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4篇 您的检索式:作者名="Rabiya"
    题名 作者 年代 出处 被引量
1Left Ventricular Twist Mechanics in Hypertrophic Cardiomyopathy Assessed by Three-Dimensional Speckle Tracking Echocardiography显示文摘Jose A. Urbano Moral Jose A. Arias Godinez Martin S. Maron Rabiya Malik Jacqueline E. Eagan Ayan R. Patel Natesa G. Pandian 2011The American Journal of Cardiology2011,,12:1
2Therapeutic Application,Phytoactives and Pharmacology of Tinospora cordifolia:An Evocative Review显示文摘Tinospora cordifolia(Guduchi or Gurjo),a herbaceous vine or climbing deciduous shrub,is consider as an important medicine in the Ayurvedic system of medication,which is available in India,China,Myanmar,Bangladesh and Srilanka.Menispermaceae is the family of this compound.T.cordifolia have a variety of properties to treat various ailments such as fevers,jaundice,diabetes,dysentery,urinary infections,and skin diseases.This compound has been subjected to many chemicals,pharmacological,pre-clinical,or clinical investigations and some new therapeutic potential effects have been indicated.This review aims to summarize the critical information concerning in areas of chemical constituents,chemical structure,and pharmacokinetic activities such as anti-diabetic,anticancer,immune-modulatory,antivirus(especially in silico study about COVID-19),antioxidant,antimicrobial,hepatoprotective and its effect on cardiovascular and neurological disorders as well as rheumatoid arthritis.This traditional herb needs more experimental study on the clinical,pre-clinical study,and clinical efficacy of these compounds for the prevention and treatment of COVID-19 and needs large-scale clinical studies to prove the clinical efficacy of this compound,especially in stress-related diseases and other neuronal disorders.Rabiya Ahsan Anuradha Mishra Badruddeen Badar Mohammad Owais Vijayshwari Mishra 2023Chinese Journal of Integrative Medicine2023,29,6:0
3An ontology model to represent aquaponics 4.0 system’s knowledge显示文摘Aquaponics,one of the vertical farming methods,is a combination of aquaculture and hydroponics.To enhance the production capabilities of the aquaponics system and maxi-mize crop yield on a commercial level,integration of Industry 4.0 technologies is needed.Industry 4.0 is a strategic initiative characterized by the fusion of emerging technologies such as big data and analytics,internet of things,robotics,cloud computing,and artificial intelligence.The realization of aquaponics 4.0,however,requires an efficient flow and inte-gration of data due to the presence of complex biological processes.A key challenge in this essence is to deal with the semantic heterogeneity of multiple data resources.An ontology that is regarded as one of the normative tools solves the semantic interoperation problem by describing,extracting,and sharing the domains’knowledge.In the field of agriculture,several ontologies are developed for the soil-based farming methods,but so far,no attempt has been made to represent the knowledge of the aquaponics 4.0 system in the form of an ontology model.Therefore,this study proposes a unified ontology model,AquaONT,to rep-resent and store the essential knowledge of an aquaponics 4.0 system.This ontology pro-vides a mechanism for sharing and reusing the aquaponics 4.0 system’s knowledge to solve the semantic interoperation problem.AquaONT is built from indoor vertical farming termi-nologies and is validated and implemented by considering experimental test cases related to environmental parameters,design configuration,and product quality.The proposed ontology model will help vertical farm practitioners with more transparent decision-making regarding crop production,product quality,and facility layout of the aquaponics farm.For future work,a decision support system will be developed using this ontology model and artificial intelligence techniques for autonomous data-driven decisions.Rabiya Abbasi Pablo Martinez Rafiq Ahmad 2022Information Processing in Agriculture2022,9,4:0
4The frequency of wing damage in a migrating butterfly显示文摘The ability to fly is crucial for migratory insects.Consequently,the accumulation of damage on the wings over time can affect survival,especially for species that travel long distances.We examined the frequency of irreversible wing damage in the migratory butterfly Vanessa cardui to explore the effect of wing structure on wing damage frequency,as well as the mechanisms that might mitigate wing damage.An exceptionally high migration rate driven by high precipitation levels in their larval habitats in the winter of 2018–2019 provided us with an excellent opportunity to collect data on the frequency of naturally occurring wing damage associated with long-distance flights.Digital images of 135 individuals of V.cardui were collected and analyzed in Germany.The results show that the hindwings experienced a greater frequency of damage than the forewings.Moreover,forewings experienced more severe damage on the lateral margin,whereas hindwings experienced more damage on the trailing margin.The frequency of wing margin damage was higher in the painted lady butterfly than in the migrating monarch butterfly and in the butterfly Pontia occidentalis following artificially induced wing collisions.The results of this study could be used in future comparative studies of patterns of wing damage in butterflies and other insects.Additional studies are needed to clarify whether the strategies for coping with wing damage differ between migratory and nonmigratory species.Rabiya Korkmaz Hamed Rajabi Shahab Eshghi Stanislav N.Gorb Thies H.Büscher 2023Insect Science2023,30,5:0
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