535 resultados para Synapse tripartite


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Purpose: The purpose of this study is to examine a buyer's adoption of servitization and the associated implications for the relationships with its suppliers. Design/methodology/approach: The authors use the case study approach to examine the tripartite relationship between a manufacturing company and two of its two suppliers. The paper explores the perspectives of employees on multiple organisational levels, and collects evidence on both sides of a relationship. The authors use template analysis utilising Cannon and Perreault's relationship connectors framework to analyse the data. Findings: There are overarching implications of servitization adoption for buyer-supplier relationships. The implications are notable in all five relationship connectors. Parties expected more open exchange of information, operational linkages were strengthened and changes in the structural arrangements of relationships were witnessed. Legal contracts are complemented by relational norms. The authors also observed a departure away from a win-lose mentality and increased levels of supplier adaptation to support the buyer's provision of integrated solutions. Research limitations/implications: The findings are confined to this tripartite relationship and to an extent are context specific. Practical implications: The study unveils buyer-supplier relationships in a servitized context and provides managers with a better understanding of some of the potential implications that the adoption of a servitization strategy may have for managing buyer-supplier relationships. Originality/value: This is the first empirical study that explores the implications of servitization on buyer-supplier relationships. It advances the understanding of the implications that the adoption of servitization has on the manner in which two parties interrelate and conduct commercial exchange. © Emerald Group Publishing Limited.

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Among the variety of applications for biosensors one of the exciting frontiers is to utilize those devices as post-synaptic sensing elements in chemical coupling between neurons and solid-state systems. The first necessary step to attain this challenge is to realize highly efficient detector for neurotransmitter acetylcholine (ACh). Herein, we demonstrate that the combination of floating gate configuration of ion-sensitive field effect transistor (ISFET) together with diluted covalent anchoring of enzyme acetylcholinesterase (AChE) onto device sensing area reveals a remarkable improvement of a four orders of magnitude in dose response to ACh. This high range sensitivity in addition to the benefits of peculiar microelectronic design show, that the presented hybrid provides a competent platform for assembly of artificial chemical synapse junction. Furthermore, our system exhibits clear response to eserine, a competitive inhibitor of AChE, and therefore it can be implemented as an effective sensor of pharmacological reagents, organophosphates, and nerve gases as well. © 2007 Materials Research Society.

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In the interferon-induced antiviral mechanisms, the Mx pathway is one of the most powerful. Mx proteins have direct antiviral activity and inhibit a wide range of viruses by blocking an early stage of the viral genome replication cycle. However, antiviral activity of piscine Mx remains unclear in vivo. In the present study, an Mx-like gene was cloned, characterized and gene-transferred in rare minnow Gobiocypris rarus, and its antiviral activity was confirmed in vivo. The full length of the rare minnow Mx-like cDNA is 2241 bp in length and encodes a polypeptide of 625 amino acids with an estimated molecular mass of 70.928 kDa and a predicted isoelectric point of 7.33. Analysis of the deduced amino acid sequence indicated that the mature peptide contains an amino-terminal tripartite GTP-binding motif, a dynamin family signature sequence, a GTPase effector domain and two carboxy-terminal leucine zipper motifs, and is the most similar to the crucian carp (Carassius auratus) Mx3 sequence with an identity of 89%. Both P0 and F1 generations of Mx-transgenic rare minnow demonstrated very significantly high survival rate to GCRV infection (P < 0.01). The mRNA expression of Mx gene was consistent with survival rate in F1 generation. The virus yield was also concurrent with survival time using electron microscope technology. Rare minnow has Mx gene(s) of its own but introducing more Mx gene improves their resistance to GCRV. Mx-transgenic rare minnow might contribute to control the GCRV diseases. (C) 2008 Published by Elsevier Ltd.

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The Double Synapse Weighted Neuron (DSWN) is a kind of general-purpose neuron model, which with the ability of configuring Hyper-sausage neuron (HSN). After introducing the design method of hardware DSWN synapse, this paper proposed a DSWN-based specific purpose neural computing device-CASSANN-IIspr. As its application, a rigid body recognition system was developed on CASSANN-IIspr, which achieved better performance than RIBF-SVMs system.

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三重基序蛋白TRIM5α(Tripartite motif protein 5 alpha)是哺乳动物细胞中一种重要的限制因子,广泛分布于各种哺乳动物细胞中。人类TRIM5α mRNA 广泛表达于人类各个组织中,并且I 型干扰素IFN-α/β/γ 均能与TRIM5α 基因启动子的ISRE 元件结合,上调TRIM5α mRNA 的表达。恒河猴(Macaca mulatta)TRIM5α 是恒河猴体内重要的限制因子。目前对恒河猴尤其是中国恒河猴TRIM5α 的组织分布以及在受到外界刺激时TRIM5α mRNA 表达量的变化研究还未见报道。本论文通过从中国恒河猴各组织中提取总RNA,以β-actin 基因作为内参照,通过逆转录PCR 检测各组织中TRIM5α mRNA 的表达。我们选择用HIV-GFP-VSVG 感染、用佛波脂(Phorbol myfismte acetate, PMA)+离子霉素(Ionomycin, Ion),CD28 抗体+CD49d 抗体分别共刺激恒河猴PBMC,研究不同刺激对中国恒河猴TRIM5α mRNA 表达量的影响。研究发现:TRIM5α mRNA 广泛表达于恒河猴各组织中,在免疫系统和泌尿生殖系统各组织,如腹淋巴结、睾丸和附睾中表达量最高,而在神经系统各组织如大脑、脊髓中表达量比较少,在其他各组织中未见明显的表达差异。此外HIV-GFP-VSVG 感染、PMA+ Ion 与CD28 抗体+CD49d 抗体分别共刺激PBMC 均能促进PBMC TRIM5α mRNA 表达量的上调。 TRIM5α 作为恒河猴体内的最主要的限制HIV-1 感染的限制因子,除了可能通过促进HIV-1 的脱壳和阻止整合前复合物PIC(pre-integration complex)入核,恒河猴TRIM5α 还能限制HIV-1 病毒颗粒的产生。在这个过程中B30.2 结构域是非必需的,而B-box2 和Coiled-Coil 结构域起着决定性的作用。因为鹰猴(Aotes trivirgatus)TRIMCyp(omTRIMCyp) 蛋白和北平顶猴(Macaca leouina) TRIMCyp(npmTRIMCyp)蛋白的B-box2 和Coiled-Coil 结构域与恒河猴TRIM5α 的B-box2 和Coiled-Coil 具有很高的同源性,我们希望了解鹰猴TRIMCyp 蛋白和北平顶猴TRIMCyp 蛋白对HIV-1 病毒颗粒的产生是否有限制作用。本论文主要通过将质粒pNL4.3 分别与质粒pLPCX 、pLPCX-npmTRIMCyp-HA 、 pLPCX-omTRIMCyp-HA和pLPCX-rhTRIM5α-HA共转染293T细胞,通过western blot 检测细胞内Gag 蛋白和TRIM5 蛋白的表达情况,研究omTRIMCyp 蛋白和 npmTRIMCyp 蛋白对HIV-1 病毒颗粒产生的限制作用。结果表明:北平顶猴 TRIMCyp 蛋白、鹰猴TRIMCyp 蛋白都能不同程度的促进HIV-1 病毒Gag 蛋白的降解。

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天然免疫分子TRIM5α(tripartite motif protein 5α)是近年来发现的一种重要的宿主细胞内逆转录病毒限制因子。在灵长类动物细胞中,TRIM5α蛋白可以在病毒进入细胞后、逆转录前的阶段抑制HIV-1、N-MLV和EIAV等逆转录病毒的复制。由于TRIM5α分子的作用,绝大部分旧大陆猴(Old World monkey)都不能感染HIV-1。而在新大陆猴(New World monkey)中,鹰猴是唯一不感染HIV-1的灵长类动物。研究证明,鹰猴细胞中存在的TRIM5-CypA融合蛋白(owl monkey TRIM5-CypA,omTRIMCyp)介导了抗HIV-1的作用,从而使鹰猴不能感染HIV-1。研究证明,平顶猴是旧大陆猴中唯一报道可以感染HIV-1的灵长类动物,但是其感染HIV-1的机制并不清楚。根据现行的灵长类动物分类学,原属平顶猴群体(M. nemestrina group)的三个亚种分为猕猴属的三个不同种:巽他平顶猴(Sunda pig-tailed macaque,M. nemestrina),北平顶猴(Northern pig-tailed macaque,M. leonina)和明打威猴(Mentawai macaque,M. pagensis)。本论文对中国云南境内北平顶猴TRIM5基因座和感染HIV-1的相关性进行了研究。通过PCR和测序对北平顶猴基因组TRIM5基因座进行分析,发现一个CypA假基因的cDNA通过逆转座机制插入至TRIM5基因座的3’-UTR区域,形成了一个不同于鹰猴TRIM5-CypA的新型融合基因npmTRIMCyp(northern pig-tailed macaque TRIM5-CypA)。通过RT-PCR对npmTRIMCyp融合基因的转录本进行分析,我们鉴定出npmTRIMCyp共有3种不同的选择性剪接产物,分别为npmTRIMCypV1-V3。进一步克隆和测序这3种不同选择性剪接体,通过丰度和序列分析证实:npmTRIMCypV2是优势剪接体,可能在该融合基因产物的功能中发挥作用。研究发现北平顶猴npmTRIMCyp融合基因主要转录本中外显子7和8均被剪切掉。外显子7剪接丢失机制源于TRIM5第6内含子内 3’剪接位点的G/T突变。我们克隆了npmTRIMCyp融合基因cDNA的蛋白编码区ORF,并构建了重组表达npmTRIMCyp的载体,转染HeLa和HeLa-T4细胞并获得稳定表达的细胞株。通过感染HIV-1证实,npmTRIMCyp融合蛋白不能够限制HIV-1的感染和复制,这可能是北平顶猴作为旧大陆猴中唯一对HIV-1易感的灵长类动物的重要分子机制之一。通过HIV-1感染灵长类动物PBMCs实验证实,北平顶猴可以感染HIV-1。npmTRIMCyp可以有效地限制HIV-2ROD的复制,但对SIVmac239只有十分微弱的限制活性。通过构建鹰猴omTRIMCyp和北平顶猴npmTRIMCyp的置换剪接体(SWAP-1和SWAP-2),转染融合基因及其置换剪接体的CRFK细胞激光共聚焦实验证明,npmTRIMCyp、SWAP1和SWAP2在细胞内主要存在于胞浆中。稳定表达融合蛋白和置换剪接体的CRFK细胞感染HIV-1-GFP-VSVG分析表明,含omTRIMCyp外显子7的SWAP-1和SWAP-2均具有限制HIV-1活性,但SWAP-1的活性更强一些,这表明TRIM5结构域的外显子7可能在介导对HIV-1的限制活性中发挥了协同辅助作用。免疫共沉淀研究表明,npmTRIMCyp不能识别和结合HIV-1的衣壳蛋白。对北平顶猴中介导识别逆转录病毒区域的基因组部分进行了测序,共鉴定出46个多态性位点,表明在北平顶猴识别逆转录病毒衣壳区域存在较高的多态性。

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Two marine urostylid ciliates, Holosticha hamulata n. sp. and Holosticha heterofoissneri Hu and Song, 2001, were investigated using live observation and protargol impregnation. Both species were isolated from Korean intertidal sediments of the Yellow Sea. Holosticha hamulata measures about 150 x 25 pro in vivo, and is characterized by a tripartite body shape with a narrow head, an inflated trunk, and a tail that distally projects ventrally forming a hook-like structure. It is the characteristic body shape that distinguishes H. hamulata distinctly from congeners. Holosticha hamulata differs from H. heterofoissneri, possibly the nearest relative, also by the location of the contractile vacuole (ahead of mid-body versus near posterior body third) and the configuration of the macronucleus (on average, 33 scattered nodules assuming a Y-shape versus 17 nodules that may form a U shape). The average number of the macronuclear nodules is a pronounced feature showing great consistency in populations of each species. However, their arrangement is variable in H. heterofoissneri where the nodules are basically scattered or connected by fine fibers forming an elongate U-shape. The location of the contractile vacuole as a taxonomic feature is discussed and a dichotomous key to the species of Holosticha sensu stricto is provided.

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Rothwell, W., Femina (Trinity College, Cambridge MS B.14.40); edited with an Introduction and Notes (The Anglo-Norman On-Line Hub, 2005) RAE2008

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The issue of ancestors has been controversial since the first encounters of Christianity with Shona religion. It remains a major theological problem that needs to be addressed within the mainline churches of Zimbabwe today. Instead of ignoring or dismissing the ancestor cult, which deeply influences the socio-political, religious, and economic lives of the Shona, churches in Zimbabwe should initiate a Christology that is based on it. Such a Christology would engage the critical day-to-day issues that make the Shona turn to their ancestors. Among these concerns are daily protection from misfortune, maintaining good health and increasing longevity, successful rainy seasons and food security, and responsible governance characterized by economic and political stability. Since the mid-16th century arrival of Jesuit missionaries in the Mutapa Kingdom, the Church has realized that many African Christians resorted to their ancestors in times of crisis. Although both Catholic and Protestant missionaries from the 1700s through the early 1900s fiercely attacked Shona traditional beliefs as superstitious and equated ancestors with evil spirits, the cult did not die. Social institutions, such as schools and hospitals provided by missionaries, failed to eliminate ancestral beliefs. Even in the 21st century, many Zimbabweans consult their ancestors. The Shona message to the church remains "Not without My Ancestors." This dissertation examines the significance of the ancestors to the Shona, and how selected denominations and new religious movements have interpreted and accommodated ancestral practices. Taking the missiological goal of "self-theologizing" as the framework, this dissertation proposes a "tripartite Christology" of "Jesus the Family Ancestor", "Jesus the Tribal Ancestor," and "Jesus the National Ancestor," which is based on the Shona "tripartite ancestrology." Familiar ecclesiological and liturgical language, idioms, and symbols are used to contribute to the wider Shona understanding of Jesus as the ancestor par excellence, in whom physical and spiritual needs-including those the ordinary ancestors fail to meet-are fulfilled.

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Do humans and animals learn exemplars or prototypes when they categorize objects and events in the world? How are different degrees of abstraction realized through learning by neurons in inferotemporal and prefrontal cortex? How do top-down expectations influence the course of learning? Thirty related human cognitive experiments (the 5-4 category structure) have been used to test competing views in the prototype-exemplar debate. In these experiments, during the test phase, subjects unlearn in a characteristic way items that they had learned to categorize perfectly in the training phase. Many cognitive models do not describe how an individual learns or forgets such categories through time. Adaptive Resonance Theory (ART) neural models provide such a description, and also clarify both psychological and neurobiological data. Matching of bottom-up signals with learned top-down expectations plays a key role in ART model learning. Here, an ART model is used to learn incrementally in response to 5-4 category structure stimuli. Simulation results agree with experimental data, achieving perfect categorization in training and a good match to the pattern of errors exhibited by human subjects in the testing phase. These results show how the model learns both prototypes and certain exemplars in the training phase. ART prototypes are, however, unlike the ones posited in the traditional prototype-exemplar debate. Rather, they are critical patterns of features to which a subject learns to pay attention based on past predictive success and the order in which exemplars are experienced. Perturbations of old memories by newly arriving test items generate a performance curve that closely matches the performance pattern of human subjects. The model also clarifies exemplar-based accounts of data concerning amnesia.

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Memories in Adaptive Resonance Theory (ART) networks are based on matched patterns that focus attention on those portions of bottom-up inputs that match active top-down expectations. While this learning strategy has proved successful for both brain models and applications, computational examples show that attention to early critical features may later distort memory representations during online fast learning. For supervised learning, biased ARTMAP (bARTMAP) solves the problem of over-emphasis on early critical features by directing attention away from previously attended features after the system makes a predictive error. Small-scale, hand-computed analog and binary examples illustrate key model dynamics. Twodimensional simulation examples demonstrate the evolution of bARTMAP memories as they are learned online. Benchmark simulations show that featural biasing also improves performance on large-scale examples. One example, which predicts movie genres and is based, in part, on the Netflix Prize database, was developed for this project. Both first principles and consistent performance improvements on all simulation studies suggest that featural biasing should be incorporated by default in all ARTMAP systems. Benchmark datasets and bARTMAP code are available from the CNS Technology Lab Website: http://techlab.bu.edu/bART/.

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Grouping of collinear boundary contours is a fundamental process during visual perception. Illusory contour completion vividly illustrates how stable perceptual boundaries interpolate between pairs of contour inducers, but do not extrapolate from a single inducer. Neural models have simulated how perceptual grouping occurs in laminar visual cortical circuits. These models predicted the existence of grouping cells that obey a bipole property whereby grouping can occur inwardly between pairs or greater numbers of similarly oriented and co-axial inducers, but not outwardly from individual inducers. These models have not, however, incorporated spiking dynamics. Perceptual grouping is a challenge for spiking cells because its properties of collinear facilitation and analog sensitivity to inducer configurations occur despite irregularities in spike timing across all the interacting cells. Other models have demonstrated spiking dynamics in laminar neocortical circuits, but not how perceptual grouping occurs. The current model begins to unify these two modeling streams by implementing a laminar cortical network of spiking cells whose intracellular temporal dynamics interact with recurrent intercellular spiking interactions to quantitatively simulate data from neurophysiological experiments about perceptual grouping, the structure of non-classical visual receptive fields, and gamma oscillations.

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Computational models of learning typically train on labeled input patterns (supervised learning), unlabeled input patterns (unsupervised learning), or a combination of the two (semisupervised learning). In each case input patterns have a fixed number of features throughout training and testing. Human and machine learning contexts present additional opportunities for expanding incomplete knowledge from formal training, via self-directed learning that incorporates features not previously experienced. This article defines a new self-supervised learning paradigm to address these richer learning contexts, introducing a neural network called self-supervised ARTMAP. Self-supervised learning integrates knowledge from a teacher (labeled patterns with some features), knowledge from the environment (unlabeled patterns with more features), and knowledge from internal model activation (self-labeled patterns). Self-supervised ARTMAP learns about novel features from unlabeled patterns without destroying partial knowledge previously acquired from labeled patterns. A category selection function bases system predictions on known features, and distributed network activation scales unlabeled learning to prediction confidence. Slow distributed learning on unlabeled patterns focuses on novel features and confident predictions, defining classification boundaries that were ambiguous in the labeled patterns. Self-supervised ARTMAP improves test accuracy on illustrative lowdimensional problems and on high-dimensional benchmarks. Model code and benchmark data are available from: http://techlab.bu.edu/SSART/.

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Studies of perceptual learning have focused on aspects of learning that are related to early stages of sensory processing. However, conclusions that perceptual learning results in low-level sensory plasticity are of great controversy, largely because such learning can often be attributed to plasticity in later stages of sensory processing or in the decision processes. To address this controversy, we developed a novel random dot motion (RDM) stimulus to target motion cells selective to contrast polarity, by ensuring the motion direction information arises only from signal dot onsets and not their offsets, and used these stimuli in conjunction with the paradigm of task-irrelevant perceptual learning (TIPL). In TIPL, learning is achieved in response to a stimulus by subliminally pairing that stimulus with the targets of an unrelated training task. In this manner, we are able to probe learning for an aspect of motion processing thought to be a function of directional V1 simple cells with a learning procedure that dissociates the learned stimulus from the decision processes relevant to the training task. Our results show learning for the exposed contrast polarity and that this learning does not transfer to the unexposed contrast polarity. These results suggest that TIPL for motion stimuli may occur at the stage of directional V1 simple cells.

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SyNAPSE program of the Defense Advanced Projects Research Agency (Hewlett-Packard Company, subcontract under DARPA prime contract HR0011-09-3-0001, and HRL Laboratories LLC, subcontract #801881-BS under DARPA prime contract HR0011-09-C-0001); CELEST, an NSF Science of Learning Center (SBE-0354378)