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Cristina Patanè Elisa Iacoponi Salvatore A. Raccuia 《International journal of food sciences and nutrition》2013,64(7):547-554
The physical and physico-chemical properties of several Kabuli chickpeas originating from Sicily (South Italy) were determined. Twelve genotypes in all, including two controls (ILC484, of the ICARDA genebank, and ‘Calia’, a traditional Italian cultivar), were analysed. A large variability among genotypes was ascertained for swelling capacity (coefficient of variation [CV]=27.9%), swelling index (CV=30.5%) and calcium content (CV=39.3%). The lowest variability was observed for seed coat (CV=8.6%) and seed weight (CV=9.6%). Genotype statistically affected all traits, whose mean values were: seed weight, 0.340±0.03 g; seed coat, 4.47±0.38%; seed volume, 0.292±0.04 ml; seed density, 1.18±0.15 g/ml; hydration capacity, 0.361±0.09 g/seed; hydration index, 1.05±0.21; swelling capacity, 0.346±0.10 ml/seed; swelling index, 1.21±0.37; cooking texture, 2.61±0.38 kg/cm2; and calcium, 109.6±43.11 mg/100 g dry weight. Correlation coefficients among characteristics were also estimated. The genotype ‘44M33’ was found to be interesting having good seed weight and low seed coat incidence and calcium content, all important attributes affecting cooking quality. 相似文献
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Alberto E. Tozzi Lucio Armenio Roberto Bernardini Attilio Boner Mauro Calvani Fabio Cardinale Giovanni Cavagni Arianna Dondi Marzia Duse Alessandro Fiocchi Gian L. Marseglia Michele Miraglia del Giudice Antonella Muraro Giovanni B. Pajno Francesco Paravati Diego Peroni Salvatore Tripodi Alberto G. Ugazio Luciana Indinnimeo 《Pediatric allergy and immunology》2011,22(3):267-276
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Geir Bjørklund Nagwa A. Meguid Afaf El-Ansary Mona A. El-Bana Maryam Dadar Jan Aaseth Maha Hemimi Joško Osredkar Salvatore Chirumbolo 《Journal of molecular neuroscience : MN》2018,66(4):492-511
Autism spectrum disorder (ASD) is a neurodevelopmental disorder afflicting about one in every 68 children. It is behaviorally diagnosed based on a triad of symptoms, including impairment in communication, impairment in sociability and abnormal and stereotypic behavior. The subjectivity of behavioral diagnosis urges the need for clinical biomarker tests to improve and complement ASD diagnosis and treatment. Over the past two decades, researchers garnered a broad range of biomarkers associated with ASD and often correlating with the severity of ASD, which includes metabolic and genetic biomarkers or neuroimaging abnormalities. Metabolic biomarkers are either involved in key pathways such as a trans-sulfuration pathway or produced due to the derangement of these pathways in the case of oxidative stress. Recent studies reported several genetic abnormalities related to ASD, encompassing various mechanisms, from copy number variations (CNVs) and single nucleotide polymorphisms (SNPs) to chromosomal anomalies. However, it is still premature to consider these genetic variants as true biomarkers for ASD, due to their low reproducibility and regional-specific nature. Herein, we comprehensively review state of the art about major biomarkers reported in ASD and the association of some biomarkers with ASD symptoms and severity. It is important to establish those biomarkers to be able to help in the diagnosis and to optimize the treatment of ASD. 相似文献
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Gian N. Frongia Salvatore Naitana Vittorio Farina Sergio D. Gadau Marco D. Stefano Marco Muzzeddu Giovanni Leoni Marco Zedda 《Journal of anatomy》2021,239(1):59-69
Flying is the main means of locomotion for most avian species, and it requires a series of adaptations of the skeleton and of feather distribution on the wing. Flight type is directly associated with the mechanical constraints during flight, which condition both the morphology and microscopic structure of the bones. Three primary flight styles are adopted by avian species: flapping, gliding, and soaring, with different loads among the main wing bones. The purpose of this study was to evaluate the cross-sectional microstructure of the most important skeletal wing bones, humerus, radius, ulna, and carpometacarpus, in griffon vultures (Gyps fulvus) and greater flamingos (Phoenicopterus roseus). These two species show a flapping and soaring flight style, respectively. Densitometry, morphology, and laminarity index were assessed from the main bones of the wing of 10 griffon vultures and 10 flamingos. Regarding bone mineral content, griffon vultures generally displayed a higher mineral density than flamingos. Regarding the morphology of the crucial wing bones involved in flight, while a very slightly longer humerus was observed in the radius and ulna of flamingos, the ulna in griffons was clearly longer than other bones. The laminarity index was significantly higher in griffons. The results of the present study highlight how the mechanics of different types of flight may affect the biomechanical properties of the wing bones most engaged during flight. 相似文献
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