Fukuyama City University (福山市立大学, Fukuyama shiritsu daigaku) is a public co-educational university in Fukuyama, Hiroshima, Japan. In April 2011 it was established by reorganizing Fukuyama City Junior College for Women (founded in 1963).The university is located in a new campus (Minatomachi Campus) next to Fukuyama Port. The older campus (Kitahonjo Campus of the women's junior college) is used as sports facilities, since the new campus lacks them.
A fisioterapia tem ampliado sua atuação na Atenção Primária à Saúde (APS), alinhando-se aos princípios do Sistema Único de Saúde (SUS) e ao modelo de cuidado centrado na promoção da saúde, prevenção de agravos e integralidade. Esta revisão integrativa teve como objetivo analisar a prática fisioterapêutica na APS, identificando atribuições, desafios e contribuições do profissional nesse nível de atenção. A busca foi realizada nas bases SciELO, BVS, LILACS e PubMed, utilizando descritores relacionados à fisioterapia, atenção básica, NASF e equipes multiprofissionais. Os resultados evidenciam que o fisioterapeuta desempenha papel essencial no cuidado integral, contribuindo na educação em saúde, prevenção de incapacidades, atuação em grupos, visitas domiciliares e apoio matricial. Apesar dos avanços, desafios persistem, como o predomínio do modelo biomédico, restrições estruturais e necessidade de maior reconhecimento e integração nas equipes. Conclui-se que a ampliação e fortalecimento da presença do fisioterapeuta na APS é fundamental para a melhoria da qualidade de vida e da resolutividade dos serviços.
A planar stadium billiard is one of the prototypical dynamic models which are to manifest classical chaos in quantum mechanics and it is often used for research in the field of quantum chaos. We apply computational image recognition technology to quantum transport through an open stadium billiard. We find that the technology can help to intuitively understand quantum manifestation of classically chaotic nature such as an ergodic property developed as quantum wave localization of the system in the semiclassical regime.
Abstract Recently, the summer environment in Japanese cities has been changing, with extreme heat occurring every year due to the urban heat island phenomenon and global warming. Currently, the issue of heat affects everyone, so measures to counteract the urban warming effect are necessary to create safe and comfortable environments in many Japanese cities, including not only large cities but also regional cities. Urban reorganization projects involving the relocation of buildings and the reorganization of urban structures are progressing across Japan and introducing diverse urban designs to mitigate thermal environments during this opportunity is considered an effective measure. Against this background, this study aims to clarify methods for urban development that improve summer thermal environments in the Fukuyama Station Square, where reorganization is planned. In this study, short-term field measurements were conducted to characterize wind conditions and the thermal environment during selected clear summer days. In addition, numerical simulations were performed to estimate the effects of greening under specific hot summer conditions at the target square. For the simulations, we used the Multi-scale Simulator for the Geoenvironment, which can calculate detailed thermal environments on the Earth Simulator. The results confirmed the influence of strong downdrafts generated along high-rise buildings, the cooling effects of large-scale greening within the square, and the contributions of shading from trees and buildings to improved thermal comfort. Based on these findings, square reorganization strategies considering thermal environment mitigation in this area were discussed.