to the adult zebrafish brain injury with a timely restricted OPC activation to identify the specific molecular mechanisms regulating OPC reactivity and their contribution to regeneration. We demonstrated that the influx of the cerebrospinal fluid into the brain parenchyma after injury simultaneously activates the toll-like receptor 2 (Tlr2) and the chemokine receptor 3 (Cxcr3) innate immunity pathways, leading to increased OPC proliferation and thereby exacerbated glial reactivity. These pathways were critical for long-lasting OPC accumulation even after the ablation of microglia and infiltrating monocytes. Importantly, interference with the Tlr1/2 and Cxcr3 pathways after injury alleviated reactive gliosis, increased new neuron recruitment, and improved tissue restoration

    Structure and functioning of the benthic faunal communities during mangroves development in French Guiana

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    La compréhension des processus contrôlant le fonctionnement des mangroves est capitale au vu des services socio-économiques/écosystémiques rendus par ces écosystèmes et des menaces qu’ils subissent. En Guyane Française, les mangroves se développent rapidement en réponse aux contraintes sédimentaires récurrentes induites naturellement par les apports sédimentaires amazoniens. Cette thèse étudie la structure et la composition de trois classes de taille de communautés benthique (méso, macro, mégafaune), et les activités de bioturbation associées (remaniement sédimentaire biologique : RS, terriers) dans les jeunes stades de mangrove. 51 taxons de méso-macrofaune et 12 espèces de crabes (mégafaune) ont été identifiés. Bien que la biodiversité benthique soit spécifique à l'âge de la mangrove, des taxons tolèrent les modifications brusques du milieu, et cette persistance maintient des fonctions clés du remaniement sédimentaire tout au long du développement des mangroves. L’intensité du RS varie le long de ce gradient (21-146 g PS.m-2.cycle tidal-1). Si les crabes dominent le RS, cette thèse souligne la contribution effective de la méso-macrofaune aux transports particulaires. Les communautés benthiques montrent des capacités de bioturbation adaptées aux instabilités récurrentes du littoral. Les variations du RS au cours du temps pourraient indiquer l’état fonctionnel des mangroves. Cette étude conclut que l’hétérogénéité morpho-sédimentaire au sein des jeunes stades de mangroves influence la structuration spatiale des crabes, le remaniement sédimentaire qu’ils induisent, et la morphologie des terriers. Les microhabitats devraient être considérés lors de l'évaluation du rôle fonctionnel de la faune benthique des mangroves.Understanding the processes that control mangroves functioning is essential regarding the socioeconomic/ecosystemic services these ecosystems provide and the increasing threats they suffer. In French Guiana, mangroves grow rapidly in response to natural sedimentary perturbations caused by sediment inputs from the Amazon River. This thesis characterizes the structure and the composition of benthic fauna communities (three size classes: meso-, macro- and megafauna) and the associated bioturbation activities (biological sediment reworking: SR, burrows) in mangrove early growth stages. 51 meso- macrofaunal taxa and 12 crab (megafauna) species were identified.Despite a mangrove age specific biodiversity, some taxa tolerate abrupt environmental changes, and such persistence maintains key sediment reworking functions along mangrove development.The SR intensity varies along this gradient from 21 to 146 g DW.m-2.tidal cycle-1. Burrower crabs dominate the SR but this thesis also outlines the non-negligible contribution of smaller-sized (meso- and macrofauna) organisms to particulate transport. Benthic communities’ bioturbation capacities are adapted to recurrent environmental instabilities. Changes of the biologicallyinduced SR may be used as a proxy of the functional status of mangrove ecosystems. This study concludes that morpho-sedimentary heterogeneity of early-growth mangrove stages influences crab spatial structuration, the crab-induced sediment reworking and burrow shapes. Thus, microhabitat specificities should be considered when evaluating the role of benthic fauna in mangroves ecosystem functioning

    Structure and functioning of the benthic faunal communities during mangroves development in French Guiana

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    La compréhension des processus contrôlant le fonctionnement des mangroves est capitale au vu des services socio-économiques/écosystémiques rendus par ces écosystèmes et des menaces qu’ils subissent. En Guyane Française, les mangroves se développent rapidement en réponse aux contraintes sédimentaires récurrentes induites naturellement par les apports sédimentaires amazoniens. Cette thèse étudie la structure et la composition de trois classes de taille de communautés benthique (méso, macro, mégafaune), et les activités de bioturbation associées (remaniement sédimentaire biologique : RS, terriers) dans les jeunes stades de mangrove. 51 taxons de méso-macrofaune et 12 espèces de crabes (mégafaune) ont été identifiés. Bien que la biodiversité benthique soit spécifique à l'âge de la mangrove, des taxons tolèrent les modifications brusques du milieu, et cette persistance maintient des fonctions clés du remaniement sédimentaire tout au long du développement des mangroves. L’intensité du RS varie le long de ce gradient (21-146 g PS.m-2.cycle tidal-1). Si les crabes dominent le RS, cette thèse souligne la contribution effective de la méso-macrofaune aux transports particulaires. Les communautés benthiques montrent des capacités de bioturbation adaptées aux instabilités récurrentes du littoral. Les variations du RS au cours du temps pourraient indiquer l’état fonctionnel des mangroves. Cette étude conclut que l’hétérogénéité morpho-sédimentaire au sein des jeunes stades de mangroves influence la structuration spatiale des crabes, le remaniement sédimentaire qu’ils induisent, et la morphologie des terriers. Les microhabitats devraient être considérés lors de l'évaluation du rôle fonctionnel de la faune benthique des mangroves.Understanding the processes that control mangroves functioning is essential regarding the socioeconomic/ecosystemic services these ecosystems provide and the increasing threats they suffer. In French Guiana, mangroves grow rapidly in response to natural sedimentary perturbations caused by sediment inputs from the Amazon River. This thesis characterizes the structure and the composition of benthic fauna communities (three size classes: meso-, macro- and megafauna) and the associated bioturbation activities (biological sediment reworking: SR, burrows) in mangrove early growth stages. 51 meso- macrofaunal taxa and 12 crab (megafauna) species were identified.Despite a mangrove age specific biodiversity, some taxa tolerate abrupt environmental changes, and such persistence maintains key sediment reworking functions along mangrove development.The SR intensity varies along this gradient from 21 to 146 g DW.m-2.tidal cycle-1. Burrower crabs dominate the SR but this thesis also outlines the non-negligible contribution of smaller-sized (meso- and macrofauna) organisms to particulate transport. Benthic communities’ bioturbation capacities are adapted to recurrent environmental instabilities. Changes of the biologicallyinduced SR may be used as a proxy of the functional status of mangrove ecosystems. This study concludes that morpho-sedimentary heterogeneity of early-growth mangrove stages influences crab spatial structuration, the crab-induced sediment reworking and burrow shapes. Thus, microhabitat specificities should be considered when evaluating the role of benthic fauna in mangroves ecosystem functioning

    Identity control of pharmaceutical adjuvants via NIR-spectroscopy and build up an appropriate database

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    Pharmaceutical adjuvants or excipients are important ingredients of medicaments. These substances are used as support and for building the matrix for the active ingredients. In this way, the active ingredients will be realised in accurately and defined way at the specific site of action. In this study, the most important pharmaceutical adjuvants are characterised and analysed via near infrared-spectroscopic methods. The powdery samples were measured by means of diffuse reflectance with six NIR-spectrometer. The obtained NIR-spectra were used to build a near infrared spectra library based on SpecInfo systems of the firm Chemical Concepts. Furthermore, discrimination analysis were carried out, while reference spectra were compared with the database for performing an identity control

    L'avenir du coke en France

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    Geschichte der alten Jülich'schen Residenz Nideggen

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    von J. F. Martin Aschenbroic

    Virtopsy: CT and MR imaging of a fatal head injury caused by a hatchet: A case report

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    Hatchet blows to the human skull often cause fatal injuries. We present a case of homicide by hatchet blow that underwent CT, MRI, and autopsy examination. Skull fragmentation, fracture lines, and brain injuries were demonstrated prior to autopsy. Many of the hatchet-specific characteristics (flaking, crushing, shattering, and fracture lines) described in literature were observed in the post-mortem imaging of this case
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