TY - JOUR A1 - Winter, Michael A1 - Pryss, Rüdiger A1 - Probst, Thomas A1 - Reichert, Manfred T1 - Towards the applicability of measuring the electrodermal activity in the context of process model comprehension: feasibility study JF - Sensors N2 - Process model comprehension is essential in order to understand the five Ws (i.e., who, what, where, when, and why) pertaining to the processes of organizations. However, research in this context showed that a proper comprehension of process models often poses a challenge in practice. For this reason, a vast body of research exists studying the factors having an influence on process model comprehension. In order to point research towards a neuro-centric perspective in this context, the paper at hand evaluates the appropriateness of measuring the electrodermal activity (EDA) during the comprehension of process models. Therefore, a preliminary test run and a feasibility study were conducted relying on an EDA and physical activity sensor to record the EDA during process model comprehension. The insights obtained from the feasibility study demonstrated that process model comprehension leads to an increased activity in the EDA. Furthermore, EDA-related results indicated significantly that participants were confronted with a higher cognitive load during the comprehension of complex process models. In addition, the experiences and limitations we learned in measuring the EDA during the comprehension of process models are discussed in this paper. In conclusion, the feasibility study demonstrated that the measurement of the EDA could be an appropriate method to obtain new insights into process model comprehension. KW - process model KW - process model comprehension KW - electrodermal activity KW - sensor Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-211276 SN - 1424-8220 VL - 20 IS - 16 ER - TY - JOUR A1 - Krueger, Beate A1 - Friedrich, Torben A1 - Förster, Frank A1 - Bernhardt, Jörg A1 - Gross, Roy A1 - Dandekar, Thomas T1 - Different evolutionary modifications as a guide to rewire two-component systems JF - Bioinformatics and Biology Insights N2 - Two-component systems (TCS) are short signalling pathways generally occurring in prokaryotes. They frequently regulate prokaryotic stimulus responses and thus are also of interest for engineering in biotechnology and synthetic biology. The aim of this study is to better understand and describe rewiring of TCS while investigating different evolutionary scenarios. Based on large-scale screens of TCS in different organisms, this study gives detailed data, concrete alignments, and structure analysis on three general modification scenarios, where TCS were rewired for new responses and functions: (i) exchanges in the sequence within single TCS domains, (ii) exchange of whole TCS domains; (iii) addition of new components modulating TCS function. As a result, the replacement of stimulus and promotor cassettes to rewire TCS is well defined exploiting the alignments given here. The diverged TCS examples are non-trivial and the design is challenging. Designed connector proteins may also be useful to modify TCS in selected cases. KW - histidine kinase KW - connector KW - Mycoplasma KW - engineering KW - promoter KW - sensor KW - response regulator KW - synthetic biology KW - sequence alignment Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-123647 N1 - This is an open access article. Unrestricted non-commercial use is permitted provided the original work is properly cited. VL - 6 ER - TY - THES A1 - Klein, Alexander T1 - Performance Issues of MAC and Routing Protocols in Wireless Sensor Networks T1 - Leistungsbeschränkende Faktoren von MAC und Routingprotokollen in drahtlosen Sensornetzen N2 - The focus of this work lies on the communication issues of Medium Access Control (MAC) and routing protocols in the context of WSNs. The communication challenges in these networks mainly result from high node density, low bandwidth, low energy constraints and the hardware limitations in terms of memory, computational power and sensing capabilities of low-power transceivers. For this reason, the structure of WSNs is always kept as simple as possible to minimize the impact of communication issues. Thus, the majority of WSNs apply a simple one hop star topology since multi-hop communication has high demands on the routing protocol since it increases the bandwidth requirements of the network. Moreover, medium access becomes a challenging problem due to the fact that low-power transceivers are very limited in their sensing capabilities. The first contribution is represented by the Backoff Preamble-based MAC Protocol with Sequential Contention Resolution (BPS-MAC) which is designed to overcome the limitations of low-power transceivers. Two communication issues, namely the Clear Channel Assessment (CCA) delay and the turnaround time, are directly addressed by the protocol. The CCA delay represents the period of time which is required by the transceiver to detect a busy radio channel while the turnaround time specifies the period of time which is required to switch between receive and transmit mode. Standard Carrier Sense Multiple Access (CSMA) protocols do not achieve high performance in terms of packet loss if the traffic is highly correlated due to the fact that the transceiver is not able to sense the medium during the switching phase. Therefore, a node may start to transmit data while another node is already transmitting since it has sensed an idle medium right before it started to switch its transceiver from receive to transmit mode. The BPS-MAC protocol uses a new sequential preamble-based medium access strategy which can be adapted to the hardware capabilities of the transceivers. The protocol achieves a very low packet loss rate even in wireless networks with high node density and event-driven traffic without the need of synchronization. This makes the protocol attractive to applications such as structural health monitoring, where event suppression is not an option. Moreover, acknowledgments or complex retransmission strategies become almost unnecessary since the sequential preamble-based contention resolution mechanism minimizes the collision probability. However, packets can still be lost as a consequence of interference or other issues which affect signal propagation. The second contribution consists of a new routing protocol which is able to quickly detect topology changes without generating a large amount of overhead. The key characteristics of the Statistic-Based Routing (SBR) protocol are high end-to-end reliability (in fixed and mobile networks), load balancing capabilities, a smooth continuous routing metric, quick adaptation to changing network conditions, low processing and memory requirements, low overhead, support of unidirectional links and simplicity. The protocol can establish routes in a hybrid or a proactive mode and uses an adaptive continuous routing metric which makes it very flexible in terms of scalability while maintaining stable routes. The hybrid mode is optimized for low-power WSNs since routes are only established on demand. The difference of the hybrid mode to reactive routing strategies is that routing messages are periodically transmitted to maintain already established routes. However, the protocol stops the transmission of routing messages if no data packets are transmitted for a certain time period in order to minimize the routing overhead and the energy consumption. The proactive mode is designed for high data rate networks which have less energy constraints. In this mode, the protocol periodically transmits routing messages to establish routes in a proactive way even in the absence of data traffic. Thus, nodes in the network can immediately transmit data since the route to the destination is already established in advance. In addition, a new delay-based routing message forwarding strategy is introduced. The forwarding strategy is part of SBR but can also be applied to many routing protocols in order to modify the established topology. The strategy can be used, e.g. in mobile networks, to decrease the packet loss by deferring routing messages with respect to the neighbor change rate. Thus, nodes with a stable neighborhood forward messages faster than nodes within a fast changing neighborhood. As a result, routes are established through nodes with correlated movement which results in fewer topology changes due to higher link durations. N2 - Im Rahmen dieser Arbeit werden leistungsbeschränkende Faktoren von Medium Access Control (MAC) und Routingprotokollen im Kontext von drahtlosen Sensornetzen untersucht. Zunächst werden typische Probleme des Funkkanals diskutiert. Anschließend führen eine Einteilung von MAC Protokollen, sowie eine Gegenüberstellung relevanter Protokolle in die Thematik ein. Daraufhin werden hardwarelimitierende Faktoren und deren Auswirkung auf die Effizienz von Kanalzugriffsprotokollen untersucht. Des Weiteren wird das vom Autor entwickelte Backoff Preamble-based MAC Protokoll (BPS-MAC) vorgestellt, welches auf die limitierten Fähigkeiten sensortypischer Hardware eingeht und für dichte Sensornetze mit korreliertem Datenverkehr optimiert ist. Ein weiterer Schwerpunkt dieser Arbeit stellt das Thema Routing dar. Hier wird ebenfalls mit einer Einteilung der Protokolle in die Thematik eingeführt. Darüber hinaus werden die wichtigsten Aufgaben von Routingprotokollen vorgestellt. Ein Überblick über häufig verwendete Routingmetriken und Routingprotokolle schließen die Einführung in diesen Themenkomplex ab. Abschließend wird das im Rahmen der Dissertation entwickelte Statistic-Based-Routing (SBR) Protokoll vorgestellt, welches ebenfalls für drahtlose Sensornetze optimiert ist. Der letzte Schwerpunkt beschreibt die Problematik der Leistungsbewertung von Routingprotokollen hinsichtlich klassischer Leistungsparameter wie Paketverlust und Verzögerung. Ebenfalls werden weitere Leistungsparameter wie zum Beispiel die vom Nutzer wahrgenommene Netzqualität genauer untersucht. T3 - Würzburger Beiträge zur Leistungsbewertung Verteilter Systeme - 03/10 KW - Routing KW - Drahtloses Sensorsystem KW - Leistungsbewertung KW - Diskrete Simulation KW - MAC KW - Kanalzugriff KW - Medium KW - MAC KW - routing KW - sensor KW - networks KW - simulation Y1 - 2010 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-52870 ER - TY - THES A1 - Nikolaev, Viacheslav T1 - Development and application of fluorescent cAMP und cGMP biosensors T1 - Entwicklung und Anwendung fluoreszierender Biosensoren für cAMP und cGMP N2 - The cyclic nucleotides cAMP and cGMP are two ubiquitous important second messengers, which regulate diverse physiological responses from vision and memory to blood pressure and thrombus formation. They act in cells via cAMP- and cGMP-dependent protein kinases (PKA and GK), cyclic nucleotide-gated channels and Epac. Although the concept of cyclic nucleotide signalling is well developed based on classical biochemical studies, these techniques have not allowed to analyze cAMP and cGMP in live cells with high temporal and spatial resolution. In the present study fluorescence resonance energy transfer was used to develop a technique for visualization of cAMP and cGMP in live cells and in vitro by means of fluorescent biosensors. Ligand-induced conformational change in a single nucleotide-binding domain flanked with green fluorescent protein mutants was used for dynamic, highly sensitive measurements of cAMP and cGMP. Such biosensors retained binding properties and chemical specificity of unmodified domains, allowing to image cyclic nucleotides in a physiologically relevant range of concentrations. To develop cAMP-sensors, binding domains of PKA, Epac and cAMP-gated HCN-channel were used. cGMP-sensors were based on single domains of GK and phosphodiesterases (PDEs). Sensors based on Epac were used to analyze spatio-temporal dynamics of cAMP in neurons and macrophages, demonstrating that cAMP-gradients travel with a high speed (~ 40 μm/s) throughout the entire cytosol. To understand the mechanisms of cAMP-compartmentation, kinetics properties of phosphodi-esterase (PDE2) were, next, analyzed in aldosterone producing cells. PDE2 is able to rapidly hydrolyze extensive amounts of cAMP, so that the speed of cAMP-hydrolysis is much faster than that of its synthesis, which might serve as a basis of compartmentation. cAMP-sensors were also used to develop a clinically relevant diagnostic method for reliable detection of β1-adrenergic receptor autoantibodies in cardiac myopathy patients, which has allowed to significantly increase the sensitivity of previously developed diagnostic approaches. Conformational change in a single binding domain of GK and PDE was, next, used to create novel fluorescent biosensors for cGMP. These sensors demonstrated high spatio-temporal resolution and were applied to analyze rapid dynamics of cGMP production by soluble and particulate guanylyl cyclases as well as to image cGMP in mesangial cells. In summary, highly sensitive biosensors for cAMP and cGMP based on single cyclic nucleotide-binding domains have been developed and used in various biological and clinically relevant applications. N2 - Die zyklischen Nukleotide cAMP and cGMP sind zwei ubiquitäre Botenstoffe, die verschiedene physiologische Prozesse regulieren, vom Sehen und Gedächtnis bis zu Blutdruck und Thrombusbildung. Sie wirken über cAMP- und cGMP-abhängige Kinasen (PKA und GK), Kanäle und Epac. Obgleich die Funktionen von zyklischen Nukleotiden in klassischen biochemischen Studien gut untersucht sind, ermöglichen diese Methoden nicht, cAMP und cGMP in lebenden Zellen mit hoher zeitlicher und räumlicher Auflösung zu analysieren. In dieser Arbeit wurde Fluoreszenzresonanzenergietransfer benutzt, um eine Technik für die Visualisierung von cAMP and cGMP in lebenden Zellen und in vitro zu entwickeln. Ligand-induzierte Konformationsänderung in einer einzelnen, mit Grünfluoreszenzproteinmutanten fusionierten Bindungsdomäne diente als Grundlage für Biosensoren, die dynamische, hochsensitive Messungen von cAMP und cGMP ermöglichen. Bei solchen Sensoren wurden die chemischen und Bindungseigenschaften von unmodifizierten Domänen aufrechterhalten, was die cAMP- und cGMP-Messungen im physiologischen Konzentrationsbereich in lebenden Zellen ermöglicht. Für die Entwicklung der cAMP-Sensoren wurden die Domänen von PKA, Epac und von einem cAMP- gesteuerten HCN-Kanal benutzt. cGMP-Sensoren beruhen sich auf den Bindungsdomänen von GK und Phosphodiesterasen (PDEs). Mit Hilfe der auf Epac-basierten Sensoren wurde die cAMP-Dynamik in Neuronen und Makrophagen zeitlich und räumlich aufgelöst. In diesen Zellen diffundiert cAMP mit hoher Geschwindigkeit (~ 40 μm/s) frei durch das ganze Zytosol. Um die Mechanismen der cAMP-Kompartimentierung besser zu verstehen, wurden die kinetischen Eigenschaften der PDE2 in aldosteronproduzierenden Zellen analysiert. PDE2 ist imstande, große Mengen von cAMP äußerst schnell zu hydrolisieren, so dass die Geschwindigkeit der cAMP-Hydrolyse viel höher ist als von cAMP-Synthese, was eine Grundlage der cAMP-Kompartimentierung sein könnte. cAMP-Sensoren wurden auch benutzt, um eine klinisch relevante diagnostische Methode zu entwickeln, die Autoantikörper gegen β1-adrenergen Rezeptoren bei Herzinsuffizienzpatienten zuverlässig nachweist. Diese Methode hat ermöglicht, die Sensitivität der früher entwickelten Techniken zu verbessern. Konformationsänderung in einzelnen Bindungsdomänen von GK und PDE wurde als nächstes benutzt, um ein Reihe neuer fluoreszierender Biosensoren für cGMP zu entwickeln. Diese Sensoren zeigten hohe räumliche und zeitliche Auslösung und wurden zur Analyse schneller Dynamik von cGMP-Synthese und für cGMP-Imaging in Mesangialzellen angewandt. Zusammenfassend wurden hochsensitive Biosensoren für cAMP und cGMP auf Grund einzelner, mit Grünfluoreszenzproteinmutanten fusionierter Bindungs-domäne entwickelt und in verschiedenen biologischen und klinisch relevanten Applikationen eingesetzt. KW - Cyclo-AMP KW - Cyclo-GMP KW - Biosensor KW - Fluoreszenz KW - Fluoreszenz-Resonanz-Energie-Transfer KW - cAMP KW - cGMP KW - FRET KW - Fluoreszenz KW - Sensor KW - cAMP KW - cGMP KW - FRET KW - fluorescence KW - sensor Y1 - 2005 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-15673 ER -