Universidad Internacional del Ecuador
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Çocuklarda İntramüsküler Enjeksiyon İşleminde Sesli Kitap ve Lokal Vibrasyon Uygulamasının Ağrı ve Korku Üzerine Etkisi Randomize Kontrollü Çalışma
Effect of Leaf Damage Ratios on Peanut (Arachis hypogaea L.) Production and Quality
This study was carried out to determine the effects of leaf damage rates at different growth stages of peanut (Arachis hypogaea L.) cultivars under Eastern Mediterranean conditions of Turkey (Osmaniye Province). The study was conducted in completely randomized design in split-split-plots with three replications, in 2020 and 2021. Cultivars NC 7 and Halisbey were in the main plots, growth stages (R1, R2 and R3) in sub-plots, and leaf damages (control, 25, 50, and 75%) in the sub-sub-plots. Yield and various quality parameters were measured and recorded. The highest value of the number of pods per plant was obtained from the Halisbey (24.5±0.4) cultivar, the R2 period (23.5±0.6), and the control (25.7±0.6) treatment. The number of pods per plant decreased when the leaf damage increased. The highest pod yield was obtained from NC 7 cultivar (2302±8.2 kg ha-1) and R1 period (2041±9.1 kg ha-1). The order of leaf damage treatments in terms of yield was as the control (2536±8.8 kg ha-1), 25% LD treatment (2011±8.0 kg ha-1), 50% LD treatment (1906±11.9 kg ha-1), and 75% LD (1481±7.6 kg ha-1). Thus, it was determined that the selection of cultivars and integrated control against diseases and pests are important in order to reduce the effect of leaf damage on the quality and yield of peanuts in Osmaniye conditions
Evaluation the Shielding Properties of Various Water Equivalent Materials Using Different Calculation Methods and Monte Carlo
Myocardial Perfusion PET Procedure Guideline Miyokardiyal Perfüzyon PET/BT Uygulama Kılavuzu
Myocardial perfusion imaging using positron emission tomography (PET) constitutes a non-invasive diagnostic procedure that provides crucial diagnostic and prognostic insights in the context of coronary artery disease. It enables the identification of microvascular circulation disorders in the early phases. The utilization of myocardial PET perfusion studies is on the rise, primarily owing to significant advantages compared to single photon emission tomography. These advantages include superior resolution and sensitivity, robust attenuation correction, reduced radiation exposure, and the capability for absolute quantification of stress and rest myocardial blood flow. This guide endeavors to establish standardized protocols for quantitative myocardial PET perfusion imaging and aims to provide information concerning their clinical applications and interpretation, aligning with international guidelines and relevant literature