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Background
Maternal postpartum depression has an impact on mother-infant interaction. Mothers with depression display less positive affect and sensitivity in interaction with their infants compared to non-depressed mothers. Depressed women also show more signs of distress and difficulties adjusting to their role as mothers than non-depressed women. In addition, depressive mothers are reported to be affectively more negative with their sons than with daughters.
Methods
A non-clinical sample of 106 mother-infant dyads at psychosocial risk (poverty, alcohol or drug abuse, lack of social support, teenage mothers and maternal psychic disorder) was investigated with EPDS (maternal postpartum depressive symptoms), the CARE-Index (maternal sensitivity in a dyadic context) and PSI-SF (maternal distress). The baseline data were collected when the babies had reached 19 weeks of age.
Results
A hierarchical regression analysis yielded a highly significant relation between the PSI-SF subscale "parental distress" and the EPDS total score, accounting for 55% of the variance in the EPDS. The other variables did not significantly predict the severity of depressive symptoms. A two-way ANOVA with "infant gender" and "maternal postpartum depressive symptoms" showed no interaction effect on maternal sensitivity.
Conclusions
Depressive symptoms and maternal sensitivity were not linked. It is likely that we could not find any relation between both variables due to different measuring methods (self-reporting and observation). Maternal distress was strongly related to maternal depressive symptoms, probably due to the generally increased burden in the sample, and contributed to 55% of the variance of postpartum depressive symptoms.
Sowohl die liquiditäts- als auch die erfolgsorientierte Betrachtungsweise von Zahlungsströmen soll mit dem Begriff der optimalen Liquidität zum Ausdruck kommen. Der Liquiditätsplan stellt ein geeignetes Instrument dar, um fundierte Entscheidungen zu ermöglichen. Neben Ausführungen zu den allgemeinen Grundlagen bietet die Abhandlung von Dr. K. Kairies praxisorientierte Überlegungen für die Einführung und Pflege eines Liquiditätsplanes im Unternehmen.
Die Digitalisierung der Geisteswissenschaften eröffnet Wissenschaftlerinnen und Wissenschaftlern unter anderem neue Möglichkeiten des kollaborativen Arbeitens, des offenen Publizierens oder der direkten und öffentlichkeitswirksamen Wissenskommunikation. Auch die Literaturrecherche als ein Grundpfeiler wissenschaftlichen Arbeitens erfährt schon seit Jahren einen stetigen Wandel. Bibliotheken befinden sich als Anbieter von Literatur, Medien und Rechercheinstrumenten in einem Spannungsfeld: Die Kerntätigkeitsbereiche der Erwerbung sowie der Vermittlung von Informationskompetenz unterliegen auch aufgrund der zunehmenden Digitalisierung veränderten Rahmenbedingungen, die meistens außerhalb der Reichweite der lokalen Bibliothek liegen. Diese Bedingungen beeinflussen sowohl die Tätigkeiten des Bibliothekspersonals als auch die Informationsversorgung der Bibliothekskundinnen und -kunden stark.
In diesem Artikel soll mit Bezug auf eine Universitätsbibliothek mittlerer Größe und mit Blick auf eine ihrer wichtigsten Zielgruppen, nämlich die der Studierenden, dargestellt werden, wie sich im Zuge der zunehmenden Digitalisierung Fragen der Erwerbungspolitik und unterschiedliche Wege der Literaturrecherche auf das wissenschaftliche Arbeiten auswirken. Ein besonderes
Augenmerk gilt dabei dem Bestandsaufbau im Fachreferat Germanistik im Gefüge der an der Universität zu versorgenden Fächer. An der Schnittstelle zu Forschung, Lehre und Studium sind es die Fachreferentinnen und Fachreferenten der Bibliothek, die sowohl die Rahmenbedingungen als auch die verschiedenen Möglichkeiten der Literaturrecherche proaktiv vermitteln müssen.
Standen bisher bei den umfassend in der Literatur behandelten Logistikansätzen mehr die Materialwirtschaftsprobleme hinsichtlich der zeitgerechten Beschaffung und der Bestandshöhe im Vordergrund der Betrachtung, so meldet sich jetzt die Zeitwirtschaft mit den damit verbundenen Anstößen auf die Unternehmensstrategie zurück. Der Zeitfaktor ist bei kapitalintensiver Produktion schon immer ein knappes Gut gewesen, mit dem gut gewirtschaftet werden musste, um wettbewerbsfähig zu bleiben. Die derzeitige Wettbewerbssituation mit immer kürzeren Produkt-Entwicklungszeiten, Produkt-Lebenszeiten, Produkt-Herstellzeiten, Produkt-Lieferzeiten verstärkt die enorme Bedeutung des Zeitfaktors als Wert oder Bezugsgröße für Kosten, Termine oder Kapazitäten.
Quartz-crystal microbalances (QCMs) are commercially available mass sensors which mainly consist of a quartz resonator that oscillates at a characteristic frequency, which shifts when mass changes due to surface binding of molecules. In addition to mass changes, the viscosity of gases or liquids in contact with the sensor also shifts the resonance but also influences the quality factor (Q-factor). Typical biosensor applications demand operation in liquid environments leading to viscous damping strongly lowering Q-factors. For obtaining reliable measurements in liquid environments, excellent resonator control and signal processing are essential but standard resonator circuits like the Pierce and Colpitts oscillator fail to establish stable resonances. Here we present a lowcost, compact and robust oscillator circuit comprising of state-of-the-art commercially available surface-mount technology components which stimulates the QCMs oscillation, while it also establishes a control loop regulating the applied voltage. Thereby an increased energy dissipation by strong viscous damping in liquid solutions can be compensated and oscillations are stabilized. The presented circuit is suitable to be used in compact biosensor systems using custom-made miniaturized QCMs in microfluidic environments. As a proof of concept we used this circuit in combination with a customized microfabricated QCM in a microfluidic environment to measure the concentration of C-reactive protein (CRP) in buffer (PBS) down to concentrations as low as 5 μgmL -1.
This paper presents a databased approach for improving the precision of the moulding sand compressibility in the moulding sand mixer of a foundry. In this approach, the deviation between the measured and the target compressibility is reduced by controlling the water addition. The complex dynamic behaviour of the process variables and their influence on the water addition is modelled with a long short-term memory (LSTM) network. Another LSTM network as control path simulates the impact of the water addition on the compressibility. Simulation and experimental results with the applied model for water prediction in a feedforward control yield relevant improvements of the moulding sand compressibility.
The effect of magnetism on hydrogen adsorption and subsurface diffusion through face-centred cubic (fcc) γ-Fe(0 0 1) was investigated using spin-polarised density functional theory (s-DFT). The non-magnetic (NM), ferromagnetic (FM), and antiferromagnetic single (AFM1) and double layer (AFMD) structures were considered. For each magnetic state, the hydrogen preferentially adsorbs at the fourfold site, with adsorption energies of 4.07, 4.12, 4.03 and 4.05 eV/H atom for the NM, FM, AFM1 and AFMD structures. A total barrier of 1.34, 0.90, 1.32 and 1.25 eV and a bulk-like diffusion barrier of 0.6, 0.2, 0.4 and 0.3 eV were calculated for the NM, FM, AFM1 and AFMD magnetic states. The Fe atoms nearest to the H atom exhibited a reduced magnetic moment, whereas the next-nearest neighbour Fe atoms exhibited a non-negligible local perturbation in the magnetic moment. The presence of magnetically ordered structures has a minimal influence on the minimum energy path for H diffusion through the lattice and on the adsorption of H atoms on the Fe(0 0 1) surface, but we computed a significant reduction of the bulk-like diffusion barriers with respect to the non-magnetic state of fcc γ-Fe.
Malnutrition is the condition in which the body does not get the right amount of proteins, vitamins, or other nutrients.1 The global prevalence of malnutrition was reported as 13% in 2015.2 The subregion of South Asia is especially known as a critical area for severe wasted children aged <5 years.3 In India, 38.4% of children aged <3 years are stunted, and 46% are underweight.4 Malnutrition can lead to mortality as well as disabilities and long-term consequences such as cognitive disabilities, less economic productivity, or diseases.
In a cross-sectional study, impact of management in dairy farms on calf mortality rates and prevalence of rotavirus and Cryptosporidium parvum in feces of calves was investigated. Sixty-two commercial dairy herds in Mecklenburg-Western Pomerania, Germany, were stratified selected in 2019. We performed in-person interviews and fecal specimens in samples of all-female calves of age 7 up to 21 days. Management data were documented on farm level. A Multiscreen Ag-ELISA was performed to determine rotavirus and Cryptosporidium parvum. Associations between two calf mortality rates, detection of C. parvum and rotavirus, and predictors were examined with GLM models. In farms with routine vaccination against respiratory diseases, 31-days mortality rate was 4.2% +/-1.26 compared to 7.6% +/-0.97 (p = 0.040) on non-vaccinating farms. Six-months mortality was lower in farms that continued feeding milk to calves during periods of diarrhea compared to farms that did not (6.9% +/-0.8 vs. 12.4% +/-2.3). In case of a routine shifting of calves from the calving box into calf boxes less C. parvum was detected compared to an individual moving of calves (33.3% +/-2.6 vs. 19.6% +/-5.3; p = 0.024). Our model confirms a positive association between occurrence of aqueous feces and frequency of detection of C. parvum (45.4% +/-23.6 vs. 21.4% +/-18.7; p < 0.001). Frequency of detection of rotavirus was lower in farms that reported a defined amount of applicated colostrum per calf than in farms that presented a range of colostrum instead of a defined amount. This study indicates the potential for mitigation of risk factors for mortality in calves.