733 results match your criteria: "Toyota Physical & Chemical Research Institute[Affiliation]"

Skeletal muscles contain lipids inside and outside cells, namely intramyocellular lipids (IMCL) and extramyocellular lipids (EMCL), respectively; lipids have also been found to be interspersed between these muscles as adipose tissue, namely intermuscular adipose tissue (IMAT). Metabolized IMCL has been recognized as an important substrate for energy production and their metabolism is determined by the muscle oxidative capacity. Therefore, it has been speculated that muscle oxidative capacity is related to muscle lipid content.

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Objective: Compare time to recovery between initial and repeat concussions.

Design: Retrospective review of electronic medical record.

Setting: An interdisciplinary concussion clinic.

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: the purpose of this study was to determine the contributions of mechanical, neural, morphological, and muscle quality factors on individual differences in the maximal ankle dorsiflexion range of motion (ROM). : A sample of 41 university students performed passive-dorsiflexion and morphological measurements. In the passive-dorsiflexion measurement, while the ankle was passively dorsiflexed, maximal dorsiflexion ROM was measured in addition to passive torque at a given angle and muscle-tendon junction (MTJ) displacement during the last 13° as mechanical factors, and stretch tolerance and muscle activation were measured as neural factors.

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Artificial Control of Giant Converse Magnetoelectric Effect in Spintronic Multiferroic Heterostructure.

Adv Sci (Weinh)

December 2024

Center for Spintronics Research Network, Graduate School of Engineering Science, Osaka University, 1-3 Machikaneyama, Toyonaka, Osaka, 560-8531, Japan.

To develop voltage-controlled magnetization switching technologies for spintronics applications, a highly (422)-oriented CoFeSi layer on top of the piezoelectric PMN-PT(011) is experimentally demonstrated by inserting a vanadium (V) ultra-thin layer. The strength of the growth-induced magnetic anisotropy of the (422)-oriented CoFeSi layers can be artificially controlled by tuning the thicknesses of the inserted V and the grown CoFeSi layers. As a result, a giant converse magnetoelectric effect (over 10 s m) and a non-volatile binary state at zero electric field are simultaneously achieved in the (422)-oriented CoFeSi/V/PMN-PT(011) multiferroic heterostructure.

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Voluntary breathing (VB), short-term exercise (STE), and mental stress (MS) can modulate breathing rate (BR), heart rate (HR), and blood pressure (BP), thereby affecting human physical and mental state. While existing experimental studies have explored the relationship between VB, STE, or MS and BR, HR, and BP changes, their findings remain fragmented due to individual differences and challenges in simultaneous, BR, HR, and BP measurements. We propose a computational approach for in-silico simultaneous measurements of the physiological values by comprehensive prediction of the respiratory and circulatory system responses to VB, STE, or MS.

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On the phase behaviors of CH4-CO2 binary clathrate hydrates: Equilibrium with aqueous phase.

J Chem Phys

December 2024

Division of Chemical Engineering, Graduate School of Engineering Science, Osaka University, Osaka 560-8531, Japan.

We explore the solubilities of guest CH4 and/or CO2 in the aqueous state coexisting with the corresponding hydrate. The equilibrium conditions are estimated by calculating the chemical potentials of water and guest species in the hydrate on the basis of a statistical mechanical theory using pairwise intermolecular potentials. This requires the least computational cost while covering a wide range of temperature, pressure, and composition of guest species, even for the binary hydrate.

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CO capture technology can mitigate greenhouse gas emissions and global warming. CO capture driven by electrochemical reactions is attractive because the operation is carried out at normal temperature and pressure and involves a simple input system using electrical energy. Although promising metal complexes with high CO fixation performance have been reported, there are few studies on systems that combine electrochemical reactions and metal complexes.

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Although a widely used and important industrial chemical, carbon disulfide (CS) poses a number of hazards due to its volatility and toxicity. As such, the development of multifunctional materials for the selective capture and easy recognition of CS is one of the crucial issues. Herein, we demonstrate completely selective CS adsorption among trials involving HO, alcohols, volatile organic compounds (including thiol derivatives), N, H, O, CH, CO, NO, and CO.

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Background: Few studies have shown that relatively younger children and adolescents (those born later in the same school year) were less likely to engage in physical activity in a phenomenon termed the relative age effect. Although these studies mainly targeted elementary and middle school students, no study has reported on the relative age effect on physical activity in ordinary high school students. Moreover, the relative age effect on sedentary behavior might show an opposite association with physical activity.

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Background: Spontaneous anterior interosseous nerve (AIN) palsy is characterized by the sudden onset of upper limb pain followed by weakness of muscles mainly innervated by the AIN. Although this palsy is conventionally treated conservatively, interfascicular neurolysis to release hourglass-like fascicular constrictions has been recommended. The present study aimed to establish the clinical characteristics and treatment strategy for this condition.

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Article Synopsis
  • The study explores the effects of the 2011 Fukushima disaster on breast cancer patients and their families, highlighting the need to consider family experiences in disaster research.
  • It involved interviews with family members of deceased patients to understand the caregiving burden, medical challenges, and confusion experienced during the disaster.
  • Results showed both strained family dynamics due to caregiving demands and strengthened relationships, emphasizing the need for improved medical support and proactive disaster preparedness in the future.*
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This study proposes a wearable gait assessment method using inertial measurement units (IMUs) to evaluate gait ability in daily environments. By focusing on the estimation of the margin of stability (MoS), a key kinematic stability parameter, a method using a convolutional neural network, was developed to estimate the MoS from IMU acceleration time-series data. The relationship between MoS and other stability indices, such as the Lyapunov exponent and the multi-site time-series (MSTS) index, using data from five IMU sensors placed on various body parts was also examined.

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Superdense phase between graphite and Li metal, Li, has been significant in the research on both lithium-ion batteries (LIBs) and graphite intercalated compounds (GICs). However, a detailed method for synthesizing Li remains unknown owing to the limited information regarding Li and difficulties in distinguishing Li from Li. Thus, we performed in situ X-ray diffraction measurements on samples with the nominal composition of Li under high pressures and temperatures of up to 10 GPa and 400 , respectively.

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Background: Surgical treatment of pheochromocytomas is associated with circulatory dynamics instability, necessitating systemic management of the patient in the intensive care unit after surgery. Early mobilization after pheochromocytoma surgery is not described in the guidelines, and to our knowledge, no reports have specifically focused on circulatory dynamics during early mobilization after surgery.

Case Presentation: A 31-year-old Japanese woman was diagnosed with bilateral pheochromocytoma and underwent a second-stage adrenalectomy for bilateral pheochromocytoma at our hospital.

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This study aimed to evaluate developmental patterns in athletic performance during youth and determine their association with changes in physical fitness. The testing included three athletic performance (i.e.

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Variational benchmarks for quantum many-body problems.

Science

October 2024

Institute of Physics, École Polytechnique Fédérale de Lausanne (EPFL), CH-1015 Lausanne, Switzerland.

The continued development of computational approaches to many-body ground-state problems in physics and chemistry calls for a consistent way to assess its overall progress. In this work, we introduce a metric of variational accuracy, the V-score, obtained from the variational energy and its variance. We provide an extensive curated dataset of variational calculations of many-body quantum systems, identifying cases where state-of-the-art numerical approaches show limited accuracy and future algorithms or computational platforms, such as quantum computing, could provide improved accuracy.

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Tracing the genealogy of research on the mechanism of blue flower coloration by anthocyanin based on Keita Shibata's work.

Proc Jpn Acad Ser B Phys Biol Sci

October 2024

Department of Innovative Food Sciences, Faculty of Food and Health Sciences, Aichi Shukutoku University, Nagakute, Aichi, Japan.

K. Shibata is the ancestor of the research on anthocyanins in Japan and proposed metal complex theory against the pH theory by R. Willstätter.

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Neuromuscular properties decline with ageing and low-level physical activities. Alaska pollack protein (APP) is reportedly effective for improving skeletal muscular functions, even if the amount is small and exercise is not conducted. However, it is unclear whether APP intake without an exercise program affects neuromuscular dysfunction in community-dwelling adults conducting normal, everyday activities.

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Article Synopsis
  • Adrenal rest tumors (ARTs) are usually found in the abdomen or testis and can be misdiagnosed as other tumors like hepatocellular carcinoma (HCC), making preoperative diagnosis challenging.
  • A case of a 58-year-old woman revealed a liver tumor diagnosed and treated through laparoscopic resection, with the preoperative assessment suspecting it was a hepatic ART (HART) due to specific MRI findings.
  • Advances in imaging techniques, particularly MRI chemical shift imaging, have improved the ability to differentiate HART from HCC, and this case is notable for being the first to preoperatively diagnose HART using this imaging method.
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Studies on the ion-layer formation of imidazolium-based ionic liquids have extensively explored how to improve in-depth knowledge of electrical double-layer (EDL) properties. In this computational study, 1-alkyl-methylimidazolium bis(trifluoromethylsulfonyl)imide ([Cmim][NTf]), namely, [Cmim][NTf] and [Cmim][NTf], inside a simulated supercapacitor were investigated to expose an symmetric alkyl chain effect. Molecular dynamic simulations of a supercapacitor model with graphite electrodes were conducted.

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The signature feature of the 'strange metal' state of high-T cuprates-its linear-in-temperature resistivity-has a coefficient α that correlates with T, as expected were α derived from scattering off the same bosonic fluctuations that mediate pairing. Recently, an anomalous linear-in-field magnetoresistance (=γH) has also been observed, but only over a narrow doping range, leaving its relation to the strange metal state and to the superconductivity unclear. Here, we report in-plane magnetoresistance measurements on three hole-doped cuprate families spanning a wide range of temperatures, magnetic field strengths and doping.

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The electrochemical series is a useful tool in electrochemistry, but its effectiveness in materials chemistry is limited by the fact that the standard electrochemical series is based on a relatively small set of reactions, many of which are measured in aqueous solutions. To address this problem, we have used machine learning to create an electrochemical series for inorganic materials from tens of thousands of entries in the Inorganic Crystal Structure Database. We demonstrate that this series is generally more consistent with oxidation states in solid-state materials than the series based on aqueous ions.

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Article Synopsis
  • The study analyzed data from the Empire HF trial to understand what factors influence physical activity levels in heart failure patients with reduced ejection fraction (HFrEF).
  • It found that older age and anemia were linked to lower levels of accelerometer-measured physical activity, indicating that these factors negatively impact patients' activity.
  • Additionally, while there was a slight increase in physical activity with improvements in self-reported health status, the correlation was weak, suggesting more research is needed to fully understand how activity levels relate to overall health.
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Our objective was to provide expert consensus on best practices for anatomy teaching and training on ultrasound-guided botulinum neurotoxin type A (BoNT-A) injection for specialists involved in treating spasticity and dystonia. Nine experts (three neurologists; six physical medicine and rehabilitation physicians) participated in a three-round modified Delphi process. Over three rounds, experts reached consensus on 15 of 16 statements describing best practices for anatomy and BoNT-A injection training.

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Stability mechanism of crystalline CO2 and Xe.

J Chem Phys

August 2024

Engineering Advancement Association of Japan, 1-11-9 Azabudai, Minato-ku, Tokyo 105-0001, Japan.

We explore the phase behaviors of simple molecular crystals in order to investigate the molecular basis of the stability mechanism relative to their liquid counterparts. The free energies of the face centered cubic crystals of Xe and CO2 are calculated as a collection of oscillators, and those of the liquids are from an equation of state via molecular dynamics simulations. The vibrational free energy in the solid is separated into the harmonic and anharmonic terms.

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