34 resultados para 15-150

em Instituto Politécnico do Porto, Portugal


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Dissertação apresentada ao Instituto Superior de Contabilidade para a obtenção do Grau de Mestre em Auditoria Orientada por Professor Dr. João Domingues da Costa

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Introdução: O acidente vascular encefálico (AVE) é uma importante e frequente condição de saúde que se repercute na funcionalidade do indivíduo. No sentido de reabilitar a função perdida, é comum o recurso a intervenções de fisioterapia baseado o conceito de Bobath. Como tal, importa verificar, as modificações no âmbito do controlo postural, através da migração do centro de pressão na base de suporte, face à aplicação de uma intervenção segundo abordagem baseada no conceito de Bobath em dois indivíduos com AVE. Métodos e participantes: Foram recrutados dois indivíduos com diagnóstico de AVE num hospital da zona do grande Porto. Dados referentes ao equilíbrio estático na condição de medição “olhos abertos ou fechados” e “calçado ou descalço” foram obtidos através de plataforma de forças, antes e após uma intervenção baseado no conceito de Bobath durante 13 semanas (M0 e M1). Nestes dois momentos foram ainda avaliados a mobilidade, função cognitiva, participação, equilíbrio através do teste Timed Up & Go (TUG) e Timed Up & Go Modificado (TUGM), e das escalas Mini Mental State Examination (MMSE), Postural Assessment for Stroke Scale (PASS), Escala de Berg (EB) e Índice de Barthel Modificado (IBM). Resultados: Os participantes obtiveram em ambos os momentos pontuação máxima no MMSE. Ambos os indivíduos atingiram o valor máximo no IBM em M1 (Mo: A: 78; B: 65). Ambos os indivíduos aumentaram o score entre M0 e M1, relativamente ao PASS (A: M0:21; M1:33; B: M0: 26; M1:34) e EB (A: M0:48; M1:54; B: M0: 30; M1:50). O tempo de realização do TUG e do TUGM diminuíram entre momentos em ambos os indivíduos (respectivamente: A: 15''13'' a 13''27''; B: 24''13'' a 13''88'' e A: 19''08''' a 13''27''; B: 29''60''' a 17''64'''). A área de deslocação do centro de pressão (CP) variou entre momentos em todas as condições de avaliação, sendo menor na condição “olhos abertos e descalço” em ambos os participantes (“olhos abertos e calçado”: A: M0= 1,364, M1=2,796; B: M0=1,892, M1=2,979; “olhos abertos e descalço”: A: M0= 0,758, M1=0,727; B: M0=3,064, M1=1,952; “olhos fechados e calçado”: A: M0= 2,360, M1=2,998; B: M0=2,232, M1= 4,392; “olhos fechados e descalço”: A: M0= 1,347, M1=2,388; B: M0=1,652, M1= 1,016). O desvio padrão das deslocações anteroposteriores variou entre momentos, sendo tendencialmente maior em M1 e na condição “descalço e olhos abertos”(“olhos abertos e calçado”: A: M0= 0,201, M1=0,500; B: M0=0,252, M1=0,310; “olhos abertos e descalço”: A: M0= 0,118, M1=0,165; B: M0=0,282, M1=0,276; “olhos fechados e calçado”: A: M0= 0,308, M1=0,398; B: M0=0,274, M1= 0,471; “olhos fechados e descalço”: A: M0= 0,158 , M1=0,373; B: M0=0,230, M1= 0,172), o desvio padrão das deslocações médio-lateral seguem a mesma tendência (“olhos abertos e calçado”: A: M0= 0,370 , M1=0,473; B: M0=0,454, M1=0,517; “olhos abertos e descalço”: A: M0= 0,354, M1=0,236 ; B: M0=0,584, M1=0,381; “olhos fechados e calçado”: A: M0= 0,425, M1=0,463; B: M0=0,462, M1= 0,583; “olhos fechados e descalço”: A: M0= 0,475, M1=0,416; B: M0=0,389, M1= 0,342). A velocidade de oscilação na direcção antero – posterior variou entre momentos, sendo tendencialmente menor em M1, em ambos os participantes e em todas as condições de avaliação: “olhos abertos e calçado”: A: M0= 0,886 , M1=0,532; B: M0=2,507, M1=01,072; “olhos abertos e descalço”: A: M0= 2,562, M1=3,815 ; B: M0=4,367, M1=0,262; “olhos fechados e calçado”: A: M0= 2,689, M1=1,757; B: M0=2,821, M1= 0,769; “olhos fechados e descalço”: A: M0= 2,984, M1=2,525; B: M0=4,100, M1= 0,265), a velocidade de oscilação na direcção médio – lateral seguem a mesma tendência para as condições de “olhos abertos e calçado”: A: M0= 6,524 , M1=6,218; B: M0=0,467, M1=0,404; “olhos fechados e calçado”: A: M0= 6,387, M1=1,927; B: M0=0,351, M1= 0,505; mas a velocidade de oscilação aumenta para as condições de “olhos abertos e descalço”: A: M0= 3,108, M1=7,806 ; B: M0=1,150, M1=8,054; “olhos fechados e descalço”: A: M0= 3,444, M1=3,839; B: M0=1,434, M1= 7,891). Conclusão: Entre os dois momentos os indivíduos melhoraram a sua mobilidade, equilíbrio, participação e actividades, potencialmente devido à intervenção baseado no conceito de Bobath.

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Mestrado em Engenharia Electrotécnica e de Computadores

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We have developed a new method for single-drop microextraction (SDME) for the preconcentration of organochlorine pesticides (OCP) from complex matrices. It is based on the use of a silicone ring at the tip of the syringe. A 5 μL drop of n-hexane is applied to an aqueous extract containing the OCP and found to be adequate to preconcentrate the OCPs prior to analysis by GC in combination with tandem mass spectrometry. Fourteen OCP were determined using this technique in combination with programmable temperature vaporization. It is shown to have many advantages over traditional split/splitless injection. The effects of kind of organic solvent, exposure time, agitation and organic drop volume were optimized. Relative recoveries range from 59 to 117 %, with repeatabilities of <15 % (coefficient of variation) were achieved. The limits of detection range from 0.002 to 0.150 μg kg−1. The method was applied to the preconcentration of OCPs in fresh strawberry, strawberry jam, and soil.

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Psychosocial interventions have proven to be effective in treating social cognition in people with psychotic disorders. The current study aimed to determine the effects of a metacognitive and social cognition training (MSCT) program, designed to both remediate deficits and correct biases in social cognition. Thirty-five clinically stable outpatients were recruited and assigned to the MSCT program (n = 19) for 10 weeks (18 sessions) or to the TAU group (n = 16), and they all completed pre- and post-treatment assessments of social cognition, cognitive biases, functioning and symptoms. The MSCT group demonstrated a significant improvement in theory of mind, social perception, emotion recognition and social functioning. Additionally, the tendency to jump to conclusions was significantly reduced among the MSCT group after training. There were no differential benefits regarding clinical symptoms except for one trend group effect for general psychopathology. The results support the efficacy of the MSCT format, but further development of the training program is required to increase the benefits related to attributional style.

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In this work, tin selenide thin films (SnSex) were grown on soda lime glass substrates by selenization of dc magnetron sputtered Sn metallic precursors. Selenization was performed at maximum temperatures in the range 300 °C to 570 °C. The thickness and the composition of the films were analysed using step profilometry and energy dispersive spectroscopy, respectively. The films were structurally and optically investigated by X-ray diffraction, Raman spectroscopy and optical transmittance and reflectance measurements. X-Ray diffraction patterns suggest that for temperatures between 300 °C and 470 °C, the films are composed of the hexagonal-SnSe2 phase. By increasing the temperature, the films selenized at maximum temperatures of 530 °C and 570 °C show orthorhombic-SnSe as the dominant phase with a preferential crystal orientation along the (400) crystallographic plane. Raman scattering analysis allowed the assignment of peaks at 119 cm−1 and 185 cm−1 to the hexagonal-SnSe2 phase and those at 108 cm−1, 130 cm−1 and 150 cm−1 to the orthorhombic-SnSe phase. All samples presented traces of condensed amorphous Se with a characteristic Raman peak located at 255 cm−1. From optical measurements, the estimated band gap energies for hexagonal-SnSe2 were close to 0.9 eV and 1.7 eV for indirect forbidden and direct transitions, respectively. The samples with the dominant orthorhombic-SnSe phase presented estimated band gap energies of 0.95 eV and 1.15 eV for indirect allowed and direct allowed transitions, respectively.

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Low-rate low-power consumption and low-cost communication are the key points that lead to the specification of the IEEE 802.15.4 standard. This paper overviews the technical features of the physical layer and the medium access control sublayer mechanisms of the IEEE 802.15.4 protocol that are most relevant for wireless sensor network applications. We also discuss the ability of IEEE 802.15.4 to fulfil the requirements of wireless sensor network applications.

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The IEEE 802.15.4 standard provides appealing features to simultaneously support real-time and non realtime traffic, but it is only capable of supporting real-time communications from at most seven devices. Additionally, it cannot guarantee delay bounds lower than the superframe duration. Motivated by this problem, in this paper we propose an Explicit Guaranteed time slot Sharing and Allocation scheme (EGSA) for beacon-enabled IEEE 802.15.4 networks. This scheme is capable of providing tighter delay bounds for real-time communications by splitting the Contention Free access Period (CFP) into smaller mini time slots and by means of a new guaranteed bandwidth allocation scheme for a set of devices with periodic messages. At the same the novel bandwidth allocation scheme can maximize the duration of the CFP for non real-time communications. Performance analysis results show that the EGSA scheme works efficiently and outperforms competitor schemes both in terms of guaranteed delay and bandwidth utilization.

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Cluster scheduling and collision avoidance are crucial issues in large-scale cluster-tree Wireless Sensor Networks (WSNs). The paper presents a methodology that provides a Time Division Cluster Scheduling (TDCS) mechanism based on the cyclic extension of RCPS/TC (Resource Constrained Project Scheduling with Temporal Constraints) problem for a cluster-tree WSN, assuming bounded communication errors. The objective is to meet all end-to-end deadlines of a predefined set of time-bounded data flows while minimizing the energy consumption of the nodes by setting the TDCS period as long as possible. Sinceeach cluster is active only once during the period, the end-to-end delay of a given flow may span over several periods when there are the flows with opposite direction. The scheduling tool enables system designers to efficiently configure all required parameters of the IEEE 802.15.4/ZigBee beaconenabled cluster-tree WSNs in the network design time. The performance evaluation of thescheduling tool shows that the problems with dozens of nodes can be solved while using optimal solvers.

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Timeliness guarantee is an important feature of the recently standardized IEEE 802.15.4 protocol, turning it quite appealing for Wireless Sensor Network (WSN) applications under timing constraints. When operating in beacon-enabled mode, this protocol allows nodes with real-time requirements to allocate Guaranteed Time Slots (GTS) in the contention-free period. The protocol natively supports explicit GTS allocation, i.e. a node allocates a number of time slots in each superframe for exclusive use. The limitation of this explicit GTS allocation is that GTS resources may quickly disappear, since a maximum of seven GTSs can be allocated in each superframe, preventing other nodes to benefit from guaranteed service. Moreover, the GTS may be underutilized, resulting in wasted bandwidth. To overcome these limitations, this paper proposes i-GAME, an implicit GTS Allocation Mechanism in beacon-enabled IEEE 802.15.4 networks. The allocation is based on implicit GTS allocation requests, taking into account the traffic specifications and the delay requirements of the flows. The i-GAME approach enables the use of one GTS by multiple nodes, still guaranteeing that all their (delay, bandwidth) requirements are satisfied. For that purpose, we propose an admission control algorithm that enables to decide whether to accept a new GTS allocation request or not, based not only on the remaining time slots, but also on the traffic specifications of the flows, their delay requirements and the available bandwidth resources. We show that our approach improves the bandwidth utilization as compared to the native explicit allocation mechanism defined in the IEEE 802.15.4 standard. We also present some practical considerations for the implementation of i-GAME, ensuring backward compatibility with the IEEE 801.5.4 standard with only minor add-ons. Finally, an experimental evaluation on a real system that validates our theoretical analysis and demonstrates the implementation of i-GAME is also presented

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The simulation analysis is important approach to developing and evaluating the systems in terms of development time and cost. This paper demonstrates the application of Time Division Cluster Scheduling (TDCS) tool for the configuration of IEEE 802.15.4/ZigBee beaconenabled cluster-tree WSNs using the simulation analysis, as an illustrative example that confirms the practical applicability of the tool. The simulation study analyses how the number of retransmissions impacts the reliability of data transmission, the energy consumption of the nodes and the end-to-end communication delay, based on the simulation model that was implemented in the Opnet Modeler. The configuration parameters of the network are obtained directly from the TDCS tool. The simulation results show that the number of retransmissions impacts the reliability, the energy consumption and the end-to-end delay, in a way that improving the one may degrade the others.

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The IEEE 802.15.4 is the most widespread used protocol for Wireless Sensor Networks (WSNs) and it is being used as a baseline for several higher layer protocols such as ZigBee, 6LoWPAN or WirelessHART. Its MAC (Medium Access Control) supports both contention-free (CFP, based on the reservation of guaranteed time-slots GTS) and contention based (CAP, ruled by CSMA/CA) access, when operating in beacon-enabled mode. Thus, it enables the differentiation between real-time and best-effort traffic. However, some WSN applications and higher layer protocols may strongly benefit from the possibility of supporting more traffic classes. This happens, for instance, for dense WSNs used in time-sensitive industrial applications. In this context, we propose to differentiate traffic classes within the CAP, enabling lower transmission delays and higher success probability to timecritical messages, such as for event detection, GTS reservation and network management. Building upon a previously proposed methodology (TRADIF), in this paper we outline its implementation and experimental validation over a real-time operating system. Importantly, TRADIF is fully backward compatible with the IEEE 802.15.4 standard, enabling to create different traffic classes just by tuning some MAC parameters.

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The IEEE 802.15.4/ZigBee protocols are gaining increasing interests in both research and industrial communities as candidate technologies for Wireless Sensor Network (WSN) applications. In this paper, we present an open-source implementation of the IEEE 802.15.4/Zigbee protocol stack under the TinyOS operating system for the MICAz motes. This work has been driven by the need for an open-source implementation of the IEEE 802.15.4/ZigBee protocols, filling a gap between some newly released complex C implementations and black-box implementations from different manufacturers. In addition, we share our experience on the challenging problem that we have faced during the implementation of the protocol stack on the MICAz motes. We strongly believe that this open-source implementation will potentiate research works on the IEEE 802.15.4/Zigbee protocols allowing their demonstration and validation through experimentation.

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While the IEEE 802.15.4/Zigbee protocol stack is being considered as a promising technology for low-cost low-power Wireless Sensor Networks (WSNs), several issues in the standard specifications are still open. One of those ambiguous issues is how to build a synchronized multi-hop cluster-tree network, which is quite suitable for ensuring QoS support in WSNs. In fact, the current IEEE 802.15.4/Zigbee specifications restrict the synchronization in the beacon-enabled mode (by the generation of periodic beacon frames) to star-based networks, while it supports multi-hop networking using the peer-to-peer mesh topology, but with no synchronization. Even though both specifications mention the possible use of cluster-tree topologies, which combine multihop and synchronization features, the description on how to effectively construct such a network topology is missing. This paper tackles this problem, unveils the ambiguities regarding the use of the cluster-tree topology and proposes a synchronization mechanism based on Time Division Beacon Scheduling to construct cluster-tree WSNs. We also propose a methodology for an efficient duty cycle management in each router (cluster-head) of a cluster-tree WSN that ensures the fairest use of bandwidth resources. The feasibility of the proposal is clearly demonstrated through an experimental test bed based on our own implementation of the IEEE 802.15.4/Zigbee protocol.