24 research outputs found

    Pengaruh Komunikasi Terapeutik Perawat Terhadap Kepuasan Pasien Di Rawat Jalan RSUD Jogja

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    The Objective of this study is to know influence of nurse therapeutic communication to satisfaction of patients satisfaction in RSUD Yogyakarta. The study was a quantitative research methods such as surveys of descriptive inferential research with cross sectional approach. Number of samples in this research is 285 sample in inpatient and 140 in emergency room. The instrument used a questionnaire. Analysis of data using multiple linear regression. This study show that there is the influence of therapeutic communication nurse to satisfaction of outpatients and Emergency room in RSUD Yogyakarta, and orientation phase is a phase that most influence on patient satisfaction. The most influential to therapeutic communication is termination stage

    Nanoscale Confinement and Fluorescence Effects of Bacterial Light Harvesting Complex LH2 in Mesoporous Silicas

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    Many key chemical and biochemical reactions, particularly in living cells, take place in confined space at the mesoscopic scale. Toward understanding of physicochemical nature of biomacromolecules confined in nanoscale space, in this work we have elucidated fluorescence effects of a light harvesting complex LH2 in nanoscale chemical environments. Mesoporous silicas (SBA-15 family) with different shapes and pore sizes were synthesized and used to create nanoscale biomimetic environments for molecular confinement of LH2. A combination of UV-vis absorption, wide-field fluorescence microscopy, and in situ ellipsometry supports that the LH2 complexes are located inside the silica nanopores. Systematic fluorescence effects were observed and depend on degree of space confinement. In particular, the temperature dependence of the steady-state fluorescence spectra was analyzed in detail using condensed matter band shape theories. Systematic electronic-vibrational coupling differences in the LH2 transitions between the free and confined states are found, most likely responsible for the fluorescence effects experimentally observed

    Probing Structural and Catalytic Characteristics of Galactose Oxidase Confined in Nanoscale Chemical Environments

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    Synopsis: structural and catalytic features of a complex enzyme galactose oxidase confined in nanoscale chemical environments wereinvestigatedto show the catalytic efficiency of the enzyme depending on both the degree of space confinement and immobilization method.</p

    Nanoscale Confinement and Fluorescence Effects of Bacterial Light Harvesting Complex LH2 in Mesoporous Silicas

    No full text
    Many key chemical and biochemical reactions, particularly in living cells, take place in confined space at the mesoscopic scale. Toward understanding of physicochemical nature of biomacromolecules confined in nanoscale space, in this work we have elucidated fluorescence effects of a light harvesting complex LH2 in nanoscale chemical environments. Mesoporous silicas (SBA-15 family) with different shapes and pore sizes were synthesized and used to create nanoscale biomimetic environments for molecular confinement of LH2. A combination of UV–vis absorption, wide-field fluorescence microscopy, and in situ ellipsometry supports that the LH2 complexes are located inside the silica nanopores. Systematic fluorescence effects were observed and depend on degree of space confinement. In particular, the temperature dependence of the steady-state fluorescence spectra was analyzed in detail using condensed matter band shape theories. Systematic electronic-vibrational coupling differences in the LH2 transitions between the free and confined states are found, most likely responsible for the fluorescence effects experimentally observed

    Dieu, tu n'es jamais aussi beau que sur une face humaine

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    Katsuya Araki, Naoto Yagi, Yuka Ikemoto, Hisashi Yagi, Chi-Jing Choong, Hideki Hayakawa, Goichi Beck, Hisae Sumi, Harutoshi Fujimura, Taro Moriwaki, Yoshitaka Nagai, Yuji Goto & Hideki Mochizuki "Synchrotron FTIR micro-spectroscopy for structural analysis of Lewy bodies in the brain of Parkinson’s disease patients", Scientific Reports, volume 5, Article number: 17625, Springer Nature, 201

    Assessment of urine partial oxygen pressure to predict postoperative acute kidney injury in major surgical patients

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     Urine partial oxygen pressure (PuO2) was monitored in postoperative intensive care unit (ICU) patients to verify if an earlier diagnosis of acute kidney injury (AKI) is possible. Fifty-nine patients who were admitted to the ICU after surgery for at least 48 hours at Kawasaki Medical Center between January 2019 and June 2020 were assessed for AKI using the Kidney Disease: Improving Global Outcome (KDIGO) criteria. The AKI group had 15 patients while the non-AKI group had 44 cases. The PuO2 of each group showed no significant difference. Arterial partial oxygen pressure (PaO2) was measured concurrently with PuO2. When the ratio of PuO2 to PaO2 (PuO2 / PaO2) from each group was compared, the AKI group had a significantly higher ratio just 2 hours after admission to the ICU. Reduced oxygen consumption in the renal medulla may be a possible cause of AKI in those patients. Thus, measuring the PuO2 / PaO2 ratio in postoperative patients 2 hours after ICU admission could be useful to predict AKI earlier than is currently done
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