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Hintergrund
Negatives Geburtserleben steht im Verdacht mit nachfolgender Sterilität, einem längeren Abstand zum nächsten Kind, sowie dem Wunsch nach einer primären Sectio bei einer weiteren Schwangerschaft assoziiert zu sein. Die derzeitige Datenlage ist kontrovers.
Methodisches Vorgehen
Das Design entspricht einer explorativen, qualitativen Querschnittsstudie. Dazu wurden zehn leitfadengestützte Interviews nach dem Prinzip des Problemzentrierten Interviews durchgeführt. Eingeschlossen wurden Primiparae, die vor dem 11.03.2020 (vor den Einschränkungen der Covid-19-Pandemie) geboren haben. Die Interviews wurden nach der inhaltlich strukturierenden qualitativen Inhaltsanalyse nach Kuckartz analysiert.
Ergebnisse
Insbesondere Frauen mit negativem Geburtserleben tendieren zu einer abgeschwächten Bereitschaft für eine weitere Schwangerschaft, dazu keine weitere Schwangerschaft zu planen sowie einen längeren Abstand zu einer weiteren Schwangerschaft zu wahren. Nur in Einzelfällen kann bei Frauen mit positiver Geburtserfahrung eine verstärkte Bereitschaft für eine weitere Schwangerschaft festgestellt werden. Die Entscheidung bezüglich der Planung einer Schwangerschaft ist multifaktoriell und sowohl vom Geburtserleben als auch von persönlichen, medizinischen, familiären und finanziellen Aspekten abhängig.
Diskussion
Besonders das Auftreten medizinischer Besonderheiten, das negative Erleben des Geburtsmodus, der peripartalen Schmerzen sowie der Betreuung und Versorgung scheinen Einflussfaktoren zu sein, welche die Bereitschaft für die Planung einer weiteren Schwangerschaft abschwächen. Es besteht weiterer Forschungsbedarf durch quantitative Arbeiten und in der Begriffsdefinition von Geburtserleben.
Fazit
Das individuelle Geburtserleben von Primiparae kann einen Einfluss auf die Planung einer weiteren Schwangerschaft haben.
Background
Spinach is a nitrogen (N) demanding crop with a weekly N uptake of up to 60 kg ha–1. Consequently, a high N supply is required, which can temporarily lead to high quantities of nitrate (NO3–) being at risk of leaching.
Aims
The objective of this study was to develop a N fertilization approach to reduce the risk of NO3– leaching in field-grown spinach production without adversely affecting crop yield and quality at an early and late harvest stage.
Methods
Ten fertilization trials were conducted to compare different base fertilization rates and splits of top dressings. For top dressings, granulated fertilizers or foliar sprays were used. In a further treatment, N supply was reduced by withholding the second top dressing of 50–70 kg ha−1.
Results
Nitrate concentration at risk of leaching was considerably reduced by decreasing the base fertilizer rate as well as by splitting the top dressing. However, at an early harvest stage, total aboveground dry mass was reduced by, on average, 6% by these measures across all seasons. In contrast, at a later harvest stage, spinach was less affected by the fertilizer schedule. Urea foliar sprays proved to be insufficient in promoting plant growth and caused leaf necrosis. A reduced N supply led to impaired plant growth and yellowish leaves in both spring and winter.
Conclusions
Base N fertilization of spinach is only required in spring, but not in other seasons. Despite slight yield reduction, the top dressing should be split to reduce the risk of NO3− leaching after an early harvest.
In open-field vegetable production, high quantities of soil mineral nitrogen (Nmin) and N-rich crop residues often remain in the field at harvest. After the harvest of crops in autumn, this N can lead to considerable nitrate (NO3−) losses during the subsequent winter leaching period. In four field trials, different tillage depths (3–4, 10, 30 cm) and dates (early autumn, late autumn, early spring) were investigated to reduce N losses after growing spinach in the autumn. In a further treatment, the nitrification inhibitor 3,4-Dimethylpyrazole phosphate (DMPP) was directly applied to the crop residues. Potential N losses were calculated by a balance sheet approach based on Nmin concentration (0–90 cm), measured N mineralization and N uptake by catch crops. By postponing the tillage date from early to late autumn or spring, resprouting spinach stubbles acted as a catch crop, reducing N losses by up to 61 kg ha−1. However, if the spinach biomass collapsed, the N losses increased by up to 33 kg ha−1 even without tillage. The application of DMPP as well as the tillage depth were less effective. Overall, postponing tillage to spring seems to be the most promising approach for reducing N losses during the off-season.
Studies on nutrition have historically concentrated on food-shortages and over-nutrition. The physiological states of feeling hungry or being satiated and its dynamics in food choices, dietary patterns, and nutritional behavior, have not been the focus of many studies. Currently, visual analytic using easy-to-use tooling offers applicability in a wide-range of disciplines. In this interdisciplinary pilot-study we tested a novel visual analytic software to assess dietary patterns and food choices for greater understanding of nutritional behavior when hungry and when satiated. We developed software toolchain and tested the hypotheses that there is no difference between visual search patterns of dishes 1) when hungry and when satiated and 2) in being vegetarian and non-vegetarian. Results indicate that food choices can be deviant from dietary patterns but correlate slightly with dish-gazing. Further, scene perception probably could vary between being hungry and satiated. Understanding t he complicated relationship between scene perception and nutritional behavioral patterns and scaling up this pilot-study to a full-study using our introduced software approaches is indispensable.
Design knowledge on smart glasses-based systems is scarce. Utilizing literature analysis on software development publications, insights from the design and implementation of four smart glasses-based systems and expert interviews, we elicited 16 design principles to provide guidance in the development of future service support systems. Heuristic Theorizing is an abductive Design Science Research method, hitherto far too little known or little noticed, which was applied to conduct the research. We contribute to theory and practice with applicable design principles to support the development of smart glasses-based systems. Phenomena known to have an impact on the adoption of smart glasses are addressed by these design principles.