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Die vorliegende Arbeit stellt eine Methode für die korpusbasierte Analyse der Verwendung von Softwarebibliotheken in Java-Programmen vor. Die meisten größeren Softwareprojekte verwenden Softwarebibliotheken, die als Schnittstelle für den Programmierer sogenannte APIs (application programming interfaces) bereitstellen. Um den Umstieg von einer solchen API auf eine andere zu unterstützen, strebt man Werkzeuge zur automatisierten API-Migration an. Zur Entwicklung solcher Werkzeuge fehlen allerdings noch Basisdaten. Statistiken und Beobachtungen zur Verwendung von APIs in der Praxis wurden bisher nur mit sehr kleinen Korpora von Projekten und APIs durchgeführt. Wir stellen in dieser Arbeit daher eine Analysemethode vor, die für Messungen an großen Korpora geeignet ist. Hierzu erzeugen wir zunächst einen Korpus von auf SourceForge gehosteten Open-Source-Projekten sowie einen Korpus von Softwarebibliotheken. In der Folge werden alle Projekte des Korpus compiliert, wobei ein Compiler-Plugin für den javac detaillierte Informationen über jede einzelne Methode liefert, die der Compiler erstellt. Diese Informationen werden in einer Datenbank gespeichert und analysiert.
Global crop production increased substantially in recent decades due to agricultural intensification and expansion and today agricultural areas occupy about 38% of Earth’s terrestrial surface - the largest use of land on the planet. However, current high-intensity agricultural practices fostered in the context of the Green Revolution led to serious consequences for the global environment. Pesticides, in particular, are highly biologically active substances that can threaten the ecological integrity of aquatic and terrestrial ecosystems. Although the global pesticide use increases steadily, our field-data based knowledge regarding exposure of non-target ecosystems such as surface waters is very restricted. Available studies have by now been limited to spatially restricted geographical areas or had rather specific objectives rendering the extrapolation to larger spatial scales questionable.
Consequently, this thesis evaluated based on four scientific publications the exposure, effects, and regulatory implications of particularly toxic insecticides` concentrations detected in global agricultural surface waters. FOCUS exposure modelling was used to characterise the highly specific insecticide exposure patterns and to analyse the resulting implications for both monitoring and risk assessment (publication I). Based on more than 200,000 scientific database entries, 838 peer-reviewed studies finally included, and more than 2,500 sites in 73 countries, the risks of agricultural insecticides to global surface waters were analysed by means of a comprehensive meta-analysis (publication II). This meta-analysis evaluated whether insecticide field concentrations exceed legally accepted regulatory threshold levels (RTLs) derived from official EU and US pesticide registration documents and, amongst others, how risks depend on insecticide development over time and stringency of environmental regulation. In addition, an in-depth analysis of the current EU pesticide regulations provided insights into the level of protection and field relevance of highly elaborated environmental regulatory risk assessment schemes (publications III and IV).
The results of this thesis show that insecticide surface water exposure is characterized by infrequent and highly transient concentration peaks of high ecotoxicological relevance. We thus argue in publication I that sampling based on regular intervals is inadequate for the detection of insecticide surface water concentrations and that traditional risk assessment concepts based on all insecticide concentrations including non-detects lead to severely biased results and critical underestimations of risks. Based on these considerations, publication II demonstrates that out of 11,300 measured insecticide concentrations (MICs; i.e., those actually detected and quantified), 52.4% (5,915 cases; 68.5%) exceeded the RTL for either water (RTLSW) or sediments. This indicates a substantial risk for the biological integrity of global water resources as additional analyses on pesticide effects in the field clearly evidence that the regional aquatic biodiversity is reduced by approximately 30% at pesticide concentrations equalling the RTLs. In addition, publication II shows that there is a complete lack of scientific monitoring data for ~90% of global cropland and that both the actual insecticide contamination of surface waters and the resulting ecological risks are most likely even greater due to, for example, inadequate sampling methods employed in the studies and the common occurrence of pesticide mixtures. A linear model analysis identified that RTLSW exceedances depend on the catchment size, sampling regime, sampling date, insecticide substance class, and stringency of countries` environmental regulations, as well as on the interactions of these factors. Importantly, the risks are significantly higher for newer-generation insecticides (i.e., pyrethroids) and are high even in countries with stringent environmental regulations. Regarding the latter, an analysis of the EU pesticide regulations revealed critical deficiencies and the lack of protectiveness and field-relevance for current presumed highly elaborated FOCUS exposure assessment (publication IV) and overall risk assessment schemes (publication III). Based on these findings, essential risk assessment amendments are proposed.
In essence, this thesis analyses the agriculture–environment linkages for pesticides at the global scale and it thereby contributes to a new research frontier in global ecotoxicology. The overall findings substantiate that agricultural insecticides are potential key drivers for the global freshwater biodiversity crisis and that the current regulatory risk assessment approaches for highly toxic anthropogenic chemicals fail to protect the global environment. This thesis provides an integrated view on the environmental side effects of global high-intensity agriculture and alerts that beside worldwide improvements to current pesticide regulations and agricultural pesticide application practices, the fundamental reformation of conventional agricultural systems is urgently needed to meet the twin challenges of providing sufficient food for a growing human population without destroying the ecological integrity of global ecosystems essential to human existence.
Leichte Sprache (LS) ist eine vereinfachte Varietät des Deutschen in der barrierefreie Texte für ein breites Spektrum von Menschen, einschließlich gering literalisierten Personen mit Lernschwierigkeiten, geistigen oder entwicklungsbedingten Behinderungen (IDD) und/oder komplexen Kommunikationsbedürfnissen (CCN), bereitgestellt werden. LS-Autor*innen sind i.d.R. der deutschen Standardsprache mächtig und gehören nicht der genannten Personengruppe an. Unser Ziel ist es, diese zu befähigen, selbst am schriftlichen Diskurs teilzunehmen. Hierfür bedarf es eines speziellen Schreibsystems, dessen linguistische Unterstützung und softwareergonomische Gestaltung den spezifischen Bedürfnissen der Zielgruppe gerecht wird. EasyTalk ist ein System basierend auf computerlinguistischer Verarbeitung natürlicher Sprache (NLP) für assistives Schreiben in einer erweiterten Variante von LS (ELS). Es stellt den Nutzenden ein personalisierbares Vokabular mit individualisierbaren Kommunikationssymbolen zur Verfügung und unterstützt sie entsprechend ihres persönlichen Fähigkeitslevels durch interaktive Benutzerführung beim Schreiben. Intuitive Formulierungen für linguistische Entscheidungen minimieren das erforderliche grammatikalische Wissen für die Erstellung korrekter und kohärenter komplexer Inhalte. Einfache Dialoge kommunizieren mit einem natürlichsprachlichen Paraphrasengenerator, der kontextsensitiv Vorschläge für Satzkomponenten und korrekt flektierte Wortformen bereitstellt. Außerdem regt EasyTalk die Nutzer*innen an, Textelemente hinzuzufügen, welche die Verständlichkeit des Textes für dessen Leserschaft fördern (z.B. Zeit- und Ortsangaben) und die Textkohärenz verbessern (z.B. explizite Diskurskonnektoren). Um das System auf die Bedürfnisse der Zielgruppe zuzuschneiden, folgte die Entwicklung von EasyTalk den Grundsätzen der menschzentrierten Gestaltung (UCD). Entsprechend wurde das System in iterativen Entwicklungszyklen ausgereift, kombiniert mit gezielten Evaluierungen bestimmter Aspekte durch Gruppen von Expert*innen aus den Bereichen CCN, LS und IT sowie L2-Lernende der deutschen Sprache. Eine Fallstudie, in welcher Mitglieder der Zielgruppe das freie Schreiben mit dem System testeten, bestätigte, dass Erwachsene mit geringen Lese-, Schreib- und Computerfähigkeiten mit IDD und/oder CCN mit EasyTalk eigene persönliche Texte in ELS verfassen können. Das positive Feedback aller Tests inspiriert Langzeitstudien mit EasyTalk und die Weiterentwicklung des prototypischen Systems, wie z.B. die Implementierung einer s.g. Schreibwerkstatt.
Bei der Olivenölproduktion fallen innerhalb kürzester Zeit große Mengen Olivenabwasser (OMW) an. OMW kann aufgrund seines hohen Nährstoffgehalts als landwirtschaftlicher Dünger eingesetzt werden. Doch seine öligen und phenolischen Bestandteile schaden dem Boden. Es ist nicht bekannt, inwiefern jahreszeitliche Temperatur- und Niederschlagsschwankungen den Verbleib und die Wirkung der Abwasserkomponenten im Boden längerfristig beeinflussen. Um dem nachzugehen, wurden jeweils 14 L OMW m-2 im Winter, Frühling und Sommer auf verschiedenen Parzellen einer Olivenplantage ausgebracht. Hydrologische Bodeneigenschaften (Wassertropfeneindringzeit, Wasserleitfähigkeit, Kontaktwinkel), physikalisch-chemische Parameter (pH, EC, lösliche Ionen, phenolische Verbindungen, organischer Kohlenstoff) sowie der biologische Abbau (Köderstreifen) wurden erfasst, um den Zustand des Bodens nach der Applikation zu beurteilen. Nach einer Regensaison war die Bodenqualität der im Sommer behandelten Flächen signifikant reduziert. Dies wurde insbesondere anhand einer dreimal niedrigeren biologischen Fraßaktivität, zehnmal höherer Hydrophobizität, sowie einem viermal höheren Gehalt an phenolischen Substanzen im Vergleich zu den Kontrollflächen deutlich. Die Ausbringung im Winter zeigte gegenteilige Effekte, welche das natürliche Regenerierungspotential des Bodens erkennen lassen. Der Einfluss der Frühlingsapplikation lag zwischen den zuvor genannten. Es wurden keinerlei Anzeichen auf Verlagerung von OMW-Bestandteilen in tiefere Bodenschichten beobachtet. Während der feuchten Jahreszeiten gilt die Ausbringung gesetzlich begrenzter Mengen Olivenabwasser somit als vertretbar. Weitere Forschung ist notwendig um den Einfluss von Frühlingsapplikationen zu quantifizieren und weitere Erkenntnisse über die Zusammensetzung und Mobilität organischer OMW-Bestandteile im Boden zu gewinnen.
The use of agricultural plastic covers has become common practice for its agronomic benefits such as improving yields and crop quality, managing harvest times better, and increasing pesticide and water use efficiency. However, plastic covers are suspected of partially breaking down into smaller debris and thereby contributing to soil pollution with microplastics. A better understanding of the sources and fate of plastic debris in terrestrial systems has so far been hindered by the lack of adequate analytical techniques for the mass-based and polymer-selective quantification of plastic debris in soil. The aim of this dissertation was thus to assess, develop, and validate thermoanalytical methods for the mass-based quantification of relevant polymers in and around agricultural fields previously covered with fleeces, perforated foils, and plastic mulches. Thermogravimetry/mass spectrometry (TGA/MS) enabled direct plastic analyses of 50 mg of soil without any sample preparation. With polyethylene terephthalate (PET) as a preliminary model, the method limit of detection (LOD) was 0.7 g kg−1. But the missing chromatographic separation complicated the quantification of polymer mixtures. Therefore, a pyrolysis-gas chromatography/mass spectrometry (Py-GC/MS) method was developed that additionally exploited the selective solubility of polymers in specific solvents prior to analysis. By dissolving polyethylene (PE), polypropylene (PP), and polystyrene (PS) in a mixture of 1,2,4-trichlorobenzene and p-xylene after density separation, up to 50 g soil became amenable to routine plastic analysis. Method LODs were 0.7–3.3 mg kg−1, and the recovery of 20 mg kg−1 PE, PP, and PS from a reference loamy sand was 86–105%. In the reference silty clay, however, poor PS recoveries, potentially induced by the additional separation step, suggested a qualitative evaluation of PS. Yet, the new solvent-based Py-GC/MS method enabled a first exploratory screening of plastic-covered soil. It revealed PE, PP, and PS contents above LOD in six of eight fields (6% of all samples). In three fields, PE levels of 3–35 mg kg−1 were associated with the use of 40 μm thin perforated foils. By contrast, 50 μm PE films were not shown to induce plastic levels above LOD. PP and PS contents of 5–19 mg kg−1 were restricted to single observations in four fields and potentially originated from littering. The results suggest that the short-term use of thicker and more durable plastic covers should be preferred to limit plastic emissions and accumulation in soil. By providing mass-based information on the distribution of the three most common plastics in agricultural soil, this work may facilitate comparisons with modeling and effect data and thus contribute to a better risk assessment and regulation of plastics. However, the fate of plastic debris in the terrestrial environment remains incompletely understood and needs to be scrutinized in future, more systematic research. This should include the study of aging processes, the interaction of plastics with other organic and inorganic compounds, and the environmental impact of biodegradable plastics and nanoplastics.
Agricultural plastic covers made from polyethylene (PE) and polypropylene (PP) provide increased yields and an improved crop quality. However, such covers are suspected of partially breaking down into smaller debris and thereby contributing to soil pollution with microplastics. To scrutinize this, we randomly sampled 240 topsoil cores (0–5 cm) from eight fields which were covered with fleeces, perforated foils, and plastic mulches for less than 2 years. Samples from the field periphery (50 m perimeter) served as a reference. Visual plastic debris > 2 mm was analyzed by Fourier transform infrared spectroscopy. Smaller, soil-associated plastic debris was dispersed from 50 g of fine soil (≤ 2 mm) using sodium hexametaphosphate solution and density-separated with saturated NaCl solution. The collected PE, PP, and polystyrene (PS) debris was selectively dissolved in a mixture of 1,2,4-trichlorobenzene and p-xylene at 150 °C and quantified by pyrolysis–gas chromatography–mass spectrometry (Py-GC/MS). We counted six PE and PS fragments > 2 mm in two out of eight fields. By contrast, Py-GC/MS detected PE, PP, and PS contents in the fine soil of six fields (6 % of all samples). In three fields, PE levels of 3–35 mg kg−1 were potentially associated with the use of thinner and less durable perforated foils (40 µm thickness). This was slightly more pronounced at field edges where the plastic covers are turned and weighed down. By contrast, 50 µm thick PE films were not shown to emit any plastic debris. PP contents of 5–10 mg kg−1 were restricted to single observations in the field centers of three sites. At one site, we found expanded PS particles > 2 mm that concurred with elevated PS levels (8–19 mg kg−1) in the fine soil. Both PP and PS were distributed indistinctly across sites so that their source remained unresolved. In addition, the extent to which plastic contents of up to 7 mg kg−1 in the field periphery of some sites were attributed to wind drift from the covered fields or from external sources needs to be investigated in future studies. Our results suggest that the short-term use of thicker and more durable plastic covers should be preferred over thinner or perforated films to limit plastic emissions and accumulation in soil.
Background. Agricultural plastic mulches offer great benefits such as higher yields and lower pesticide use. Yet, plastic mulches may disintegrate over time and fragment into smaller debris. Such plastic debris is expected to remain in the field after removal of the plastic mulch and thus contributes to soil contamination with plastics.
Method. To investigate this, we collected soil samples at 0–10 cm and 10–40 cm depth from three fields covered with black mulch film for three consecutive years. Three fields without any reported plastic use served as control. Visual plastic debris > 1 cm (macroplastics) was collected from the soil surface. Mesoplastics between 2 mm and 1 cm were density separated from the sampled soil using saturated NaCl solution and analyzed by Fourier-transform infrared spectroscopy. Debris ≤ 2 mm (microplastics) was dispersed from 50 g soil using sodium hexametaphosphate solution followed by the aforementioned density separation. The separated polyethylene (PE), polypropylene (PP), and polystyrene (PS) were quantified via solvent-based pyrolysis–gas chromatography/mass spectrometry (Py–GC/MS).
Results. With 89–206 fragments ha−1, the majority of macroplastics were located in fields previously covered with mulch films. 80% of the collected specimen were identified as black PE film. The number of mesoplastics in plastic-mulched soil was 2.3 particles kg−1, while only 1.0 particles kg−1 were found in the reference fields. Py–GC/MS revealed microplastic levels of up to 13 mg kg−1. The PE content was significantly higher in plastic-mulched fields than in reference fields.
Discussion. Although the identified plastic levels are lower than those reported in comparable studies, our results still suggest that plastic mulching functions as a source of plastic debris in agricultural systems. Due to its severely restricted degradability, these plastics are likely to accumulate in soil in the long term and further fragment into smaller and smaller debris.
The Apple ][ computer was one of the frst three completely assembled systems on the market. It was sold several million times from april 1977 to 1993. This 8 bit home computer was developed by Steve Wozniak and Steve Jobs. They paved the way for the Apple Macintosh computer and the nowadays well known brand Apple with its products.
This thesis describes the implementation of a software emulator for the complete Apple ][ computer system on a single Atmel AVR microcontroller unit (MCU). The greatest challenge consists of the fact that the MCU has only a slightly higher clock speed as the Apple ][. This requires an efcient emulation of the CPU and the memory management, which will be covered later on along with the runtime environment controlling the emulator. Furthermore the hardware implementation into a handheld prototype will be shown.
In summary this thesis presents a successful development of a portable Apple ][ emulator covering all aspects from software design over hardware design ending up in a prototype.
Graphen sind eine gute Wahl um strukturierte Daten zu repräsentieren. TGraphen (typisierte, attributierte, geordnete und gerichtete Graphen) sind eine sehr generische Graphenart, die in vielen Bereichen verwendet werden können. Das Java Graphenlabor (JGraLab) bietet eine effiziente Implementierung von TGraphen mit all ihren Eigenschaften. Zusätzlich stellt es, unter anderem, die Anfragesprache GReQL2 zur Verfügung, die dazu verwendet werden kann, Daten aus einem Graphen zu extrahieren. Es verfügt jedoch nicht über eine generische Bibliothek von gängigen Graphalgorithmen. Diese Studienarbeit ergänzt JGraLab durch eine generische Algorithmenbibliothek namens Algolib, die eine generische und erweiterbare Implementierung einiger wichtiger gängiger Graphalgorithmen enthält. Das Hauptaugenmerk dieser Arbeit liegt auf der Generizität von Algolib, ihrer Erweiterbarkeit und der Methoden der Softwaretechnik die benutzt wurden um beides zu erreichen. Algolib ist auf zwei Weisen erweiterbar. Bereits enthaltene Algorithmen können erweitert werden um speziellere Probleme zu lösen und weitere Algorithmen können auf einfache Weise der Bibliothek hinzugefügt werden.
The belief in a just world in face of injustice: victim, observer, and perpetrator perspectives
(2021)
Jeden Tag geschieht uns, unseren Nachbarn oder Menschen auf der ganzen Welt Ungerechtigkeit. Doch der Glaube an eine gerechte Welt (GGW) hilft uns, mit dieser Ungerechtigkeit umzugehen, und motiviert uns, uns gerecht zu verhalten. Studien haben gezeigt, dass diese Funktionen, die der GGW erfüllt, für die Aufrechterhaltung der psychischen Gesundheit bedeutend sind. Die Bedingungen, unter denen der GGW funktioniert und wann Menschen diesen Glauben aufgeben, sind jedoch nicht gut untersucht. In der vorliegenden Dissertation wird untersucht, wann der GGW erschüttert werden kann, welche Rolle die Außenwelt und andere interne Ressourcen angesichts von Ungerechtigkeit spielen und welche Rolle der GGW bei der Vorhersage korrupten Verhaltens spielt. Es wurden drei Studien durchgeführt, die jeweils einer Seite der Ungerechtigkeit entsprechen: einem Opfer, einem Beobachter und einem Täter.
Studie 1 untersuchte die Auswirkungen einer kriminellen Viktimisierung auf den GGW und die schützende Rolle der Gerechtigkeitsvorstellungen im Strafrechtsprozess. Diese Studie zeigte, dass Opfer sehr schwerer Straftaten, wie häusliche Gewalt und Menschenhandel, einen niedrigeren persönlichen GGW aufwiesen als Nicht-Opfer und Opfer weniger schwerer Straftaten, und dass eine höhere Wahrnehmung der informationelle Gerechtigkeit die Auswirkungen der Viktimisierung auf den persönlichen GGW verringerte. Studie 2 hatte zum Ziel die Veränderungen des GGW nach der Beobachtung schwerer Ungerechtigkeit zu untersuchen. Diese Studie zeigte, dass der GGW der jugendlichen Teilnehmer nach der Beobachtung von Amokläufen an anderen Schulen anstieg. Außerdem beeinflussten Lebenszufriedenheit und wahrgenommene soziale Unterstützung die Veränderung der GGW. Studie 3 untersuchte die Beziehungen zwischen GGW und korruptem Verhalten. Eine Querschnittsstudie zeigte, dass der persönliche GGW das Korruptionsverhalten vorhersagen kann.
Die Ergebnisse der drei Studien haben gezeigt, dass GGW nicht isoliert betrachtet werden kann. Eine externe Welt und interne Ressourcen können die Bedrohung durch Ungerechtigkeit auf dem GGW reduzieren. Der GGW spielt eine wichtige Rolle bei der Vorhersage von ungerechtem Verhalten, weshalb die Behörden bestrebt sein sollten, den GGW ihrer Bürger zu erhalten.
This thesis focuses on approximate inference in assumption-based argumentation frameworks. Argumentation provides a significant idea in the computerization of theoretical and practical reasoning in AI. And it has a close connection with AI, engaging in arguments to perform scientific reasoning. The fundamental approach in this field is abstract argumentation frameworks developed by Dung. Assumption-based argumentation can be regarded as an instance of abstract argumentation with structured arguments. When facing a large scale of data, a challenge of reasoning in assumption-based argumentation is how to construct arguments and resolve attacks over a given claim with minimal cost of computation and acceptable accuracy at the same time. This thesis proposes and investigates approximate methods that randomly select and construct samples of frameworks based on graphical dispute derivations to solve this problem. The presented approach aims to improve reasoning performance and get an acceptable trade-off between computational time and accuracy. The evaluation shows that for reasoning in assumption-based argumentation, in general, the running time is reduced with the cost of slightly low accuracy by randomly sampling and constructing inference rules for potential arguments over a query.
Geographisches Cluster-basiertes Routing ist ein aktueller Ansatz, wenn es um das Entwicklen von effizienten Routingalgorithmen für drahtlose ad-hoc Netzwerke geht. Es gibt bereits eine Anzahl an Algorithmen, die Nachrichten nur auf Basis von Positionsinformationen durch ein drahtloses ad-hoc Netzwerk routen können. Darunter befinden sich sowohl Algorithmen, die auf das klassische Beaconing setzen, als auch Algorithmen, die beaconlos arbeiten (keine Informationen über die Umgebung werden benötigt, außer der eigenen Position und der Position des Ziels). Geographisches Routing mit Auslieferungsgarantie kann auch auf Overlay-Graphen durchgeführt werden. Bisher werden die dafür benötigten Overlay-Graphen nicht reaktiv konstruiert.
In dieser Arbeit wird ein reaktiver Algorithmus, der Beaconless Cluster Based Planarization Algorithmus (BCBP), für die Konstruktion eines planaren Overlay-Graphen vorgestellt, der die benötigte Anzahl an Nachrichten für die Konstruktion eines planaren Overlay-Graphen, und demzufolge auch Cluster-basiertes geographishes Routing, deutlich reduziert. Basierend auf einem Algorithmus für Cluster-basierte Planarisierung, konstruiert er beaconlos einen planaren Overlay-Graphen in einem unit disk graph (UDG). Ein UDG ist ein Modell für ein drahtloses Netzwerk, bei dem alle Teilnehmer den gleichen Senderadius haben.
Die Evaluierung des Algorithmus zeigt, dass er wesentlich effizienter ist als die Baecon-basierte Variante. Ein weiteres Ergebnis dieser Arbeit ist ein weiterer beaconloser Algorithmus (Beaconless LLRAP (BLLRAP)), für\r\nden zwar die Planarität, aber nicht die Konnektivität nachgewiesen werden konnte.
Statistical eco(-toxico)logy
(2017)
Freshwaters are of immense importance for human well-being.
Nevertheless, they are currently facing unprecedented levels of threat from habitat loss and degradation, overexploitation, invasive species and
pollution.
To prevent risks to aquatic ecosystems, chemical substances, like agricultural pesticides, have to pass environmental risk assessment (ERA) before entering the market.
Concurrently, large-scale environmental monitoring is used for surveillance of biological and chemical conditions in freshwaters.
This thesis examines statistical methods currently used in ERA.
Moreover, it presents a national-scale compilation of chemical monitoring data, an analysis of drivers and dynamics of chemical pollution in streams and, provides a large-scale risk assessment by combination with results from ERA.
Additionally, software tools have been developed to integrate different datasets used in ERA.
The thesis starts with a brief introduction to ERA and environmental monitoring and gives an overview of the objectives of the thesis.
Chapter 2 addresses experimental setups and their statistical analyses using simulations.
The results show that current designs exhibit unacceptably low statistical power, that statistical methods chosen to fit the type of data provide higher power and that statistical practices in ERA need to be revised.
In chapter 3 we compiled all available pesticide monitoring data from Germany.
Hereby, we focused on small streams, similar to those considered in ERA and used threshold concentrations derived during ERA for a large-scale assessment of threats to freshwaters from pesticides.
This compilation resulted in the most comprehensive dataset on pesticide exposure currently available for Germany.
Using state-of-the-art statistical techniques, that explicitly take the limits of quantification into account, we demonstrate that 25% of small streams are at threat from pesticides.
In particular neonicotinoid pesticides are responsible for these threats.
These are associated with agricultural intensity and can be detected even at low levels of agricultural use.
Moreover, our results indicated that current monitoring underestimates pesticide risks, because of a sampling decoupled from precipitation events.
Additionally, we provide a first large-scale study of annual pesticide exposure dynamics.
Chapters 4 and 5 describe software solutions to simplify and accelerate the integration of data from ERA, environmental monitoring and ecotoxicology that is indispensable for the development of landscape-level risk assessment.
Overall, this thesis contributes to the emerging discipline of statistical ecotoxicology and shows that pesticides pose a large-scale threat to small streams.
Environmental monitoring can provide a post-authorisation feedback to ERA.
However, to protect freshwater ecosystems ERA and environmental monitoring need to be further refined and we provide software solutions to utilise existing data for this purpose.
The output of eye tracking Web usability studies can be visualized to the analysts as screenshots of the Web pages with their gaze data. However, the screenshot visualizations are found to be corrupted whenever there are recorded fixations on fixed Web page elements on different scroll positions. The gaze data are not gathered on their fixated fixed elements; rather they are scattered on their recorded scroll positions. This problem has raised our attention to find an approach to link gaze data to their intended fixed elements and gather them in one position on the screenshot. The approach builds upon the concept of creating the screenshot during the recording session, where images of the viewport are captured on visited scroll positions and lastly stitched into one Web page screenshot. Additionally, the fixed elements in the Web page are identified and linked to their fixations. For the evaluation, we compared the interpretation of our enhanced screenshot against the video visualization, which overcomes the problem. The results revealed that both visualizations equally deliver accurate interpretations. However, interpreting the visualizations of eye tracking Web usability studies using the enhanced screenshots outperforms the video visualizations in terms of speed and it requires less temporal demands from the interpreters.
The global problematic issue of the olive oil industry is in its generation of large amounts of olive mill wastewater (OMW). The direct discharge of OMW to the soil is very common which presents environmental problems for olive oil producing countries. Both, positive as well as negative effects on soil have been found in earlier studies. Therefore, the current study hypothesized that whether beneficial effects or negative effects dominate depends on the prevailing conditions before and after OMW discharge to soil. As such, a better understanding of the OMW-soil interaction mechanisms becomes essential for sustainable safe disposal of OMW on soil and sustainable soil quality.
A field experiment was carried out in an olive orchard in Palestine, over a period of 24 months, in which the OMW was applied to the soil as a single application of 14 L m-2 under four different environmental conditions: in winter (WI), spring (SP), and summer with and without irrigation (SUmoist and SUdry). The current study investigated the effects of seasonal conditions on the olive mill wastewater (OMW) soil interaction in the short-term and the long-term. The degree and persistence of soil salinization, acidification, accumulation of phenolic compounds and soil water repellency were investigated as a function of soil depth and time elapsed after the OMW application. Moreover, the OMW impacts on soil organic matter SOM quality and quantity, total organic carbon (SOC), water-extractable soil organic carbon (DOC), as well as specific ultraviolet absorbance analysis (SUVA254) were also investigated for each seasonal application in order to assess the degree of OMW-OM decomposition or accumulation in soil, and therefore, the persisting effects of OMW disposal to soil.
The results of the current study demonstrate that the degree and persistence of relevant effects due to OMW application on soil varied significantly between the different seasonal OMW applications both in the short-term and the long-term. The negative effects of the potentially hazardous OMW residuals in the soil were highly dependent on the dominant transport mechanisms and transformation mechanisms, triggered by the ambient soil moisture and temperature which either intensified or diminished negative effects of OMW in the soil during and after the application season. The negative effects of OMW disposal to the soil decreased by increasing the retention time of OMW in soil under conditions favoring biological activity. The moderate conditions of soil moisture and temperature allowed for a considerable amount of applied OMW to be biologically degraded, while the prolonged application time under dry conditions and high temperature resulted in a less degradable organic fraction of the OMW, causing the OMW constituents to accumulate and polymerize without being degraded. Further, the rainfall during winter season diminished negative effects of OMW in the soil; therefore, the risk of groundwater contamination by non-degraded constituents of OMW can be highly probable during the winter season.
Agricultural pesticides, especially insecticides, are an integral part of modern farming. However, these may often leave their target ecosystems and cause adverse effects in non- target, especially freshwater ecosystems, leading to their deterioration. In this thesis, the focus will be on Insect Growth Regulators (IGRs) that can in many ways cause disruption of the endocrine system of invertebrates. Freshwater invertebrates play important ecological, economic and medical roles, and disruption of their endocrine systems may be crucial, considering the important role hormones play in the developmental and reproductive processes in organisms. Although Endocrine Disruption Chemicals (EDCs) can affect moulting, behaviour, morphology, sexual maturity, time to first brood, egg development time, brood size (fecundity), and sex determination in invertebrates, there is currently no agreement upon how to characterize and assess endocrine disruption (ED). Current traditional ecotoxicity tests for Ecological Risk Assessment (ERA) show limitations on generating data at the population level that may be relevant for the assessment of EDCs, which effects may be sublethal, latent and persist for several generations of species (transgenerational).
It is therefore the primary objective of this thesis to use a test method to investigate adverse effects of EDCs on endpoints concerning development and reproduction in freshwater invertebrates. The full life-cycle test over two generations that includes all sensitive life stages of C. riparius (a sexual reproductive organism) allows an assessment of its reproduction and should be suitable for the investigation of long-term toxicity of EDCs in freshwater invertebrates. C. riparius is appropriate for this purpose because of its short life cycle that enables the assessment of functional endpoints of the organism over several generations. Moreover, the chironomid life cycle consists of a complete metamorphosis controlled by a well-known endocrine mechanism and the endocrine system of insects has been most investigated in great detail among invertebrates. Hence, the full life-cycle test with C. riparius provides an approach to assess functional endpoints (e.g. reproduction, sex ratio) that are population-relevant as a useful amendment to the ERA of EDCs. In the laboratory, C. riparius was exposed to environmentally-relevant concentrations of the selected IGRs in either spiked water or spiked sediment scenario over two subsequent generations.
The results reported in this thesis revealed significant effects of the IGRs on the development and the reproduction of C. riparius with the second (F1) generation showing greater sensitivity. These findings indicated for the first time the suitability of multigenerational testing for various groups of EDCs and strongly suggested considering the full life-cycle of C. riparius as an appropriate test method for a better assessment of EDCs in the freshwater environment. In conclusion, this thesis helps to detect additional information that can be extrapolated at population level and, thus, might contribute to better protection of freshwater ecosystems against the risks of Endocrine Disrupting Chemicals (EDCs.) It may furthermore contribute to changes in the ERA process that are necessary for a real implementation of the new European chemical legislation, REACH (Registration, Evaluation Authorization and Restriction of Chemicals). Finally, significant interactions between temperature, chemical exposure and generation were reported for the first time and, may help predict impacts that may occur in the future, in the field, under predicted climate change scenarios.
Ästuare sind charakterisiert durch einen longitudinalen Salinitätsgradienten. Der Salzgehalt ist einer der wichtigsten Umweltparameter, der die Verteilung der Arten bestimmt. Heute werden Grenzen von Salinitätszonen vor allem mit Hilfe des Venedig-Systems und durch eine von Bulger et al. (1993) entwickelte Methode festgelegt. Beide Systeme wurden in homoio¬halinen Ge¬wäs¬sern entwickelt und die Einteilung in Zonen erfolgt anhand der Verteilung von Arten in Abhängigkeit vom mittleren Salzgehalt. Sie werden jedoch auch regelmäßig in poikilohalinen Systemen angewendet. Ich habe, basierend auf Langzeitdaten von Salinität und Makrozoobenthos (MZB), untersucht, ob die beiden Methoden im poikilohalinen Elbeästuar (Deutschland) anwendbar sind. Meine Ergebnisse zeigten, dass die Variabilität der Salinität und nicht die mittlere Salinität für die Verteilung der Arten in den mittleren Bereichen des Ästuars bestimmend ist. Folglich ist die Anwendung von keinem der beiden getesteten Verfahren in poikilohalinen Gewässern sinnvoll. Ich empfehle die Anwendung von Clusteranalyseverfahren zur Festlegung signifikant unterschiedlicher Salinitätszonen in poikilohalinen Systemen.
In vielen Ästuaren bildet sich eine Zone maximaler Trübung (ZmT), in der suspendiertes Material durch Zirkulationsprozesse akkumuliert. Im Elbeästuar ist diese Zone deckungsgleich mit der Zone höchster Salinitätsvariabilität und weist zudem den höchsten organischen Anteil im Sediment sowie hohe Sedimentationsraten und organische Belastungen auf. Die Stress-Gradienten-Hypothese besagt, dass unter starkem äußerem Druck wie diesem, Populationen oft unter der Kapazitätsgrenze bleiben und Konkurrenz nur von geringer Bedeutung ist. Ich habe mittels stabiler Isotopenanalyse getestet, ob Nahrungskonkurrenz in der ZmT des Elbeästuars für die häufigsten Makroinvertebraten relevant ist. Innerhalb eines Ernährungstyps zeigten die artspezifischen Isotopennischen keine oder nur eine geringe Überlappung. Folglich ist Konkurrenz um Nahrung in der ZmT nur von untergeordneter Bedeutung. Ursachen für getrennte Isotopennischen waren vor allem bedingt durch Unterschiede in Habitat (Korngröße) und Migrationsverhalten der Makroinvertebraten.
Ästuare gehören heute auf Grund anthropogener Einflüsse zu den am stärksten gefährdeten Gewässern. Das Ausmaß der Veränderungen in deren Artengemeinschaften während des letzten Jahrhunderts ist jedoch weitgehend unbekannt. Ich habe anhand historischer und aktueller Daten (1889, 1985, 1986, 2006) taxonomische und funktionale Veränderungen des MZB im Elbeästuar untersucht. Taxonomische Unterschiede zwischen den Untersuchungsjahren waren vor allem auf das Verschwinden von Arten und Auftreten anderer Arten (turnover) zurückzuführen. Funktionale Unterschiede entstanden hauptsächlich dadurch, dass Arten mit bestimmten Traits (Morphologie, Reproduktion, Entwicklung, Ernährung, Habitat) verschwanden, ohne dass diese Arten von anderen Arten mit gleichen Traits ersetzt wurden (nestedness). Artenzahl und funktioneller Reichtum waren 1985 und 1986 am niedrigsten. In den Jahren 1889 und 2006 waren sie am höchsten und nahezu gleich. Dies impliziert, dass die vom MZB im Ästuar von 1889 bereitgestellten Ökosystemfunktionen im Jahr 2006, jedoch unter veränderter taxonomischer Zusammensetzung, wieder vorhanden waren. Meine Ergebnisse verdeutlichen die hohe Relevanz von funktionaler Redundanz und funktionalem Reichtum für die Resilienz und Stabilität von Ökosystemen.
Coat color and pattern are a distinguished feature in mammalian carnivores, shaped by climatic cycles and habitat type. It can be expressed in various ways, such as gradients, polymorphisms, and rare color variants. Although natural selection explains much of the phenotypic variation found in the wild, genetic drift and heterozygote deficiency, as prominent in small and fragmented populations, may also affect phenotypic variability through the fixation of recessive alleles. The aim of this study was to test whether rare color variants in the wild could relate to a deficiency of heterozygotes, resulting from habitat fragmentation and small population size. We present an overview of all rare color variants in the order Carnivora, and compiled demographic and genetic data of the populations where they did and did not occur, to test for significant correlations. We also tested how phylogeny and body weight influenced the presence of color variants with phylogenetic generalized linear mixed models (PGLMMs). We found 40 color-variable species and 59 rare color variants. In 17 variable phenotypic populations for which genetic diversity was available, the average AR was 4.18, HO = 0.59, and HE= 0.66, and FIS= 0.086. We found that variable populations displayed a significant reduction in heterozygosity and allelic richness compared to non-variable populations across species. We also found a significant negative correlation between population size and inbreeding coefficients. Therefore, it is possible that small effective size had phenotypic consequences on the extant populations. The high frequency of the rare color variants (averaging 20%) also implies that genetic drift is locally overruling natural selection in small effective populations. As such, rare color variants could be added to the list of phenotypic consequences of inbreeding in the wild.
Current political issues are often reflected in social media discussions, gathering politicians and voters on common platforms. As these can affect the public perception of politics, the inner dynamics and backgrounds of such debates are of great scientific interest. This thesis takes user generated messages from an up-to-date dataset of considerable relevance as Time Series, and applies a topic-based analysis of inspiration and agenda setting to it. The Institute for Web Science and Technologies of the University Koblenz-Landau has collected Twitter data generated beforehand by candidates of the European Parliament Election 2019. This work processes and analyzes the dataset for various properties, while focusing on the influence of politicians and media on online debates. An algorithm to cluster tweets into topical threads is introduced. Subsequently, Sequential Association Rules are mined, yielding wide array of potential influence relations between both actors and topics. The elaborated methodology can be configured with different parameters and is extensible in functionality and scope of application.
In Silico simulation of biological systems is an important sub area of computational biology (system biology), and becomes more and more an inherent part for research. Therefore, different kinds of software tools are required. At present, a multitude of tools for several areas exists, but the problem is that most of the tools are essentially application specific and cannot be combined. For instance, a software tool for the simulation of biochemical processes is not able to interact with tools for the morphology simulation and vice versa. In order to obtain realistic results with computer-aided simulations it is important to regard the biological system in its entirety. The objective is to develop a software framework, which provides an interface structure to combine existing simulation tools, and to offer an interaction between all affiliated systems. Consequently, it is possible to re-use existing models and simulation programs. Additionally, dependencies between those can be defined. The system is designed to interoperate as an extendable architecture for various tools. The thesis shows the usability and applicability of the software and discusses potential improvements.