939 resultados para Human Body Model


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Mucoadhesion is the ability of materials to adhere to mucosal membranes in the human body and provide a temporary retention. This property has been widely used to develop polymeric dosage forms for buccal, oral, nasal, ocular and vaginal drug delivery. Excellent mucoadhesive properties are typical for hydrophilic polymers possessing charged groups and/or non-ionic functional groups capable of forming hydrogen bonds with mucosal surfaces. This feature article considers recent advances in the study of mucoadhesion and mucoadhesive polymers. It provides an overview on the structure of mucosal membranes, properties of mucus gels and the nature of mucoadhesion. It describes the most common methods to evaluate mucoadhesive properties of various dosage forms and discusses the main classes of mucoadhesives.

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Scope: Cocoa, especially the water-insoluble cocoa fraction (WICF), is a rich source of polyphenols. In this study, sequential in vitro digestion of the WICF with gastrointestinal enzymes as well as its bacterial fermentation in a human colonic model system were carried out to investigate bioaccessibility and biotransformation of WICF polyphenols, respectively. Methods and results: The yield of each enzymatic digestion step and the total antioxidant capacity (TAC) were measured and solubilized phenols were characterized by MS/MS. Fermentation of WICF and the effect on the gut microbiota, SCFA production and metabolism of polyphenols was analyzed. In vitro digestion solubilized 38.6% of WICF with pronase and Viscozyme L treatments releasing 51% of the total phenols from the insoluble material. This release of phenols does not determine a reduction in the total antioxidant capacity of the digestion-resistant material. In the colonic model WICF significantly increased of bifidobacteria and lactobacilli as well as butyrate production. Flavanols were converted into phenolic acids by the microbiota following a concentration gradient resulting in high concentrations of 3-hydroxyphenylpropionic acid (3-HPP) in the last gut compartment. Conclusion: Data showed that WICF may exert antioxidant action through the gastrointestinal tract despite its polyphenols being still bound to macromolecules and having prebiotic activity.

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The secoiridoids 3,4-dihydroxyphenylethanol-elenolic acid (3,4-DHPEA-EA) and 3,4-dihydroxyphenylethanol-elenolic acid dialdehyde (3,4-DHPEA-EDA) account for approximately 55 % of the phenolic content of olive oil and may be partly responsible for its reported human health benefits. We have investigated the absorption and metabolism of these secoiridoids in the upper gastrointestinal tract. Both 3,4-DHPEA-EDA and 3,4-DHPEA-EA were relatively stable under gastric conditions, only undergoing limited hydrolysis. Both secoiridoids were transferred across a human cellular model of the small intestine (Caco-2 cells). However, no glucuronide conjugation was observed for either secoiridoid during transfer, although some hydroxytyrosol and homovanillic alcohol were formed. As Caco-2 cells are known to express only limited metabolic activity, we also investigated the absorption and metabolism of secoiridoids in isolated, perfused segments of the jejunum and ileum. Here, both secoiridoids underwent extensive metabolism, most notably a two-electron reduction and glucuronidation during the transfer across both the ileum and jejunum. Unlike Caco-2 cells, the intact small-intestinal segments contain NADPH-dependent aldo-keto reductases, which reduce the aldehyde carbonyl group of 3,4-DHPEA-EA and one of the two aldeydic carbonyl groups present on 3,4-DHPEA-EDA. These reduced forms are then glucuronidated and represent the major in vivo small-intestinal metabolites of the secoiridoids. In agreement with the cell studies, perfusion of the jejunum and ileum also yielded hydroxytyrosol and homovanillic alcohol and their respective glucuronides. We suggest that the reduced and glucuronidated forms represent novel physiological metabolites of the secoiridoids that should be pursued in vivo and investigated for their biological activity.

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In this paper a look is taken at how the use of implant and electrode technology can be employed to create biological brains for robots, to enable human enhancement and to diminish the effects of certain neural illnesses. In all cases the end result is to increase the range of abilities of the recipients. An indication is given of a number of areas in which such technology has already had a profound effect, a key element being the need for a clear interface linking a biological brain directly with computer technology. The emphasis is placed on practical scientific studies that have been and are being undertaken and reported on. The area of focus is the use of electrode technology, where either a connection is made directly with the cerebral cortex and/or nervous system or where implants into the human body are involved. The paper also considers robots that have biological brains in which human neurons can be employed as the sole thinking machine for a real world robot body.

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Background Staphylococcus aureus is a major cause of healthcare associated mortality, but like many important bacterial pathogens, it is a common constituent of the normal human body flora. Around a third of healthy adults are carriers. Recent evidence suggests that evolution of S. aureus during nasal carriage may be associated with progression to invasive disease. However, a more detailed understanding of within-host evolution under natural conditions is required to appreciate the evolutionary and mechanistic reasons why commensal bacteria such as S. aureus cause disease. Therefore we examined in detail the evolutionary dynamics of normal, asymptomatic carriage. Sequencing a total of 131 genomes across 13 singly colonized hosts using the Illumina platform, we investigated diversity, selection, population dynamics and transmission during the short-term evolution of S. aureus. Principal Findings We characterized the processes by which the raw material for evolution is generated: micro-mutation (point mutation and small insertions/deletions), macro-mutation (large insertions/deletions) and the loss or acquisition of mobile elements (plasmids and bacteriophages). Through an analysis of synonymous, non-synonymous and intergenic mutations we discovered a fitness landscape dominated by purifying selection, with rare examples of adaptive change in genes encoding surface-anchored proteins and an enterotoxin. We found evidence for dramatic, hundred-fold fluctuations in the size of the within-host population over time, which we related to the cycle of colonization and clearance. Using a newly-developed population genetics approach to detect recent transmission among hosts, we revealed evidence for recent transmission between some of our subjects, including a husband and wife both carrying populations of methicillin-resistant S. aureus (MRSA). Significance This investigation begins to paint a picture of the within-host evolution of an important bacterial pathogen during its prevailing natural state, asymptomatic carriage. These results also have wider significance as a benchmark for future systematic studies of evolution during invasive S. aureus disease.

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Bacteria are associated with all areas of the human body from the skin to the genitourinary, respiratory and gastrointestinal (GI) tracts. The GI tract is the most heavily populated, with the majority of the total bacterial population of humans residing therein. The GI tract has evolved to become a functional organ comprising anatomically distinct areas. The digestive process starts in the oral cavity, then moves through the stomach, small and large intestine and finally the rectum. This chapter summarizes the functions of the human gastrointestinal tract. A main function of the GI microbiota is modulation of the immune system. The chapter focues on the factors influencing composition of the microbiota.

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The aim of this study was to assess and improve the accuracy of biotransfer models for the organic pollutants (PCBs, PCDD/Fs, PBDEs, PFCAs, and pesticides) into cow’s milk and beef used in human exposure assessment. Metabolic rate in cattle is known as a key parameter for this biotransfer, however few experimental data and no simulation methods are currently available. In this research, metabolic rate was estimated using existing QSAR biodegradation models of microorganisms (BioWIN) and fish (EPI-HL and IFS-HL). This simulated metabolic rate was then incorporated into the mechanistic cattle biotransfer models (RAIDAR, ACC-HUMAN, OMEGA, and CKow). The goodness of fit tests showed that RAIDAR, ACC-HUMAN, OMEGA model performances were significantly improved using either of the QSARs when comparing the new model outputs to observed data. The CKow model is the only one that separates the processes in the gut and liver. This model showed the lowest residual error of all the models tested when the BioWIN model was used to represent the ruminant metabolic process in the gut and the two fish QSARs were used to represent the metabolic process in the liver. Our testing included EUSES and CalTOX which are KOW-regression models that are widely used in regulatory assessment. New regressions based on the simulated rate of the two metabolic processes are also proposed as an alternative to KOW-regression models for a screening risk assessment. The modified CKow model is more physiologically realistic, but has equivalent usability to existing KOW-regression models for estimating cattle biotransfer of organic pollutants.

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This paper presents a study on reduction of energy consumption in buildings through behaviour change informed by wireless monitoring systems for energy, environmental conditions and people positions. A key part to the Wi-Be system is the ability to accurately attribute energy usage behaviour to individuals, so they can be targeted with specific feedback tailored to their preferences. The use of wireless technologies for indoor positioning was investigated to ascertain the difficulties in deployment and potential benefits. The research to date has demonstrated the effectiveness of highly disaggregated personal-level data for developing insights into people’s energy behaviour and identifying significant energy saving opportunities (up to 77% in specific areas). Behavioural research addressed social issues such as privacy, which could affect the deployment of the system. Radio-frequency research into less intrusive technologies indicates that received-signal-strength-indicator-based systems should be able to detect the presence of a human body, though further work would be needed in both social and engineering areas.

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The genus Candida includes different species that have the potential to invade and colonize the human body and C. albicans is the most common cause of skin, nail and mucous infections. The increasing resistance against antifungal drugs has renewed the search for new treatment procedures and antimicrobial photodynamic inactivation (PDI) is a propitious candidate. Hypericin (HY) has several wanted properties to be used as a photosensitizer in this technique including a high quantum yield of singlet oxygen generation, a high extinction coefficient near 600 nm, and a relatively low dark toxicity. Although the phototoxicity of HY on several tumor cells has been reported, the data concerning its photoactivity on microorganisms are scarce. The aim of this study was to obtain the experimental parameters to achieve an acceptable selective hypericinphotoinactivation of two species of Candida comparing with fibroblasts and epithelial cells which are the constituents of some potential host tissues, such mucosas, skin and cavities. Microorganisms and cells were incubated with the same HY concentrations and short incubation time followed by irradiation with equal dose of light. The best conditions to kill just Candida were very low HY concentration (0.1-0.4 mu g ml(-1)) incubated by 10 min and irradiated with LED 590 nm with 6 J cm(-2).

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This paper presents a computer-vision based marker-free method for gait-impairment detection in Patients with Parkinson's disease (PWP). The system is based upon the idea that a normal human body attains equilibrium during the gait by aligning the body posture with Axis-of-Gravity (AOG) using feet as the base of support. In contrast, PWP appear to be falling forward as they are less-able to align their body with AOG due to rigid muscular tone. A normal gait exhibits periodic stride-cycles with stride-angle around 45o between the legs, whereas PWP walk with shortened stride-angle with high variability between the stride-cycles. In order to analyze Parkinsonian-gait (PG), subjects were videotaped with several gait-cycles. The subject's body was segmented using a color-segmentation method to form a silhouette. The silhouette was skeletonized for motion cues extraction. The motion cues analyzed were stride-cycles (based on the cyclic leg motion of skeleton) and posture lean (based on the angle between leaned torso of skeleton and AOG). Cosine similarity between an imaginary perfect gait pattern and the subject gait patterns produced 100% recognition rate of PG for 4 normal-controls and 3 PWP. Results suggested that the method is a promising tool to be used for PG assessment in home-environment.

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A presente dissertação se construiu sobre o pressuposto de que forma, técnica e poesia são premissas que embasam uma determinada visão de dança enquanto manifestação artística do corpo humano em movimento. Norteia também este estudo a perspectiva de que as relações que se estabelecem no momento de execução de uma dança instauram processos de significação. Desse modo, este trabalho teve como principais objetivos: - entender a dança enquanto uma atividade artística que se constrói no(s) corpo(s) em movimento; - refletir sobre a elaboração de possíveis significados quando da criação e execução de uma dança; - descrever a dança como uma ação criadora que se faz no corpo humano em movimento. Para atingir os objetivos propostos utilizou-se a fenomenologia como método de investigação, optando-se, assim, por realizar uma descrição da dança que já é, ao mesmo tempo, uma maneira de compreendê-la. Como conseqüência deste procedimento buscou-se demontrar que: - a dança dever ser entendida enquanto arte porque ela resulta de um processo de transformação de uma matéria-prima - o movimento humano - através do uso de procedimentos técnicos e formativos, que resultam em obras coreográficas que se dão a reconhecer através de seu intrínseco caráter de forma; - o movimento é o que toma visível os possíveis sentidos/significados de uma dança: a realização de sentidos coreográficos se dá no contexto de uma coreografia e só se efetua plenamente quando os sentidos são retomados e revividos pelos espectadores; - os processos de criação coreográfica baseados em ações formativas proporcionam o desenvolvimento de uma disponibilidade corporal para a dança. Tal disponibilidade corporal está alicerçada, principalmente, numa inteligência e numa memória corporais, que dispõem o dançarino a exercer suas potencialidades criadoras através da dança. A concepção da dança como forma, técnica e poesia do movimento aponta para uma possibilidade de recuperação, através da dança, de saberes relativos ao corpo, ao movimento e à sensibilidade.

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Baseada na perspectiva teórica do campo dos Estudos Culturais e sócio-históricos sobre o corpo, esta dissertação analisou os significados culturais que os indivíduos atribuíam aos seus corpos e suas vidas cotidianas após terem sido submetidos a amputação e se tornarem usuários de prótese. O material empírico foi coletado através da observação participante, do diário de campo e da entrevista semi-estruturada, realizada numa clínica ortopédica privada, situada em Porto Alegre, especializada na reabilitação e protetização de indivíduos que foram submetidos a amputação. O grupo participante do estudo foi: o fisioterapeuta e o protesista, e por nove pacientes da clínica, homens e mulheres, todos amputados de um membro inferior, com idades variando entre 18 e 82 anos, sendo que apresentavam em comum o fato de terem se tornado amputados após um acidente ou em decorrência da diabete. A pesquisa de campo foi desenvolvida no período de Fevereiro de 2003 a Setembro de 2003, através da participação de sessões de fisioterapia, das reuniões mensais dos grupos de apoio aos amputados, onde foi acompanhado o processo de adaptação à prótese. O estudo consistiu em problematizar os efeitos provocados na vida cotidiana destes indivíduos pelas transformações ocorridas em seus corpos secundários à amputação, bem como aqueles produzidos pelo "acoplamento" com a prótese, buscando tornar visível o processo vivenciado por eles, ou seja, o estranhamento e a naturalização do seu "novo" corpo fabricado pelas tecnologias. A dissertação representa, portanto, as reflexões construídas a partir da investigação desenvolvida especificamente neste grupo, onde o corpo amputado e protetizado foi vislumbrado como algo produzido e ressignificado na cultura, sendo assim moldável, provisório e reinventado continuamente.

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Este estudo objetiva identificar os principais desafios que a Agência X encontrou no caminho do desenvolvimento de um modelo de gestão de pessoas por competências e quais as possíveis formas de superar esses desafios, tendo como foco a percepção e o entendimento dos entrevistados. A organização estudada procura, há tempos, amadurecer o processo de elaboração de um plano de cargos e salários baseado em mérito e competência, que culminou na aprovação da nova modelagem institucional em gestão de recursos humanos. Com este ferramental típico da iniciativa privada, dedica-se a Agência X, fortemente, à criação de um ambiente favorável para uma gestão eficiente e produtiva, claramente alinhada aos conceitos de uma adhocracia e de uma organização inovadora sustentável. Ocorre que todo processo de mudança organizacional encontra seus desafios e seus obstáculos. No complexo ambiente das empresas públicas, este processo não é diferente, sendo ainda mais forte e evidente. Elaboraram-se, nesta pesquisa, três tipologias de grupos organizacionais, tendo como base a forma de entrada na organização: o Grupo 01 “da Oposição” – os funcionários com entrada pró-forma, o Grupo 02 “Favorável Financeiro” – os funcionários com entrada por concurso público e o Grupo 03 “Favorável Meritocrático” – os funcionários com entrada por concurso público e que exercem cargo de confiança. As análises demonstraram que os funcionários com entrada pró-forma são contrários ao novo plano por motivos que perpassam condições financeiras e motivos de ordem técnica. Os demais grupos são favoráveis ao novo plano exatamente pela lógica inversa, ou seja, motivos financeiros e motivos de ordem técnica são identificados como os principais incentivadores da nova modelagem institucional. Os maiores desafios encontrados pela Agência X foram: o enorme período apático da própria organização em relação às questões meritocráticas, como na demora pela realização de seu primeiro concurso público, a falta, no passado, de um comando superior dentro da empresa com o intuito de fortalecer a instituição no cenário nacional e internacional com foco na valorização das atividades e ações realizadas pelo seu corpo funcional, e a acomodação instalada nos empregados, fruto de gestões passadas que não se preocupavam com a gestão por resultados, perdendo o foco no desenvolvimento sustentável. Por fim, neste cenário de estagnação, a Agência X entendeu a lógica de poder e os aspectos culturais envolvidos nos grupos organizacionais, e optou, mesmo sabendo das resistências que seriam encontradas, pela priorização da profissionalização, e gestão por resultados e competência. Desenvolver as competências individuais e coletivas alinhadas com as estratégias organizacionais foram fatores determinantes para a Agência X vencer obstáculos e conseguir, depois de muitos anos, implementar uma ferramenta típica da gestão privada na esfera pública, com foco em competências, mérito e resultados, sendo assim, o maior avanço histórico da organização no sentido de fortalecer seus funcionários e robustecer a empresa dentro do cenário político nacional e internacional.

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ARAUJO, Márcio V. ; ALSINA, Pablo J. ; MEDEIROS, Adelardo A. D. ; PEREIRA, Jonathan P.P. ; DOMINGOS, Elber C. ; ARAÚJO, Fábio M.U. ; SILVA, Jáder S. . Development of an Active Orthosis Prototype for Lower Limbs. In: INTERNATIONAL CONGRESS OF MECHANICAL ENGINEERING, 20., 2009, Gramado, RS. Proceedings… Gramado, RS: [s. n.], 2009

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Micro and nanoparticulate systems as drug delivery carriers have achieved successful therapeutic use by enhancing efficacy and reducing toxicity of potent drugs. The improvement of pharmaceutical grade polymers has allowed the development of such therapeutic systems. Microencapsulation is a process in which very thin coatings of inert natural or synthetic polymeric materials are deposited around microsized particles of solids or around droplets. Products thus formed are known as microparticles. Xylan is a natural polymer abundantly found in nature. It is the most common hemicellulose, representing more than 60% of the polysaccharides existing in the cell walls of corn cobs, and is normally degraded by the bacterial enzymes present in the colon of the human body. Therefore, this polymer is an eligible material to produce colon-specific drug carriers. The aim of this study was to evaluate the technological potential of xylan for the development of colon delivery systems for the treatment of inflammatory bowel diseases. First, coacervation was evaluated as a feasible method to produce xylan microcapsules. Afterwards, interfacial cross-linking polymerization was studied as a method to produce microcapsules with hydrophilic core. Additionally, magnetic xylan-coated microcapsules were prepared in order to investigate the ability of producing gastroresistant systems. Besides, the influence of the external phase composition on the production and mean diameter of microcapsules produced by interfacial cross-linking polymerization was investigated. Also, technological properties of xylan were determined in order to predict its possible application in other pharmaceutical dosage forms