• Title/Summary/Keyword: Future Emerging Technology

검색결과 389건 처리시간 0.027초

Perspective vaccines for emerging viral diseases in farm animals

  • Ahmad Mohammad Allam;Mohamed Karam Elbayoumy;Alaa Abdelmoneam Ghazy
    • Clinical and Experimental Vaccine Research
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    • 제12권3호
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    • pp.179-192
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    • 2023
  • The world has watched the emergence of numerous animal viruses that may threaten animal health which were added to the perpetual growing list of animal pathogens. This emergence drew the attention of the experts and animal health groups to the fact that it has become necessary to work on vaccine development. The current review aims to explore the perspective vaccines for emerging viral diseases in farm animals. This aim was fulfilled by focusing on modern technologies as well as next generation vaccines that have been introduced in the field of vaccines, either in clinical developments pending approval, or have already come to light and have been applied to animals with acceptable results such as viral-vectored vaccines, virus-like particles, and messenger RNA-based platforms. Besides, it shed the light on the importance of differentiation of infected from vaccinated animals technology in eradication programs of emerging viral diseases. The new science of nanomaterials was explored to elucidate its role in vaccinology. Finally, the role of Bioinformatics or Vaccinomics and its assist in vaccine designing and developments were discussed. The reviewing of the published manuscripts concluded that the use of conventional vaccines is considered an out-of-date approach in eliminating emerging diseases. However, these types of vaccines are considered the suitable plan especially in countries with few resources and capabilities. Piloted vaccines that rely on genetic-based technologies with continuous analyses of current viruses should be the aim of future vaccinology. Smart genomics of emerging viruses will be the gateway to choosing appropriate vaccines, regardless of the evolutionary rates of viruses.

REAL-TIME 3D MODELING FOR ACCELERATED AND SAFER CONSTRUCTION USING EMERGING TECHNOLOGY

  • Jochen Teizer;Changwan Kim;Frederic Bosche;Carlos H. Caldas;Carl T. Haas
    • 국제학술발표논문집
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    • The 1th International Conference on Construction Engineering and Project Management
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    • pp.539-543
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    • 2005
  • The research presented in this paper enables real-time 3D modeling to help make construction processes ultimately faster, more predictable and safer. Initial research efforts used an emerging sensor technology and proved its usefulness in the acquisition of range information for the detection and efficient representation of static and moving objects. Based on the time-of-flight principle, the sensor acquires range and intensity information of each image pixel within the entire sensor's field-of-view in real-time with frequencies of up to 30 Hz. However, real-time working range data processing algorithms need to be developed to rapidly process range information into meaningful 3D computer models. This research ultimately focuses on the application of safer heavy equipment operation. The paper compares (a) a previous research effort in convex hull modeling using sparse range point clouds from a single laser beam range finder, to (b) high-frame rate update Flash LADAR (Laser Detection and Ranging) scanning for complete scene modeling. The presented research will demonstrate if the FlashLADAR technology can play an important role in real-time modeling of infrastructure assets in the near future.

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Hypersonic Aerothermodynamics: Past, Present and Future

  • Park, Chul
    • International Journal of Aeronautical and Space Sciences
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    • 제14권1호
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    • pp.1-10
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    • 2013
  • This is a written version of the keynote speech delivered at the International Symposium on Hypersonic Aerothermodynamics - Recent Advances held in Bangalore, India, from December $6^{th}$ to $10^{th}$, 2012. In this document, what was accomplished in the past, the present status, and what is expected in the future in the field of hypersonic aerothermodynamics are reviewed. Solved problems are categorized into four items; unsolved problems into twelve items, and emerging problems into four items. Removing one degree uncertainty in trim angle of attack, studying the thermochemical phenomena in a hydrogen-helium-methane mixture, and entry flights of meteoroids are cited as the tasks for the future.

심화 학습 기반 이동통신기술 연구 동향 (Research Trends of Deep Learning-based Mobile Communication Technology)

  • 권동승
    • 전자통신동향분석
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    • 제34권6호
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    • pp.71-86
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    • 2019
  • The unprecedented demands of mobile communication networks by the rapid rising popularity of mobile applications and services require future networks to support the exploding mobile traffic volumes, the real time extraction of fine-rained analytics, and the agile management of network resources, so as to maximize user experience. To fulfill these needs, research on the use of emerging deep learning techniques in future mobile systems has recently emerged; as such, this study deals with deep learning based mobile communication research activities. A thorough survey of the literature, conference, and workshops on deep learning for mobile communication networks is conducted. Finally, concluding remarks describe the major future research directions in this field.

로봇수술의 현재와 미래 (The Present and Future of Robotic Surgery)

  • 나군호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2008년도 학술대회 논문집 정보 및 제어부문
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    • pp.68-70
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    • 2008
  • Since the beginning of the 21st century, the emergence of innovative technologies made further advances in minimal access surgery possible. Robotic surgery and telepresence surgery effectively addressed the limitations of laparoscopic procedures, thus revolutionizing minimal access surgery. Surgical robots provide surgeons with to technologically advanced vision and hand skills. As a result, such systems are expected to revolutionize the field of surgery. In that time, much progress has been made in integrating robotic technologies with surgical instrumentation. However, robotic surgery will not only require special training, but it will also change the existing surgical training pattern and reshape the learning curve by offering new solutions, such as robotic surgical simulators and robotic telementoring. This article provides an introduction to medical robotic technologies, develops a possible classification, reviews the evolution of a surgical robot, and discusses future prospects for innovation. In the future, surgical robots should be smaller, less expensive, easier to operate, and should seamlessly integrate emerging technologies from a number of different fields. We believe that, in the near future as robotic technology continues to develop, almost all kinds of endoscopic surgery will be performed by this technology.

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디지털 커스터마이징 자동화 기술 동향 (Digital Customized Automation Technology Trends)

  • 송은영
    • 한국의류산업학회지
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    • 제23권6호
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    • pp.790-798
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    • 2021
  • With digital technology innovation, increased data access and mobile network use by consumers, products and services are changing toward pursuing differentiated values for personalization, and personalized markets are rapidly emerging in the fashion industry. This study aims to identify trends in digital customized automation technology by deriving types of digital customizing and analyzing cases by type, and to present directions for the development of digital customizing processes and the use of technology in the future. As a research method, a literature study for a theoretical background, a case study for classification and analysis of types was conducted. The results of the study are as follows. The types of digital customizing can be classified into three types: 'cooperative customization', 'selective composition and combination', 'transparent suggestion', and automation technologies shown in each type include 3D printing, 3D virtual clothing, robot mannequin, human automatic measurement program, AR-based fitting service, big data, and AI-based curation function. With the development of digital automation technology, the fashion industry environment is also changing from existing manufacturing-oriented to consumer-oriented, and the production process is rapidly changing with IT and artificial intelligence-based automation technology. The results of this study hope that digital customized automation technology will meet various needs of personalization and customization and present the future direction of digital fashion technology, where fashion brands will expand based on the spread of digital technology.

기술사업화를 위한 과학정책 프로세스 구축에 관한 연구 (A Study on Establishment of a Scientific Policy Process for Technology Commercialization)

  • 김대건;차훈;정신영;최상환;문경식
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2014년도 추계 학술논문 발표대회
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    • pp.216-217
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    • 2014
  • Science & Technology(S&T) is the most important thing to attain competitiveness in the 21st century. Our traditional S&T policies have been forcused on hardware infra structure. We should consider software of S&T to enhance effectiveness. S&T Should be had a correct understanding method of the creation for S&T culture. It implies that S&T policy should consider nonmaterial factors which include social, environmental and culture. Under this background, The purpose of this paper is to seek new S&T policy. Therefor this paper deals with how we can prepare for the future S&T policy and classify the change of S&T policy of korea. In addition, Recent construction sector integration and fusion technologies in various areas of research and planning system is being maintained by the system. Past experience of conservative management in this emerging technology-driven technology commercialization in management of technology through the convergence of various technologies and to find synergies to secure the future of construction technology because it is a need.

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Technical requirements for cultured meat production: a review

  • Ramani, Sivasubramanian;Ko, Deunsol;Kim, Bosung;Cho, Changjun;Kim, Woosang;Jo, Cheorun;Lee, Chang-Kyu;Kang, Jungsun;Hur, Sunjin;Park, Sungkwon
    • Journal of Animal Science and Technology
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    • 제63권4호
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    • pp.681-692
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    • 2021
  • Environment, food, and disease have a selective force on the present and future as well as our genome. Adaptation of livestock and the environmental nexus, including forest encroachment for anthropological needs, has been proven to cause emerging infectious diseases. Further, these demand changes in meat production and market systems. Meat is a reliable source of protein, with a majority of the world population consumes meat. To meet the increasing demands of meat production as well as address issues, such as current environmental pollution, animal welfare, and outbreaks, cellular agriculture has emerged as one of the next industrial revolutions. Lab grown meat or cell cultured meat is a promising way to pursue this; however, it still needs to resemble traditional meat and be assured safety for human consumption. Further, to mimic the palatability of traditional meat, the process of cultured meat production starts from skeletal muscle progenitor cells isolated from animals that proliferate and differentiate into skeletal muscle using cell culture techniques. Due to several lacunae in the current approaches, production of muscle replicas is not possible yet. Our review shows that constant research in this field will resolve the existing constraints and enable successful cultured meat production in the near future. Therefore, production of cultured meat is a better solution that looks after environmental issues, spread of outbreaks, antibiotic resistance through the zoonotic spread, food and economic crises.

한국과 일본의 지진재해 및 우주이용 기술예측에 대한 최근의 변화 분석 (Analysis on Results and Changes in Recent Forecasting of Earthquake and Space Technologies in Korea and Japan)

  • 안은영
    • 자원환경지질
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    • 제55권4호
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    • pp.421-428
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    • 2022
  • 본 연구는 2022년 발표한 한국의 제6회 과학기술예측조사와 2019년 발표한 최신의 일본 과학기술예측조사 결과에 주목하여 최근 지질자원 분야에서 국가·사회적으로 높은 기대를 받고 있는 지진재해와 우주이용에 관한 미래기술을 분석하였다. 한국의 2022년 발표한 지진재해 관련 미래기술은 2017년 제시한 지진 예측 및 조기경보 기술 형태와 달리 지진·복합재난 정보기술과 공공데이터 플랫폼으로 제시되었고, 건물·도시의 재난대응 생활밀착 로봇에 적용하는 형태로 제시되었다. 일본 2019년 과학기술예측조사에서는 한국의 3배 수준의 많은 미래기술이 제시되었으며, 지진재해 기술 또한 대규모 지진 예측, 지층 주입에 따른 유발 지진 예측, 전국 액상화 위험 규명, 규모 광역 응력 측정, 사물인터넷(IoT) 혹은 인공지능 관측 영상 분석에 의한 지진 재해 감시·예측 등 상세 기술이 제시되었다. 최신 한국과 일본의 과학기술예측조사의 우주이용 기술은 물/얼음, 헬륨-3, 희토류 금속 등의 자원을 채굴하는 로봇 기술과 달·화성에서 현지자원을 활용한 유인기지 기술 형태로 더욱 구체화되었다. 일본의 기술적 실현시기를 비교해 보면 2019년에 예측한 실현시기가 2015년의 조사결과보다 4~10년 정도 지연되었다. 2019년 이후에도 코로나19 전염병 상황, 2020년 한국과 일본의 탄소중립 선언, 2022년 러시아-우크라이나 전쟁 등 환경변화에 따라 한국과 일본의 미래기술 실현시기의 예측 결과의 불확실성이 더 커질 수 있다. 하지만 앞으로 지질자원 분야에서 정보기술과 연계한 지진재해 및 우주이용 기술에 대한 더욱더 활발한 연구개발이 요구된다.

대기환경 개선을 위한 녹색기술 현황과 연구동향 (Current Status and Research Trend of the Green Technology for Atmospheric Environment)

  • 김대근;박성규;전의찬
    • 한국대기환경학회지
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    • 제29권5호
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    • pp.574-580
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    • 2013
  • Green technology encompasses a growing group of methods and materials, from techniques for generating energy and alternative resources to non-toxic cleaning products. Green technology is expected to solve current problems in atmospheric environment such as climate changes due to green house gases and hazardous air pollutants. This paper provides a review on the status of green technology and policy guidelines in Korea as well as the green technology for air pollutants. It presents the R&D projects and future direction in atmospheric environment, and the green technology in mobile source air pollution. Emerging green technology contributes to sustainable growth and development of atmospheric environmental industry for better air quality.