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The project focuses on the efficiency of combined technologies to reduce the release of micropollutants and bacteria into surface waters via sewage treatment plants of different size and via stormwater overflow basins of different types. As a model river in a highly populated catchment area, the river Schussen and, as a control, the river Argen, two tributaries of Lake Constance, Southern Germany, are under investigation in this project. The efficiency of the different cleaning technologies is monitored by a wide range of exposure and effect analyses including chemical and microbiological techniques as well as effect studies ranging from molecules to communities.
The large conductance voltage- and Ca2+-activated potassium (BK) channel has been suggested to play an important role in the signal transduction process of cochlear inner hair cells. BK channels have been shown to be composed of the pore-forming alpha-subunit coexpressed with the auxiliary beta-1-subunit. Analyzing the hearing function and cochlear phenotype of BK channel alpha-(BKalpha–/–) and beta-1-subunit (BKbeta-1–/–) knockout mice, we demonstrate normal hearing function and cochlear structure of BKbeta-1–/– mice. During the first 4 postnatal weeks also, BKalpha–/– mice most surprisingly did not show any obvious hearing deficits. High-frequency hearing loss developed in BKalpha–/– mice only from ca. 8 weeks postnatally onward and was accompanied by a lack of distortion product otoacoustic emissions, suggesting outer hair cell (OHC) dysfunction. Hearing loss was linked to a loss of the KCNQ4 potassium channel in membranes of OHCs in the basal and midbasal cochlear turn, preceding hair cell degeneration and leading to a similar phenotype as elicited by pharmacologic blockade of KCNQ4 channels. Although the actual link between BK gene deletion, loss of KCNQ4 in OHCs, and OHC degeneration requires further investigation, data already suggest human BK-coding slo1 gene mutation as a susceptibility factor for progressive deafness, similar to KCNQ4 potassium channel mutations. © 2004, The National Academy of Sciences. Freely available online through the PNAS open access option.
Men and women differ substantially regarding height, weight, and body fat. Interestingly, previous work detecting genetic effects for waist-to-hip ratio, to assess body fat distribution, has found that many of these showed sex-differences. However, systematic searches for sex-differences in genetic effects have not yet been conducted. Therefore, we undertook a genome-wide search for sexually dimorphic genetic effects for anthropometric traits including 133,723 individuals in a large meta-analysis and followed promising variants in further 137,052 individuals, including a total of 94 studies. We identified seven loci with significant sex-difference including four previously established (near GRB14/COBLL1, LYPLAL1/SLC30A10, VEGFA, ADAMTS9) and three novel anthropometric trait loci (near MAP3K1, HSD17B4, PPARG), all of which were significant in women, but not in men. Of interest is that sex-difference was only observed for waist phenotypes, but not for height or body-mass-index. We found no evidence for sex-differences with opposite effect direction for men and women. The PPARG locus is of specific interest due to its link to diabetes genetics and therapy. Our findings demonstrate the importance of investigating sex differences, which may lead to a better understanding of disease mechanisms with a potential relevance to treatment options.
The transport of air masses originating from the Asian monsoon anticyclone into the extratropical upper troposphere and lower stratosphere (Ex-UTLS) above potential temperatures Θ = 380K was identified during the HALO aircraft mission TACTS in August and September 2012. In-situ measurements of CO, O3 and N2O during TACTS Flight 2 on the 30 August 2012 show the irreversible mixing of aged with younger (originating from the troposphere) stratospheric air masses within the Ex-UTLS. Backward trajectories calculated with the trajetory module of the CLaMS model indicate that these tropospherically affected air masses originate from the Asian monsoon anticyclone. From the monsoon circulation region these air masses are quasi-isentropically transported above Θ = 380 K into the Ex-UTLS where they subsequently mix with stratospheric air masses. The overall trace gas distribution measured during TACTS shows that this transport pathway has a significant impact on the Ex-UTLS during boreal summer and autumn. This leads to an intensification of the tropospheric influence on the Ex-UTLS with ∆Θ > 30 K (relative to the tropopause) within three weeks during the TACTS mission. In the same time period a weakening of the tropospheric influence on the lowermost stratosphere (LMS) is determined. Therefore, the study shows that the transport of air masses originating from the Asian summer monsoon region within the lower stratosphere above Θ = 380K is of major importance for the change of the chemical composition of the Ex-UTLS from summer to autumn.
The transport of air masses originating from the Asian monsoon anticyclone into the extratropical upper troposphere and lower stratosphere (Ex-UTLS) above potential temperatures Θ = 380 K was identified during the HALO aircraft mission TACTS in August and September 2012. In situ measurements of CO, O3 and N2O during TACTS flight 2 on 30 August 2012 show the irreversible mixing of aged stratospheric air masses with younger (recently transported from the troposphere) ones within the Ex-UTLS. Backward trajectories calculated with the trajectory module of CLaMS indicate that these tropospherically affected air masses originate from the Asian monsoon anticyclone. These air masses are subsequently transported above potential temperatures Θ = 380 K from the monsoon circulation region into the Ex-UTLS, where they subsequently mix with stratospheric air masses. The overall trace gas distribution measured during TACTS shows that this transport pathway had affected the chemical composition of the Ex-UTLS during boreal summer and autumn 2012. This leads to an intensification of the tropospheric influence on the extratropical lower stratosphere with PV > 8 pvu within 3 weeks during the TACTS mission. During the same time period a weakening of the tropospheric influence on the lowermost stratosphere (LMS) is determined. The study shows that the transport of air masses originating from the Asian summer monsoon region within the lower stratosphere affects the change in the chemical composition of the Ex-UTLS over Europe and thus contributes to the flushing of the LMS during summer 2012.
Background: Data on the economic impact of Lyme borreliosis (LB) on European health care systems is scarce. This project focused on the epidemiology and costs for laboratory testing in LB patients in Germany.
Materials and Methods: We performed a sentinel analysis of epidemiological and medicoeconomic data for 2007 and 2008. Data was provided by a German statutory health insurance (DAK) company covering approx. 6.04 million members. In addition, the quality of diagnostic testing for LB in Germany was studied.
Results: In 2007 and 2008, the incident diagnosis LB was coded on average for 15,742 out of 6.04 million insured members (0.26%). 20,986 EIAs and 12,558 immunoblots were ordered annually for these patients. For all insured members in the outpatient sector, a total of 174,820 EIAs and 52,280 immunoblots were reimbursed annually to health care providers (cost: 2,600,850€). For Germany, the overall expected cost is estimated at 51,215,105€. However, proficiency testing data questioned test quality and standardization of diagnostic assays used.
Conclusion: Findings from this study suggest ongoing issues related to care for LB and may help to improve future LB disease management.
Die Regime gegen Massenvernichtungswaffen erfüllen wichtige sicherheitspolitische Funktionen und tragen dazu bei, Terrorismus mit diesen Waffen zu verhindern. Eine regimetheoretische Analyse zeigt für alle drei Regime stabilisierende und destabilisierende Tendenzen sowie eine Spaltung zwischen Nord und Süd. Im nuklearen Nichtverbreitungsregime wirkt die Diskriminierung zwischen Kernwaffen- und Nichtkernwaffenstaaten in Verbindung mit der mangelhaften Umsetzung der Abrüstungsverpfl ichtung destabilisierend. Das Biowaffen-Regime zeigt eine neue Dynamik zum Thema Biosicherheit, aber auch anhaltende Konfl ikte um Technologieaustausch und Verifikation. Obwohl das CWÜ derzeit am stabilsten erscheint, gilt es, drohende Probleme z.B. im Bereich Verifi kation und Abrüstung abzuwenden. Wenn die Regime ihrer Aufgabe effektiv nachkommen sollen, müssen die strukturellen Defizite bearbeitet sowie jeweils die Abrüstungs-, Nichtverbreitungs- und Kooperationsbestimmungen gleichermaßen vollständig und ausgewogen umgesetzt werden.
Rüstungskontrolle entwickelte sich während des Ost-West-Konflikts zu einem wichtigen Element für die Stabilisierung des internationalen Systems und zur Verhütung eines Atomkriegs, wobei jedoch die Rahmenbedingungen der bipolaren Blockkonfrontation immer wieder einschränkend wirkten. Das Ende des Kalten Krieges brachte zunächst eine Welle des Optimismus und der Hoffnung mit sich, dass nun größere Fortschritte in der Rüstungskontrolle möglich sein sollten. Und in der Tat stellten sich in der ersten Hälfte der 1990er Jahre Erfolge ein: Unter anderem wurden die Zahl der atomaren Sprengköpfe reduziert, Chemiewaffen und Antipersonenminen verboten, der nukleare Umfassende Teststoppvertrag (CTBT) abgeschlossen und der Vertrag über konventionelle Streitkräfte in Europa (KSE) an die neuen Bedingungen angepasst. Ab Mitte der 1990er Jahre setzte jedoch eine Stagnation in der Rüstungskontrolle ein, die sich spätestens mit der Amtsübernahme der Bush-Administration zu einer handfesten Krise auswuchs. Von manchen Beobachter/innen und Praktiker/innen wurde gar das Ende der Rüstungskontrolle – zumindest in ihrer bisher bekannten Form – postuliert oder diagnostiziert.
Zwischen Macht und Gerechtigkeit : Zustand und Perspektiven des nuklearen Nichtverbreitungsregimes
(2008)
Das nukleare Nichtverbreitungsregime weist eine erstaunliche Erfolgsstory auf. Die Zahl der Staaten, die kernwaffenorientierte Aktivitäten in verschiedenen Stadien des Fortschritts aufgegeben haben, ist weitaus größer als die der Kernwaffenstaaten. Auf dem Höhepunkt seines Erfolgs droht dem Regime jedoch Ungemach aus zwei Richtungen: Eine kleine Anzahl von „Ausbrechern“ und „Außenseitern“ unterminiert seine zentrale Zielsetzung, die Weiterverbreitung dieser Waffen aufzuhalten. Die Verweigerungshaltung der Kernwaffenstaaten gegenüber ihrer Abrüstungspflicht verstößt gegen den im Regime eingelassenen Gerechtigkeitsgrundsatz und zerstört damit seine Legitimität. Diese Erkenntnis ist mittlerweile aus dem „Ghetto“ der unverdrossenen Abrüstungsenthusiasten in den sicherheitspolitischen Mainstream vorgedrungen. Von ihrer Durchsetzungsfähigkeit wird letztlich die Zukunft des Regimes abhängen – mit weitreichenden Konsequenzen für die globale Sicherheit.
Der „demokratische Frieden“ und seine außenpolitischen Konsequenzen Demokratien führen gegeneinander keine Kriege; oder jedenfalls „fast“ keine. Dieser statistische Befund ist ziemlich robust gegenüber Veränderungen in der Definition von „Demokratie“ und von „Krieg“. Demokratien erfreuen sich überdies im Durchschnitt größeren Wohlstands, vermeiden erfolgreich Hungersnöte, bieten ihren Bürgerinnen und Bürgern mehr Freiheit und lassen sich eher auf internationale Organisationen und auf die Rechtsbindung in internationalen Verträgen ein als Staaten mit anderen Regierungsformen; dies sind natürlich Durchschnittswerte, von denen es Abweichungen gibt. Aber die Nachricht ist ziemlich klar: Demokratien bieten eine vergleichsweise bessere Form von „Good Governance“ als andere Systeme.