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| 1 | Blockchain technology applications for Industry 4.0:A literature-based review显示文摘Industry 4.0 involves innovations with upcoming digital technologies,and blockchain is one of them.Blockchain can be incorporated to improve security,privacy,and data transparency both for small and large enterprises.Industry 4.0 is a synthesis of the new production methods that allow manufacturers to achieve their target more rapidly.Research has been conducted on various Industry 4.0 technologies like Artificial Intelligence(AI),Internet of Things(IoT),Big data,and Blockchain,and how they could create significant interruptions in recent years.These technologies provide various possibilities in the world of manufacturing and supply chain.Blockchain is a technology that has gained much recognition and can enhance the manufacturing and supply chain environment.Various fields now have fascinating insights into the advantages of blockchain.Several research articles on“Blockchain”and“Industry 4.0”from Google Scholar,Scopus,and other relevant sources are identified and reviewed for this study.This paper discusses the major potential of Blockchain in Industry 4.0.Various drivers,enablers,and associated capabilities of Blockchain technology for Industry 4.0 are discussed for insights.Different Industry 4.0 spheres/sub-domains for Blockchain technology realisation are also discussed.Finally,we have identified and studied fourteen significant applications of Blockchain in Industry 4.0.It is a range of new developments and hope for immense opportunities that are changing Industry 4.0.This technology would work to achieve amplified outcomes and work individually to enhance the process. | Mohd Javaid Abid Haleem Ravi Pratap Singh Shahbaz Khan Rajiv Suman | 2021 | Blockchain(Research and Applications)2021,2,4: | 2 |
| 2 | Draft genome sequence of a less-known wild Vigna: Beach pea(V. marina cv. ANBp-14-03)显示文摘Beach pea or beach cowpea(Vigna marina(Burm.)Merr.)belongs to the family Fabaceae.It is a close relative of cultivated Vigna species such as adzuki bean(V.angularis),cowpea(V.unguiculata),mung bean(V.radiata),and blackgram(V.mungo),and is distributed throughout the tropics.With its ability to tolerate salt stress,beach pea has great potential to contribute salt-tolerance genes for developing salt-tolerant cultivars in cultivated Vigna species.However,it is still underutilized in Vigna breeding programs.A draft genome sequence of beach pea was generated using a high-throughput next-generation sequencing platform,yielding 23.7 Gb of sequence from 79,929,868 filtered reads.A de novo genome assembly containing 68,731 scaffolds gave an N50 length of 10,272 bp and the assembled sequences totaled 365.6 Mb.A total of 35,448 SSRs,including 3574 compound SSRs,were identified and primer pairs for most of these SSRs were designed.Genome analysis identified 50,670 genes with mean coding sequence length 1042 bp.Phylogenetic analysis revealed highest sequence similarity with V.angularis,followed by V.radiata.Comparison with the V.angularis genome revealed 16,699 SNPs and 2253 InDels and comparison with the V.radiata genome revealed 17,538 SNPs and 2300 InDels.To our knowledge this is the first draft genome sequence of beach pea derived from an accession(ANBp-14-03)adapted locally in the Andaman and Nicobar Islands of India.The draft genome sequence may facilitate the genetic enhancement in cultivated Vigna species. | Awnindra Kumar Singh A.Velmurugan Debjyoti Sen Gupta Jitendra Kumar Ravi Kesari Aravind Konda Narendra Pratap Singh Sibnarayan Dam Roy Utpal Biswas R.Rahul Kumar Sanjay Singh | 2019 | The Crop Journal2019,7,5: | 2 |
| 3 | 质量4.0技术有助提升中医药在新冠肺炎期间应对医疗保健挑战显示文摘质量4.0的概念源自第四次工业革命,即工业4.0。质量4.0是质量的未来,新兴数字化和颠覆性技术被用来保持组织的质量,其同样适合保持中医药的质量。这场质量革命目的在于通过整合新兴技术将物理系统与自然界联系起来,从而提高工业和服务部门的质量。所提出的数字化理念可以革新和增强整个中医药治疗方法论,使其在目前制药和临床行业的竞争结构中变得更加有效且更具吸引力。因而,在医疗保健领域,这场革命在新冠肺炎大流行期间可提升治疗质量。在大流行期间,医疗保健领域的一个基本要求是保持医疗工具、设备及治疗过程的质量。数字技术可以广泛用于为中医药提供高质量的创新产品和服务。在本文中,我们探讨了质量4.0的重要作用,以及如何在大流行期间用它来保持医疗保健的质量及应对挑战。同时,我们讨论了新冠肺炎大流行期间质量4.0在医疗保健领域的主要应用。这些技术将为在整个治疗过程中保持中医药质量提供独特的优势。借助质量4.0,可以应用创新和先进的数字技术来保证质量。 | Abid Haleem Mohd Javaid Ravi Pratap Singh Rajiv Suman | 2021 | Digital Chinese Medicine2021,4,2: | 1 |
| 4 | Statistical optimization of physical process variables for bio-plastic (PHB) production by Alcaligenes sp.显示文摘 | Abhishek Dutt Tripathi Suresh Kumar Srivastava Ravi Pratap Singh | 2013 | Biomass and Bioenergy2013,,: | 1 |
| 5 | 3D printing applications for healthcare research and development显示文摘There is a growing demand for customised,biocompatible,and sterilisable components in the medical busi-ness.3D Printing is a disruptive technology for healthcare and provides significant research and development avenues.Simple 3D printing service gives patients low-cost individualised prostheses,implants,and gadgets,en-abling surgeons to operate more effectively with customised equipment and models;and assisting medical device manufacturers in developing new and faster goods.3D printed tissue pieces can overcome various challenges and may eventually allow medication companies to streamline research and development.In the long run,it may also assist in lowering prices and making medicines more accessible and effective for everybody.There is a growing corpus of research on the advantages of employing 3D printed anatomic models in teaching and training.The capacity to 3D printing individual anatomical diseases for practical learning is one of the funda-mental contrasts between utilising 3D and regular anatomical models.3D printing is very appealing for producing patient-specific implants.This literature review-based paper explores the role of 3D printing and 3D bioprinting in healthcare.It briefs the need and progressive steps for implementing 3D printing in healthcare and presented various facilities and enablers of 3D printing for the healthcare sector.Finally,this paper identifies and discusses the significant applications of 3D printing for healthcare research and development.3D printing services can be deployed to easily construct complex geometries in plastic or metal with good precision.This results in improved prototypes,lower costs,and lower part processing times.They can now physically create with natural materials,previously unattainable with prior technologies.Every hospital should have 3D printers in the future,allowing new organs/parts to be developed in-house. | Mohd Javaid Abid Haleem Ravi Pratap Singh Rajiv Suman | 2022 | Global Health Journal2022,6,4: | 1 |
| 6 | Optimization of the spray-drying process for developing guava powder using response surface methodology显示文摘 | VAIBHAV PATIL ANIL KUMAR CHAUHAN RAVI PRATAP SINGH | 2014 | Powder Technology2014,253,: | 1 |
| 7 | Applications of nanotechnology in medical field: a brief review显示文摘Nanotechnology has extensive application as nanomedicine in the medical field.Some nanoparticles have possible applications in novel diagnostic instruments,imagery and methodologies,targeted medicinal products,pharmaceutical products,biomedical implants,and tissue engineering.Today treatments of high toxicity can be administered with improved safety using nanotechnology,such as chemotherapeutic cancer drugs.Further,wearable gadgets can detect crucial changes in vital signs,cancer cell conditions,and infections that are genuinely happening in the body.We anticipate these technologies to provide doctors with considerably much better direct access to critical data on the reasons for changes in the signs of life or illness because of the technological presence at the source of the problem.Biomedicine can be utilised for therapies with predictive analytics and artificial intelligence.For carrying out this study,relevant papers on Nanotechnology in the medical field from Scopus,Google scholar,ResearchGate,and other research platforms are identified and studied.The study discusses different types of Nanoparticles used in the medical field.This paper discusses nanotechnology applications in the medical field.The class,features,and characteristics of Nanotechnology for medicine are also briefed.Scientists,governments,civil society organisations,and the general public will need to collaborate across sectors to assess the significance of nanotechnology and guide its advancement in various fields.The current research includes several possible Nanotechnology uses in the medical field.As a result,the study provides a brief and well-organised report on nanotechnology that should be valuable to researchers,engineers,and scientists for future research projects. | Abid Haleem Mohd Javaid Ravi Pratap Singh Shanay Rab Rajiv Suman | 2023 | Global Health Journal2023,7,2: | 0 |
| 8 | State of the art in finite element approaches for milling process:a review显示文摘Over a century,metal cutting has been observed as a vital process in the domain of manufacturing.Among the numerous available metal-cutting processes,milling has been considered as one of the most employable processes to machine a variety of engineering materials productively.In the milling process,material removal occurs when the workpiece is fed against a rotating tool with multiple cutting edges.In order to maximize the profitability of metal cutting operations,it is essential that the various input and output variable relationships are analyzed and optimized.The experimental method of studying milling processes is costly and time demanding,particularly when a large variety of elements such as cutting tool shape,materials,cutting conditions,and so on,are included.Due to these issues,other alternatives emerged in the form of mathematical simulations that employ numerical methods.The finite element approaches have well-proven to be the most practical and commonly utilized numerical methods.The finite element model(FEM)can be used to determine the various physical interactions occurring during the machining process along with the prediction of various milling characteristics,such as cutting forces,cutting temperature,stresses,etc.,with the help of milling inputs.In the present article,various research studies in the broad milling process domain practiced with numerous finite element approaches have been critically reviewed and reported.It further highlights the several experimental and finite element approaches-based research studies that attempted to analyze and optimize the overall performance of the different milling processes.In recent years,various investigators have explored numerous ways to enhance milling performance by probing the different factors that influence the quality attributes.Some of the studies have also been found to be focused on the economic impacts of milling and various process inputs that affect milling performance.Furthermore,various milling factors’impact on the performance characteristics are presented and critically discussed.The issues related to the recent improvements in tool-work interaction modeling,experimental techniques for acquiring various milling performance measures,and the aspects of turn and micro-milling with finite element-based modeling have been further highlighted.Among the various available classifications in the milling process as employed in industries,face milling is more strongly established compared to other versions such as end milling,helical milling,gear milling,etc.The final section of this research article explores the various research aspects and outlines future research directions. | Shailendra Chauhan Rajeev Trehan Ravi Pratap Singh | 2023 | Advances in Manufacturing2023,11,4: | 0 |
| 9 | Ethnobotanical survey of medicinal plants used in the management of cancer and diabetes显示文摘OBJECTIVE:To conduct an ethnobotanical survey and document the traditional anticancer and antidiabetic plants used by the local tribes of Mizoram,Northeast India.METHODS:A systematic survey was conducted in rural and urban areas of Mizoram by interviewing traditional practitioners,and cancer and diabetes patients.A detailed literature search was carried out using MEDLINE and SCOPUS and available literatures were selected and included in the study.The use value(UV)of the selected plants was calculated based on the number of citations per species given by informants.RESULTS:Data was obtained for 201 traditional medicinal plants from Mizoram,Northeast India.These plants were from 72 different families and belonged to 140 genera.Of these,103 plants were reported for the first time as possessing either anticancer or antidiabetic potential,and 105 plants were identified that were used for the treatment of both diseases.Three plants(Phlogacanthus thysiformis,Solanum gilo and Lobelia angulata)with antidiabetic potential,and six plants(Dillenia scabrella,Circium sinesis,Eupatorium nodiflorum,Pratia begonifolia,Vernonia teres and Plantago erosa)with both as anticancer and antidiabetic potential were documented for the first time.CONCLUSION:In this study,we documented several explored and unexplored medicinal plants that may be useful for the management of cancer and diabetes.This study suggests that there is a broad scope fordeveloping potent anticancer and antidiabetic agent from the flora of Mizoram,Northeast India. | Garima Singh Ajit Kumar Passari Marcy D Momin Sakthivel Ravi Bhim Pratap Singh Nachimuthu Senthil Kumar | 2020 | Journal of Traditional Chinese Medicine2020,40,6: | 0 |
| 10 | Methyl-salicylate:A surveillance system fortriggering immunity in neighboring plants显示文摘Plant behavioral actions have been one of the major topicsof research in plant biology and agriculture.These actionsfrom plants are determined by their instant structural andphysical reactions to the circumstances(Bouwmeester et al.,2019).Upon sensing abiotic factors such as salinity,flooding,high temperature,drought,plants make suitable changes intheir physiology and behavior to survive such harsh conditions. | Saumya Jaiswal Durgesh Kumar Tripathi Ravi Gupta JingHe Zhong-Hua Chen Vijay Pratap Singh | 2024 | Journal of Integrative Plant Biology2024,66,2: | 0 |