144 research outputs found

    Synchronous multi-segmental activity between metachronal waves controls locomotion speed in Drosophila larvae

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    Japan Society for the Promotion of Science KAKENHI, Royal Society of Edinburgh grant 64553 Maarten F ZwartThe ability to adjust the speed of locomotion is essential for survival. In limbed animals, the frequency of locomotion is modulated primarily by changing the duration of the stance phase. The underlying neural mechanisms of this selective modulation remain an open question. Here, we report a neural circuit controlling a similarly selective adjustment of locomotion frequency in Drosophila larvae. Drosophila larvae crawl using peristaltic waves of muscle contractions. We find that larvae adjust the frequency of locomotion mostly by varying the time between consecutive contraction waves, reminiscent of limbed locomotion. A specific set of muscles, the lateral transverse (LT) muscles, co-contract in all segments during this phase, the duration of which sets the duration of the interwave phase. We identify two types of GABAergic interneurons in the LT neural network, premotor neuron A26f and its presynaptic partner A31c, which exhibit segmentally synchronized activity and control locomotor frequency by setting the amplitude and duration of LT muscle contractions. Altogether, our results reveal an inhibitory central circuit that sets the frequency of locomotion by controlling the duration of the period in between peristaltic waves. Further analysis of the descending inputs onto this circuit will help understand the higher control of this selective modulation.Publisher PDFPeer reviewe

    Complication of Chronic Eosinophilic Pneumonia in an Elderly Patient with Sjögren Syndrome

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    An 81-year-old Japanese male with primary Sjögren syndrome (pSS) developed a low-grade fever and productive cough which were refractory to antibiotic therapy. Based on the high level of eosinophils observed in his bronchial alveolar lavage, he was diagnosed with chronic eosinophilic pneumonia (CEP) and successfully treated by oral prednisolone. Interstitial lung diseases associated with pSS (pSS-ILDs) usually present as nonspecific interstitial pneumonia or usual interstitial pneumonia; therefore, the present case is extremely unique in that the patientʼs condition was complicated with CEP. A diagnosis of advanced gallbladder cancer was made in the patientʼs clinical course, suggesting the advisability of a whole-body workup in cases of pSS, especially in elderly patients

    Concentric zones, cell migration and neuronal circuits in the Drosophila visual center

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    金沢大学フロンティアサイエンス機構The Drosophila optic lobe comprises a wide variety of neurons, which form laminar neuropiles with columnar units and topographic projections from the retina. The Drosophila optic lobe shares many structural characteristics with mammalian visual systems. However, little is known about the developmental mechanisms that produce neuronal diversity and organize the circuits in the primary region of the optic lobe, the medulla. Here, we describe the key features of the developing medulla and report novel phenomena that could accelerate our understanding of the Drosophila visual system. The identities of medulla neurons are pre-determined in the larval medulla primordium, which is subdivided into concentric zones characterized by the expression of four transcription factors: Drifter, Runt, Homothorax and Brain-specific homeobox (Bsh). The expression pattern of these factors correlates with the order of neuron production. Once the concentric zones are specified, the distribution of medulla neurons changes rapidly. Each type of medulla neuron exhibits an extensive but defined pattern of migration during pupal development. The results of clonal analysis suggest homothorax is required to specify the neuronal type by regulating various targets including Bsh and cell-adhesion molecules such as N-cadherin, while drifter regulates a subset of morphological features of Drifter-positive neurons. Thus, genes that show the concentric zones may form a genetic hierarchy to establish neuronal circuits in the medulla.出版社許諾要件により、2012年3月より全文公開

    Recognition of the "team medical-care" in medical field.

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    チーム医療に対して高い関心が寄せられていることから,チーム医療として認識される具体的な事柄や各職種に対する認識,その利点や職種間の認識の違いなどを明らかにする目的で,岡山県内の病院の看護師,診療放射線技師,臨床検査技師,計652名に対してアンケート調査を行った。有効回答者数470名で,その内訳は看護師207名,診療放射線技師91名,臨床検査技師172名であった。結果はチーム医療と認識される具体的な事柄については,異業種間カンファレンスがチーム医療を促進する事柄として認識されているが,整備・実施されていないことがうかがえた。各職種に対する認識については,職種別・経験年数別にみても,医師,看護師,理学・作業療法士はチーム医療のメンバーとして認識されている割合が高かった。また,経験年数別では,10~14年の人までは統計上ややばらつきがみられるが,経験年数15年以上の人はあらゆる職種をチーム医療のメンバーであると考え,その重要性を認識していることがわかった。チーム医療の利点については,どの職種も共通して「患者中心の医療」と考えている割合が高かった。Recently, the "team medical-care" has been received increasing attention in medical field. Therefore we have to develop a clear understanding of "team medical-care". The purpose of this study is to investigate things regarded as "team medical-care" by co-medical, recognition of other category of license, the advantages of "team medical-care" and recognition against the "team medical-care" by different category of license. Total 652 nurses, clinical radiological technologists and clinical laboratory technologists who are working at 8 hospitals in Okayama prefecture were examined by using questionnaire and 470 members (72.1%) responded to it. They were nurses 207 (44.0%), clinical radiological technologists 91 (19.4%), clinical laboratory technologists 172 (36.6%). Majority of respondents recognized that the medical conference consisted of different category of license promoted the "team medical-care", and ninety percent of participants prompted more frequent medical conference. In both by category of license and years of experience, they regarded doctor, nurse, physical therapist and occupational therapist as the menber of the "team medical-care" at high rate. The respondences which have over 15 years of experience regarded all category of license as the menber of the "team medical-care", while the respondences which have less than 10 to 14 years of experience showed disperision of the recongnition. The advantages of "team medical-care" were highly perceived as "patient-centered medical care" by all category of license

    メタボリック シンドローム ノ シンダン ニ カンスル ケンキュウ

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    501例の生活習慣病予防検診受診者について検討した。 ウエスト周囲径の増加と共に有症候数、リスクファクター数、異常者出現率のオッズ比は増加した。 501例のうち、メタボリックシンドロームと診断された者は、男性は364例中75例(20.6%)、女性は137例中10例(7.3%)であった。ウエスト周囲径異常(男性85cm以上、女性90cm以上)があると、すぐにメタボリックシンドロームと考えられがちであるが、男性193例中75例(38.9%)、女性21例中10例(47.6%)がメタボリックシンドロームであり、男女ともウエスト周囲径異常者の半数以下しか同シンドロームと診断されなかった。また、ウエスト周囲径(必須)以外の診断項目(血圧、脂質、血糖異常)のうち、血圧が関与して診断された例は男性92%、女性100%であり、血清脂質異常と血糖異常のみでメタボリックシンドロームと診断された例は男性の8%、女性の0%であった。これによりメタボリックシンドロームにおける高血圧の関与が注目された

    Evolution of Developmental Programs for the Midline Structures in Chordates: Insights From Gene Regulation in the Floor Plate and Hypochord Homologues of Ciona Embryos

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    In vertebrate embryos, dorsal midline tissues, including the notochord, the prechordal plate, and the floor plate, play important roles in patterning of the central nervous system, somites, and endodermal tissues by producing extracellular signaling molecules, such as Sonic hedgehog (Shh). In Ciona, hedgehog.b, one of the two hedgehog genes, is expressed in the floor plate of the embryonic neural tube, while none of the hedgehog genes are expressed in the notochord. We have identified a cis-regulatory region of hedgehog.b that was sufficient to drive a reporter gene expression in the floor plate. The hedgehog.b cis-regulatory region also drove ectopic expression of the reporter gene in the endodermal strand, suggesting that the floor plate and the endodermal strand share a part of their gene regulatory programs. The endodermal strand occupies the same topographic position of the embryo as does the vertebrate hypochord, which consists of a row of single cells lined up immediately ventral to the notochord. The hypochord shares expression of several genes with the floor plate, including Shh and FoxA, and play a role in dorsal aorta development. Whole-embryo single-cell transcriptome analysis identified a number of genes specifically expressed in both the floor plate and the endodermal strand in Ciona tailbud embryos. A Ciona FoxA ortholog FoxA.a is shown to be a candidate transcriptional activator for the midline gene battery. The present findings suggest an ancient evolutionary origin of a common developmental program for the midline structures in Olfactores

    Role of Palladin Phosphorylation by Extracellular Signal-Regulated Kinase in Cell Migration

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    Phosphorylation of actin-binding proteins plays a pivotal role in the remodeling of the actin cytoskeleton to regulate cell migration. Palladin is an actin-binding protein that is phosphorylated by growth factor stimulation; however, the identity of the involved protein kinases remains elusive. In this study, we report that palladin is a novel substrate of extracellular signal-regulated kinase (ERK). Suppression of ERK activation by a chemical inhibitor reduced palladin phosphorylation, and expression of active MEK alone was sufficient for phosphorylation. In addition, an in vitro kinase assay demonstrated direct palladin phosphorylation by ERK. We found that Ser77 and Ser197 are essential residues for phosphorylation. Although the phosphorylation of these residues was not required for actin cytoskeletal organization, we found that expression of non-phosphorylated palladin enhanced cell migration. Finally, we show that phosphorylation inhibits the palladin association with Abl tyrosine kinase. Taken together, our results indicate that palladin phosphorylation by ERK has an anti-migratory function, possibly by modulating interactions with molecules that regulate cell migration
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