Publications by authors named "Ishiyama T"

Electrochemical devices that can operate at temperatures of 200-300 °C are expected to become the next-generation energy conversion devices in fuel cells and electrosynthesis, which are important for achieving carbon neutrality. Proton conductors based on phosphate glasses are being developed as candidate materials for such devices. We recently developed a glass proton conductor by using silicophosphoric acid based on the idea of solidifying phosphoric acid with silicon as a cross-linking glass framework.

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Molecular dynamics (MD) simulations of short-chain alcohols (methanol, ethanol, and 1-propanol) in solution were carried out to examine the orientational disordering (randomizing) of alcohol molecules at the surface under diluted conditions. Recent vibrational sum frequency generation (VSFG) spectroscopy, combined with photoelectron spectroscopy, has successfully measured the disordering structure at low concentrations. The present MD simulations accurately reproduce this observation for the first time.

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Molecular dynamics simulations were performed to investigate the interfacial structure of the N,N'-di-n-alkyl-3,4,9,10-perylenetetracarboxylic diimide (PTCDI)/rubrene interface, which represents the donor/acceptor interface in new types of organic light-emission diodes. In particular, the interfacial structure was examined for different alkyl chain lengths of PTCDI (Cn-PTCDI) at n = 4, 8, and 13, in order to elucidate the observed maximum charge transfer efficiency at the C8-PTCDI/rubrene interface in a recent experiment. The results revealed that the molecular conformation of the acceptor (Cn-PTCDI) molecules at the interface undergoes changes depending on the alkyl chain length when interacting with the rubrene molecule.

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Molecular dynamics (MD) simulations were conducted to investigate the hydrogen-bond (H-bond) structure and its impact on the tensile strength of hydrated amorphous cellulose. The study identifies a stable intramolecular H-bond between the hydroxyl group at position 3 and the ether oxygen at position 5 (OH3···O5). Intermolecularly, the hydroxyl groups at positions 2 (OH2) and 6 (OH6) form stable H-bonds.

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Aim: The impact of cognitive dysfunction-associated activities of daily living (ADL) on mortality and rehospitalization for heart failure has not yet been evaluated.

Methods: We retrospectively evaluated DASC-21, the incidence of all-cause mortality, and rehospitalization for heart failure after discharge in 329 older patients with heart failure.

Results: The mean age was 85.

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Background: A majority of Japanese care managers lack medical qualifications, feel uncomfortable discussing future medical choices and believe that it is not their responsibility.

Objectives: As there is a paucity of care manager intervention studies, this study aimed to measure changes in advance care planning engagement among long-term care service users before and after intervention by care managers with communication training.

Design: A multi-institutional pre- and post-pilot comparative study.

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The external compensatory means recommended for rehabilitation of memory disorder must consist of a means for storing information externally and a clue for accessing the externally stored information. Writing down the information on a paper pocketbook is usually used as an external compensatory means, but smartphones are overwhelmingly more useful in terms of the functions as compared to paper pocketbooks. The author, who has a memory disorder and works as an occupational therapist, has recently devised a method for utilizing a smartphone for overcoming the inconveniences during daily living and herein describes how to use it in daily life scenarios.

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Microscopic evaluation is one of the most effective methods in materials research. High-quality images are essential to analyze microscopic images using artificial intelligence. To overcome this challenge, we propose the machine learning of "fake micrographs" in this study.

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Aim: We investigated whether the Dementia Assessment Sheet for Community-based Integrated Care System-21 Items (DASC-21), a questionnaire that assesses cognitive function, including activities of daily living (ADL), was predictive of in-hospital death and prolonged hospital stay in elderly patients hospitalized for heart failure.

Methods: We retrospectively assessed the DASC-21 score at the time of admission, in-hospital death, length of hospital stay, and change in the Barthel index in 399 patients hospitalized for heart failure between 2016 and 2019.

Results: The mean patient age was 85.

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Polycrystalline Ge thin films have attracted considerable attention as potential materials for use in various electronic and optical devices. We recently developed a low-temperature solid-phase crystallization technology for a doped Ge layer and achieved the highest electron mobility in a polycrystalline Ge thin film. In this study, we investigated the effects of strain on the crystalline and electrical properties of n-type polycrystalline Ge layers.

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There are no clear criteria for selecting elderly patients with hematologic malignancies eligible for allogeneic hematopoietic stem cell transplantation (HSCT). This study aimed to evaluate inflammatory and nutritional status biomarkers as prognostic indicators of allogeneic HSCT in elderly patients. We compared the prognostic effects of 4 representative pretransplantation biomarkers: C-reactive protein-to-albumin ratio (CAR), Glasgow Prognostic Score (GPS), prognostic nutritional index (PNI), and albumin-to-globulin ratio (AGR).

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Purpose: Perioperative shivering is common and can occur as a result of hypothermia or changes in the threshold of thermoregulation. Droperidol usage for anesthesia is currently limited to its sedative and antiemetic effects. We investigated the effects of high and low doses of droperidol on the shivering threshold in rabbits.

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Article Synopsis
  • The study focused on how tungsten oxide (WO) affects the thermal stability and proton conduction properties of a specific glass composition, examining key metrics like the glass transition temperature and activation energy.
  • It was found that increasing the amount of WO led to a significant rise in both thermal stability and proton mobility, aligning with predictions made by a linear regression model.
  • The improvements were mainly due to new P-O-W linkages that enhanced the connectivity of the phosphate chains and reduced energy barriers for proton movement.
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We observe a weakly allowed optical transition of atomic ytterbium from the ground state to the metastable state 4f^{13}5d6s^{2} (J=2) for all five bosonic and two fermionic isotopes with resolved Zeeman and hyperfine structures. This inner-shell orbital transition has been proposed as a new frequency standard as well as a quantum sensor for new physics. We find magic wavelengths through the measurement of the scalar and tensor polarizabilities and reveal that the measured trap lifetime in a three-dimensional optical lattice is 1.

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Ultrafast electronic relaxation of nucleobases from ππ* states to the ground state (S) is considered essential for the photostability of DNA. However, transient absorption spectroscopy (TAS) has indicated that some nucleobases in aqueous solutions create long-lived nπ*/ππ* dark states from the ππ* states with a high quantum yield of 0.4-0.

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Background: During cardiopulmonary resuscitation, the brain becomes ischemic. Adrenaline and vasopressin have been recommended for use during cardiopulmonary resuscitation. We aimed to investigate the direct effects of adrenaline and vasopressin on the cerebral microvasculature at baseline and during ischemia and reperfusion in rabbits.

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Background: With recent advances in robot-assisted techniques, an increasing number of surgeries are being performed with pneumoperitoneum and head-down maneuver (HDM) that may affect the cerebral microcirculation. For the first time, this study investigated the direct influence of pneumoperitoneum and HDM on the cerebral microvasculature in rabbits.

Methods: Adult male rabbits were randomly allocated to the following groups (n = 7 each): control, pneumoperitoneum alone (P), and pneumoperitoneum with HDM (P + HDM) for 120 min.

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Group IV materials are promising candidates for highly reliable and human-friendly thin-film thermoelectric generators, used for micro-energy harvesting. In this study, we investigated the synthesis and thermoelectric applications of a Ge-based ternary alloy thin film, GeSiSn. The solid-phase crystallization of the highly densified amorphous precursors allowed the formation of high-quality polycrystalline GeSiSn layers on an insulating substrate.

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Rhabdomyosarcoma (RMS) is a nonepithelial malignant tumor that differentiates into immature skeletal muscle. It is currently classified into 4 main subtypes according to the WHO classification. However, based on clinicopathological and molecular findings, there has been an increasing number of cases that do not fit into any of these subtypes.

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With the development of practical thin-film batteries, multilayer graphene (MLG) is being actively investigated as an anode material. Therefore, research on determining a technique to fabricate thick MLG on arbitrary substrates at low temperatures is essential. In this study, we formed an MLG with controlled thickness at low temperatures using a layer exchange (LE) technique and evaluated its anode properties.

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Background: Sternoclavicular joint infections require en bloc resection for radical cure; however, this aggressive procedure may result in multiple adverse events. Therefore, performing minimally invasive surgery is desirable. In this report, we describe a case of sternoclavicular joint infection complicated by osteomyelitis, large abscesses, and mediastinitis that was successfully treated with incision and drainage.

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Ischemic brain injury is one of the most serious perioperative complications. However, effective preventative methods have not yet been established. This study aimed to investigate whether propofol has neuroprotective effects against ischemic brain injury, with a specific focus on Toll-like receptor 4 (TLR4).

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The regulation of H evolution from formic acid dehydrogenation using recyclable photocatalyst films is an essential approach for on-demand H production. We have successfully generated Au-Cu nanoalloys using a laser ablation method and deposited them on TiO photocatalyst films (Au Cu /TiO). The Au-Cu/TiO films were employed as photocatalysts for H production from formic acid dehydrogenation under light-emitting diode (LED) irradiation (365 nm).

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