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1Artificial cognition for applications in smart agriculture: A comprehensive review显示文摘Agriculture contributes to 6.4%of the entire world's economic production.In at least nine countries of the world,agriculture is the dominant sector of the economy.Agriculture not only provides the fuel for billions of people but also employment opportunities to a large number of people.The agricultural industries are seeking innovative approaches for improving crop yielding because of unpredictable climatic changes,the rapid increase in population growth and food security concerns.Thus,artificial intelligence in agriculture also called“Agriculture Intelligence”is progressively emerging as a part of the industry's technological revolution.The aim of this paper is to review various applications of agriculture intelligence such as precision farming,disease detection,and crop phenotyping with the help of numerous tools such as machine learning,deep learning,image processing,artificial neural network,deep learning,convolution neural network,Wireless Sensor Network(WSN)technology,wireless communication,robotics,Internet of Things(IoT),different genetic algorithms,fuzzy logic and computer vision to name a few.With the help of these technologies,the use of the colossal volume of chemicals can be used reduced,which would result in reduced expenditure improved soil fertility along with elevated productivity.Misbah Pathan Nivedita Patel Hiteshri Yagnik Manan Shah 2020Artificial Intelligence in Agriculture2020,,1:6
2Reactivation of hepatitis B after liver transplantation: Current knowledge, molecular mechanisms and implications in management显示文摘Chronic hepatitis B(CHB) is a major global health problem affecting an estimated 350 million people with more than 786000 individuals dying annually due to complications, such as cirrhosis, liver failure and hepatocellular carcinoma(HCC). Liver transplantation(LT) is considered gold standard for treatment of hepatitis B virus(HBV)-related liver failure and HCC. However, post-transplant viral reactivation can be detrimental to allograft function, leading to poor survival. Prophylaxis with high-dose hepatitis B immunoglobulin(HBIG) and anti-viral drugs have achieved remarkable progress in LT by suppressingviral replication and improving long-term survival. The combination of lamivudine(LAM) plus HBIG has been for many years the most widely used. However, life-long HBIG use is both cumbersome and costly, whereas long-term use of LAM results in resistant virus. Recently, in an effort to develop HBIG-free protocols, high potency nucleos(t)ide analogues, such as Entecavir or Tenofovir, have been tried either as monotherapy or in combination with low-dose HBIG with excellent results. Current focus is on novel antiviral targets, especially for covalently closed circular DNA(ccc DNA), in an effort to eradicate HBV infection instead of viral suppression. However, there are several other molecular mechanisms through which HBV may reactivate and need equal attention. The purpose of this review is to address post-LT HBV reactivation, its risk factors, underlying molecular mechanisms, and recent advancements and future of anti-viral therapy.Ranjit Chauhan Shilpa Lingala Chiranjeevi Gadiparthi Nivedita Lahiri Smruti R Mohanty Jian Wu Tomasz I Michalak Sanjaya K Satapathy 2018World Journal of Hepatology2018,10,3:5
3Implementation of artificial intelligence in agriculture for optimisation of irrigation and application of pesticides and herbicides显示文摘Agriculture plays a significant role in the economic sector.The automation in agriculture is themain concern and the emerging subject across theworld.The population is increasing tremendously and with this increase the demand of food and employment is also increasing.The traditional methodswhich were used by the farmers,were not sufficient enough to fulfill these requirements.Thus,new automated methods were introduced.These new methods satisfied the food requirements and also provided employment opportunities to billions of people.Artificial Intelligence in agriculture has brought an agriculture revolution.This technology has protected the crop yield fromvarious factors like the climate changes,population growth,employment issues and the food security problems.This main concern of this paper is to audit the various applications of Artificial intelligence in agriculture such as for irrigation,weeding,spraying with the help of sensors and other means embedded in robots and drones.These technologies saves the excess use of water,pesticides,herbicides,maintains the fertility of the soil,also helps in the efficient use of man power and elevate the productivity and improve the quality.This paper surveys the work of many researchers to get a brief overview about the current implementation of automation in agriculture,the weeding systems through the robots and drones.The various soil water sensing methods are discussed alongwith two automatedweeding techniques.The implementation of drones is discussed,the various methods used by drones for spraying and crop-monitoring is also discussed in this paper.Tanha Talaviya Dhara Shah Nivedita Patel Hiteshri Yagnik Manan Shah 2020Artificial Intelligence in Agriculture2020,,1:4
4Siliciclastic-carbonate mixing modes in the river-mouth bar palaeogeography of the Upper Cretaceous Garudamangalam Sandstone(Ariyalur, India)显示文摘Mixed siliciclastic-carbonate rocks constitute the Upper Cretaceous Garudamangalam Sandstone Formation, Ariyalur(India), and offer an opportunity to look into the broad spectrum of mixing of compositionally and genetically different components. The palaeogeographic reconstruction indicates that deposition in the nearshore zone differed strongly in energy and active processes operatives due to the presence of a shore-parallel river-mouth bar. The western wing of the Mississippi bird-foot delta is considered to be a present-day analogon. Facies analysis in combination with petrography clearly shows the variability in palaeoenvironmental characteristics, both biogenic and non-biogenic. It also indicates diagenetic uptake of carbonate that filled empty spaces and actively replaced original components. Chemical staining followed by limited application of cathodoluminescence and energy dispersive X-ray analysis(EDAX) hint at intricacies in mixing arising from the compositional variations in the carbonate components. A model of siliciclastic-carbonate sediment mixing, including both the depositional and diagenetic developments, is presented; it is aimed at generating a better overview of, and a deeper insight into, the physical and chemical mechanisms involved.Subir Sarkar Nivedita Chakraborty Anudeb Mandal Santanu Banerjee Pradip K.Bose 2014Journal of Palaeogeography2014,3,3:4
5Intravenous administration of ulinastatin (human urinary trypsin inhibitor) in severe sepsis: a multicenter randomized controlled study显示文摘Dilip R. Karnad Rakesh Bhadade Pradeep K. Verma Nivedita D. Moulick Mradul K. Daga Neelima D. Chafekar Shivakumar Iyer 2014Intensive Care Medicine2014,,6:2
6Fluorinated acrylic copolymers, Part I: Study of clear coatings 显示文摘Malshe V C Sangaj Nivedita S 2005Progress in Organic Coatings2005,53,3:1
7American College of Rheumatology 2008 Recommendations for the Use of Nonbiologic and Biologic Disease Modifying Anti-rheumatic Drugs in Rheumatoid Arthritis显示文摘Kenneth GS Gim GT Nivedita MP 2008Arthritis Rheum2008,59,6:1
8Triphala , an Ayurvedic formulation improves the antioxidant status on TNBS induced IBD in rats显示文摘Soumya J. Koppikar Suresh D. Jagtap Prasad P. Devarshi Nivedita M. Jangle Vitthal B. Awad Asmita A. Wele Abhay M. Harsulkar 2014European Journal of Integrative Medicine2014,,:1
9Diagnosing the Cause of Prote-olysis in UHT Milk显示文摘DATTA NIVEDITA DEETH H C 2003LWT-Food Science and Technology2003,36,2:1
10Fluorinated acrylic copolymers: Part I: Study of clear coatings 显示文摘Malshe V C Nivedita S 2005Progress in Organic Coatings2005,53,3:1
11Propranolol therapy for infantile hemangioma显示文摘Nivedita G Sriram R Subramanian B 2013Indian Pediatrics2013,50,3:1
12Adsorption of Cr^4+ on activated rice husk carbon and activated alumina显示文摘NARSI R B MINI B NIVEDITA S ASHA G 2004Bioresourcc Technology2004,91,:1
13Voltage sensing-based photovoltaic MPPT with improved tracking and drift avoidance capabilities显示文摘Nivedita Dasgupta Ashish Pandey Ashok K Mukerjec 2008Solar Energy Materials & Solar Cells2008,92,12:1
14Fluorinated acrylic copolymers(I ) : Study of clear coatings 显示文摘Malshe V C Nivedita S Sangaj 2005Progress in Organic Coatings2005,53,3:1
15Flavonoids, phenolic acids and abscisic acid in Australian and New Zealand Leptospermum honeys 显示文摘Yao Lihu Nivedita Datta Francisco A 2003Food Chemistry2003,81,2:1
16Production of Microbial Surfactants from Oily Sludge-Contaminated Soil by Bacillus subtilis DSVP23显示文摘Suma Pemmaraju Deepak Sharma Nivedita Singh Richa Panwar Swaranjit Cameotra Vikas Pruthi 2012Applied Biochemistry and Biotechnology2012,,5:1
17DC power supply used as photovohaic simulator for testing MPPT algorithms 显示文摘A K Mukerjee Nivedita Dasgupta 2007Renewable Energy2007,32,4:1
18Chlamydia pneumoniae exposure and inflammatory markers in acute coronary syndrome (CIMACS)显示文摘Harish R Chandra Nivedita Choudhary Carol O’Neill Judith Boura Gerald C Timmis William W O’Neill 2001The American Journal of Cardiology2001,,:1
19Pyrroloquinoline-quinone: a reactive oxygen species scavenger in bacteria显示文摘Hari S. Misra Nivedita P. Khairnar Atanu Barik K. Indira Priyadarsini Hari Mohan Shree K. Apte 2004FEBS Letters2004,,1:1
20Does local endometrialinjury in the nontransfer cycle improve the IVF-ET outcome in the subsequentcycle in patients with previous unsuccessful IVF? A randomized controlled pilotstudy显示文摘Sachin A Narvekar Neelima Gupta Nivedita Shetty 0,,01:1
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