806 resultados para controlling mechanism
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In China, the history of the establishment of the private housing market is pretty short. Actually in less then two decades, the market has grown from almost the scratch to playing an important role in the economy. A great achievement! But many problems also exist. They need to be properly addressed and solved. Price problem---simply put, housing price is too high--- is one of them, and this paper is focused on it. Three basic questions are posed, i.e. (1) how to judge the housing affordability? (2) why the housing price is so high? (3) how to solve the housing price problem. The paper pays particular attention to answering the second question. Except the numerous news reports and surveys show that most of the ordinary city dwellers complained about the high housing price, the mathematical means, the four ratios, are applied to judge the housing affordability in Shanghai and Shenzhen. The results are very clear that the price problem is severe. So why? Something is wrong with the price mechanism. This research shows that mainly these five factors contribute to the price problem: the housing reform, the housing development model, the unbalanced housing market, the housing project financing and the poor governmental management. Finally the paper puts forward five suggestions to solve the housing price problem in first-hand private Chinese housing market. They include: the establishment of real estate information system, the creation of specific price management department, the government price regulation, the property tax and the legalization of "cushion money".
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During synaptic transmission, NT-filled synaptic vesicles are released by Ca2+-triggered exocytosis at the active zone. Following exocytosis, SV membrane is immediately re-internalized and synaptic vesicles (SVs) are regenerated by a local recycling mechanism within the presynaptic terminal. It is debated whether an endosomal compartment is involved in this recycling process. In contrast, it is well known from cultured mammalian cells, that endocytic vesicles fuse to the early sorting endosome. The early endosome is a major sorting station of the cell where cargo is send into the degradative pathway to late endosome and lysosome or towards recycling. Each trafficking step is mediated by a certain protein of the Rab family. Rab proteins are small GTPases belonging to the Ras superfamily. They accumulate at their target compartments and have thereby been used as markers for the different endocytic organelles in cultured mammalian cells. Rab5 controls trafficking from the PM to the early endosome and has thereby been used as marker for this compartment. A second marker is based on the specific binding of the FYVE zinc finger protein domain to the lipid PI(3)P that is specifically generated at the early endosomal membrane. This study used the Drosophila NMJ as a model system to investigate the SV recycling process. In particular, three questions were addressed: First, is an endosomal compartment present at the synapse? Second, do SVs recycle through an endosome? Third, is Rab5 involved in SV recycling? We used GFP fusions of Rab5 and 2xFYVE to visualize endosomal compartments at the presynaptic terminal of Drosophila third instar larval NMJs. Furthermore, the endosomes are located within the pool of recycling SVs, labeled with the styryl-dye FM5-95. Using the temperature-sensitive mutation in Dynamin, shibirets, we showed that SV recycling involves trafficking through an intermediate endosomal compartment. In cultured mammalian cells, interfering with Rab5 function by expressing the dominant negative version, Rab5SN causes the fragmentation of the endosome and the accumulation of endocytic vesicles. In contrast, when Rab5 is overexpressed enlarged endosomal compartments were observed. In Drosophila, the endosomal compartment was disrupted when loss of function and dominant negative mutants of Rab5 were expressed. In addition, at the ultrastructural we observed an accumulation of endocytic vesicles in Rab5S43N expressing terminals and enlarged endosomes when Rab5 was overexpressed. Furthermore, interfering with Rab5 function using the dominant negative Rab5S43N caused a decrease in the SV recycling kinetics as shown by FM1-43 experiments. In contrast, overexpression of Rab5 or GFP-Rab5 caused an increase in the FM1-43 internalization rate. Finally, standard electrophysiological techniques were used to measure synaptic function. We found that the Rab5-mediated endosomal SV recycling pathway generates vesicles with a higher fusion efficacy during Ca2+-triggered release, compared to SVs recycled when Rab5 function was impaired. We therefore suggest a model in which the endosome serves as organelle to control the SV fusion efficacy and thereby the synaptic strength. Since changes in the synaptic strength are occuring during learning and memory processes, controlling endosomal SV recycling might be a new molecular mechanism involved in learning and memory.
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Die langfristige Sicherung bestehender (profitabler) Kundenbeziehungen erweist sich für Unternehmen zunehmend als eine wichtige und zugleich immer schwieriger zu bewältigende Herausforderung. Vor dem Hintergrund hoher Kosten für die Neukundengewinnung und sinkender Kundenloyalität auf gesättigten, wettbewerbsintensiven und transparenten Märkten – verbunden mit tendenziell steigenden Abwanderungsraten – rücken die Früherkennung und Prävention von Kundenabwanderungen sowie die Kundenrückgewinnung verstärkt in den Fokus. Der Aufwand für derartige Anstrengungen muss in einem sinnvollen Verhältnis zum Ertrag stehen. Letztlich wird also für den Komplex „Kundenabwanderung“ ein ergebnisgesteuertes Gesamtsystem der Früherkennung, Prävention und Rückgewinnung benötigt. An dieser Stelle setzt das Customer Recovery Controlling an. Auf Basis des kontributionsorientierten Controllingansatzes wird ein ganzheitliches Controllingsystem für das Customer Recovery Management entwickelt. Dabei werden die führungsunterstützenden Controllingprinzipien der Entscheidungsfundierung, -reflexion und Koordinationsentlastung einschließlich zentraler Controllinginstrumente in den Gesamtzusammenhang des Customer Recovery Managementprozesses gestellt. Es wird aufgezeigt, dass mit einem professionellen Customer Recovery Controlling große Nutzenpotenziale verbunden sind, die sich auf der Customer Recovery Managementebene (z.B. verbesserte Entscheidungsqualität, höhere Präventions- bzw. Rückgewinnungsraten) wie auch auf der Ebene der Gesamtunternehmung (z.B. Sicherung bzw. Erhöhung des Kundenstammwertes) auswirken. Die Erfolgsmodellierung zählt zu den wesentlichen Aufgaben des Controlling. Diesbezüglich bedarf es eines mehrdimensionalen Controllinginstruments, das neben Ergebnisindikatoren auch Leistungstreiber berücksichtigt: die Customer Recovery Scorecard. Ihre Perspektiven – Finanz-, Kunden-, Prozess-, Potenzial- und Wettbewerbsperspektive – sichern eine ganzheitliche Betrachtung der strategisch relevanten Erfolgsfaktoren und darüber hinaus gewährleisten die Kennzahlen eine systematische Planung, Steuerung und Kontrolle des Customer Recovery Management Erfolgs. Für die Erfolgsgrößen werden kausale Abhängigkeiten in Form von Ursache-Wirkungs-Beziehungen innerhalb und zwischen den Perspektiven erfasst (Strategy Maps), wodurch gewissermaßen eine Modellierung der Wertschöpfungskette im Customer Recovery Management erfolgt. Unsere durchgeführte Studie zum Status Quo des Customer Recovery Controlling in der deutschen (groß-)unternehmerischen Dienstleistungspraxis hat gezeigt, dass der präventive Umgang mit Kundenabwanderung zukünftig an Bedeutung gewinnen wird. Obwohl die Mehrheit der befragten Unternehmen über ein organisatorisch verankertes Controlling verfügt, sind bezüglich des allgemeinen Controllingentwicklungsstandes inkl. des Instrumenteneinsatzes Defizite zu konstatieren. In Bezug auf Letzteres hat sich herausgestellt, dass rein ökonomische Aspekte eine dominante Stellung einnehmen; Finanzkennzahlen werden gegenüber den Markt-, Prozess und Potenzialkennzahlen zum einen häufiger eingesetzt und zum anderen auch in ihrer Bedeutung höher eingeschätzt. Darüber hinaus ist der Einsatz von Kennzahlensystemen im Customer Recovery Management noch nicht weit verbreitet und auch hier ist ein finanzwirtschaftlicher Fokus festzustellen. Der Erfolg von Customer Recovery Maßnahmen wird zu einem großen Ausmaß durch die Nutzung des Synergiepotenzials von Customer Recovery Management (Führung vom Markt bzw. Kunden her) und Controlling (Führung vom Erfolg her) determiniert.
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Die bereits seit einigen Jahren stark in der wissenschaftlichen Literatur diskutierte RFID-Technologie ermöglicht es, Informationen (echt-)zeitnah, detailliert und mit einer höheren Objektivität bereitzustellen. Der Fokus vieler Arbeiten lag dabei vor allem auf RFID-spezifischen Einsatzmöglichkeiten in den Bereichen des Supply Chain- und des Customer Relationship Managements. Aber auch für ein modernes Controlling bzw. für die Managementunterstützung sind Innovationen in der Informationstechnik – hier die Besonderheiten und Eigenschaften von RFID-Daten – von sehr hoher Bedeutung. Dieses Forschungsfeld hat bisher jedoch kaum Beachtung gefunden. Mit der vorliegenden Dissertationsschrift wird versucht, diese Forschungslücke sowohl konzeptionell als auch empirisch zu schließen. Sie gliedert sich zu diesem Zweck in vier Kapitel. Nach einer Einleitung werden im zweiten Kapitel die konzeptionellen Grundlagen geschaffen. Dazu werden verschiedene Controllingkonzeptionen vorgestellt und anhand ausgewählter Kriterien dahingehend überprüft, ob diese dazu geeignet sind, die RFID-Nutzenpotenziale im Controlling darzustellen. Der kontributionsorientierte Ansatz nach Link erweist sich hierbei als zweckmäßiger Controllingansatz. Im zweiten Grundlagenkapitel werden u. a. die Funktionsweise sowie verschiedene Vorteile der RFID-Technologie vorgestellt. Im Hauptkapitel wird zunächst der Stand der Controllingforschung in Bezug auf RFID sowie dessen Einordnung in das Controlling gezeigt. Im Anschluss daran folgt die Arbeit dem systematischen Aufbau des kontributionsorientierten Ansatzes wie folgt: - Harmonisation: RFID auf der Ebene der Unternehmensleitung - Harmonisationsunterstützung: RFID auf der Ebene des Controlling • RFID-Einfluss auf das Zielsystem: Sachziele, Formalziele und Sozialziele • RFID und Vorsteuerung • Der RFID-Beitrag zur Umsetzung der Controllingprinzipien: Entscheidungsfundierung, Koordinationsentlastung und Entscheidungsreflexion Da mit dem RFID-Beitrag zur Vorsteuerung die „Kernleistung“ eines modernen Controlling behandelt wurde, besitzt dieser Punkt eine besonders hohe Relevanz. Den Abschluss der Dissertationsschrift bildet eine empirische Untersuchung (Kapitel vier) zum Status Quo der Nutzung von RFID-Daten bzw. -Informationen im Controlling. Darüber hinaus wurden mögliche Problemfelder der RFID-Nutzung im Controlling respektive der Managementunterstützung offengelegt. Die Diskrepanz zwischen den im theoretischen Teil der Arbeit herausgearbeiteten vielfältigen Nutzenpotenzialen von RFID im Controlling und der tatsächlichen Nutzung von RFID-Daten im Controlling deutscher Unternehmen ist dabei ein wesentliches Ergebnis. Die Arbeit schließt mit einer Zusammenfassung der Ergebnisse und einem Ausblick auf den weiteren Forschungsbedarf (Kapitel fünf) ab.
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Carbon Governance systems – institutional arrangements in place for mitigating greenhouse gas emissions – are different in emerging countries. Indeed, carbon is the same everywhere but Carbon Governance isn’t: in Brazil, the financial community is actively interested in carbon trading, but Chinese banks have hardly any interest in it; and while the Chinese government takes an active interest in providing capacity to project developers, the Brazilian authorities see their role uniquely as guarantors of environmental integrity of emissions reductions projects. In the case of India, carbon governance offers specific features of patterns and interactions mostly because India strongly developed the Clean Development Mechanism and its market. This article proposes a study to the research and understanding of how exactly carbon governance works in the Indian case, knowing that India is the second largest host of CDM projects.
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The accurate transport of an ion over macroscopic distances represents a challenging control problem due to the different length and time scales that enter and the experimental limitations on the controls that need to be accounted for. Here, we investigate the performance of different control techniques for ion transport in state-of-the-art segmented miniaturized ion traps. We employ numerical optimization of classical trajectories and quantum wavepacket propagation as well as analytical solutions derived from invariant based inverse engineering and geometric optimal control. The applicability of each of the control methods depends on the length and time scales of the transport. Our comprehensive set of tools allows us make a number of observations. We find that accurate shuttling can be performed with operation times below the trap oscillation period. The maximum speed is limited by the maximum acceleration that can be exerted on the ion. When using controls obtained from classical dynamics for wavepacket propagation, wavepacket squeezing is the only quantum effect that comes into play for a large range of trapping parameters. We show that this can be corrected by a compensating force derived from invariant based inverse engineering, without a significant increase in the operation time.
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Cyclic GMP-dependent protein kinase (PKG) is a key transducer in the NO-cGMP signaling pathway. In this line, PKG has been considered an important drug target for treating hypertensive cardiovascular and pulmonary diseases. However, the investigation of PKG’s allosteric activation mechanism has been hampered by a lack of structural information. One of the fundamental questions on the cGMP-dependent activation of PKG is how the enzyme can distinguish cGMP over cAMP and selectively respond to cGMP. To ensure proper signaling, PKG must have developed unique features to ensure its activation upon the right activation signal. In this thesis, the cGMP-selective activation mechanism of PKG was studied through determining crystal structures of three truncated constructs of the regulatory domain [CNB-A (92-227), CNB-B (271-369), and CNB-A/B (92-351)] of PKG Iβ in the absence or presence of cyclic nucleotides. Herein, two individual CNB domain structures with biochemical data revealed that the C-terminal CNB domain (CNB-B) is responsible for cGMP selectivity, while the N-terminal CNB-domain (CNB-A) has a higher binding affinity for both cGMP and cAMP without showing any selectivity. Based on these crystal structures, mutagenesis studies were performed in which the critical residues for cyclic nucleotide selectivity and activation were identified. Furthermore, we discovered that the conformational changes of the C-terminal helix of the CNB-B that bridges between the regulatory and catalytic domains including the hydrophobic capping interaction are crucial for PKG activation. In addition, to observe the global conformation of the activated R-domain, I solved a co-crystal structure of the CNB-A/B with cGMP. Although a monomeric construct was crystallized, the structure displays a dimer. Strikingly, the CNB-A domain and its bound cGMP provide a key interface for this dimeric interaction. Using small angle X-ray scattering (SAXS), the existence of the cGMP-mediated dimeric interface within the CNB domains was confirmed. Furthermore, measuring cGMP-binding affinities (EC50) of the dimeric interface mutants as well as determining activation constants (Ka) revealed that the interface formation is important for PKG activation. To conclude, this thesis study provides a new mechanistic insight in PKG activation along with a newly found interface that can be targeted for designing PKG-specific activity modulators.
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Since robots are typically designed with an individual actuator at each joint, the control of these systems is often difficult and non-intuitive. This thesis explains a more intuitive control scheme called Virtual Model Control. This thesis also demonstrates the simplicity and ease of this control method by using it to control a simulated walking hexapod. Virtual Model Control uses imagined mechanical components to create virtual forces, which are applied through the joint torques of real actuators. This method produces a straightforward means of controlling joint torques to produce a desired robot behavior. Due to the intuitive nature of this control scheme, the design of a virtual model controller is similar to the design of a controller with basic mechanical components. The ease of this control scheme facilitates the use of a high level control system which can be used above the low level virtual model controllers to modulate the parameters of the imaginary mechanical components. In order to apply Virtual Model Control to parallel mechanisms, a solution to the force distribution problem is required. This thesis uses an extension of Gardner`s Partitioned Force Control method which allows for the specification of constrained degrees of freedom. This virtual model control technique was applied to a simulated hexapod robot. Although the hexapod is a highly non-linear, parallel mechanism, the virtual models allowed text-book control solutions to be used while the robot was walking. Using a simple linear control law, the robot walked while simultaneously balancing a pendulum and tracking an object.
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In Catalonia, according to the nitrate directive (91/676/EU), nine areas have been declared as vulnerable to nitrate pollution from agricultural sources (Decret 283/1998 and Decret 479/2004). Five of these areas have been studied coupling hydro chemical data with a multi-isotopic approach (Vitòria et al. 2005, Otero et al. 2007, Puig et al. 2007), in an ongoing research project looking for an integrated application of classical hydrochemistry data, with a comprehensive isotopic characterisation (δ15N and δ18O of dissolved nitrate, δ34S and δ18O of dissolved sulphate, δ13C of dissolved inorganic carbon, and δD and δ18O of water). Within this general frame, the contribution presented explores compositional ways of: (i) distinguish agrochemicals and manure N pollution, (ii) quantify natural attenuation of nitrate (denitrification), and identify possible controlling factors. To achieve this two-fold goal, the following techniques have been used. Separate biplots of each suite of data show that each studied region has a distinct δ34S and pH signatures, but they are homogeneous with regard to NO3- related variables. Also, the geochemical variables were projected onto the compositional directions associated with the possible denitrification reactions in each region. The resulting balances can be plot together with some isotopes, to assess their likelihood of occurrence
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Resumen tomado de la publicaci??n
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Resumen tomado de la publicaci??n
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This 6-minute video shows tutors how they can control access to recordings made using panopto. They can disable access completely, restrict access to specific individuals or make a recording available to anyone in the world.
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El marcaje de proteínas con ubiquitina, conocido como ubiquitinación, cumple diferentes funciones que incluyen la regulación de varios procesos celulares, tales como: la degradación de proteínas por medio del proteosoma, la reparación del ADN, la señalización mediada por receptores de membrana, y la endocitosis, entre otras (1). Las moléculas de ubiquitina pueden ser removidas de sus sustratos gracias a la acción de un gran grupo de proteasas, llamadas enzimas deubiquitinizantes (DUBs) (2). Las DUBs son esenciales para la manutención de la homeostasis de la ubiquitina y para la regulación del estado de ubiquitinación de diferentes sustratos. El gran número y la diversidad de DUBs descritas refleja tanto su especificidad como su utilización para regular un amplio espectro de sustratos y vías celulares. Aunque muchas DUBs han sido estudiadas a profundidad, actualmente se desconocen los sustratos y las funciones biológicas de la mayoría de ellas. En este trabajo se investigaron las funciones de las DUBs: USP19, USP4 y UCH-L1. Utilizando varias técnicas de biología molecular y celular se encontró que: i) USP19 es regulada por las ubiquitin ligasas SIAH1 y SIAH2 ii) USP19 es importante para regular HIF-1α, un factor de transcripción clave en la respuesta celular a hipoxia, iii) USP4 interactúa con el proteosoma, iv) La quimera mCherry-UCH-L1 reproduce parcialmente los fenotipos que nuestro grupo ha descrito previamente al usar otros constructos de la misma enzima, y v) UCH-L1 promueve la internalización de la bacteria Yersinia pseudotuberculosis.
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The aflatoxin B1 (AFB1) is a mycotoxin that has been identified as the most potent hepatocarcinogen. The metabolite resulting from detoxification process of AFB1 in liver, has the ability to react with the genomic DNA, generating AFB1-DNA adducts; during DNA replication process, this adduct induced the G:C→T:A transversion. Polymorphism in genes encoding for enzymes involved in the activation and detoxification of AFB1 and DNA repair enzymes has been associated with the risk of hepatocellular carcinoma (HCC) development. Additionally, in populations of high exposure to aflatoxin and high prevalence of hepatitis B virus (HBV) infection, has been demonstrated a synergism between these two risk factors for the development of HCC.