• Title/Summary/Keyword: 유전암호

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Design of a Multi Dielectric Coating against Non-invaisive Attack (비침투형 공격에 강한 다중 유전체 코팅 설계)

  • Kim, Tae-Yong;LEE, HoonJae
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.19 no.6
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    • pp.1283-1288
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    • 2015
  • In general, IC chip circuit which is operating a cryptographic computation tends to radiate stronger electromagnetic signal to the outside. By using a power detecter such as a loop antenna near cryptographic device, the encryption key can be identified by probing a electromagnetic signal. To implement a method against non-invasive type attack, multi dielectric slab structure on IC chip to suppress radiated electromagnetic signal was introduced. Multiple dielectric slab was implemented by suitably configured to have the Bragg reflection characteristics, and then the reflection response was computed and verified its effectiveness. As a result, the thickness of the dielectric coating was 2mm and the reflection response characteristics for the vertical incidence was achieved to be 91% level.

Clustering analysis and classification of cryptocurrency transaction using genetic algorithm (유전알고리즘을 이용한 암호화폐 거래정보의 군집화 분석 및 분류)

  • Park, Junhyung;Jeong, Seokhyeon;Park, Eunsik;Kim, Kyungsup;Won, Yoojae
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2018.10a
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    • pp.22-26
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    • 2018
  • In this paper, we propose a model that classifies different transaction information by clustering and learning through similarity and transaction pattern of cryptocurrency transaction information. By using characteristics of genetic algorithms, we can get better clustering performance by eliminating unnecessary elements in clustering process. The transaction information including the clustering value is set as the training data, and the transaction information can be predicted through the classification algorithm. This can be used to automatically detect abnormal transactions from various transaction information of the cryptocurrency.

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Deciphering the Genetic Code in the RNA Tie Club: Observations on Multidisciplinary Research and a Common Research Agenda (RNA 타이 클럽의 유전암호 해독 연구: 다학제 협동연구와 공동의 연구의제에 관한 고찰)

  • Kim, Bong-kook
    • Journal of Science and Technology Studies
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    • v.17 no.1
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    • pp.71-115
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    • 2017
  • In 1953, theoretical physicist George Gamow attempted to explain the process of protein synthesis by hypothesizing that the base sequence of DNA encodes a protein's amino acid sequence and, in response, proposed the nucleic acid-protein information transfer model, which he dubbed the "diamond code." After expressing interest in discussing the daring hypothesis, contemporary biologists, including James Watson, Francis Crick, Sydney Brenner, and Gunther Stent, were soon invited to join the RNA Tie Club, an informal research group that would also count biologists and various researchers in physics, mathematics, and computer engineering among its members. In examining the club's formation, growth, and decline in multidisciplinary research on deciphering the genetic code in the 1950s, this paper first investigates whether Gamow's idiosyncratic approach could be adopted as a collaborative research forum among contemporary biologists. Second, it explores how the RNA Tie Club's research agenda could have been expanded to other relevant research topics needing multidisciplinary approach? Third, it asks why and how the RNA Tie Club dissolved in the late 1950s. In answering those questions, this paper shows that analyses on the intersymbol correlation of the overlapping code functioned to integrate diverse approaches, including sequence decoding and statistical analysis, in research on the genetic code. As those analyses reveal, the peculiar approaches of the RNA Tie Club could be regarded as a useful method for biological research. The paper also concludes that the RNA Tie Club dissolved in the late 1950s due to the disappearance of the collaborative research agenda when the overlapping code hypothesis was abandoned.

The Need for Homomorphic Encryption to Protection Privacy (프라이버시 보호를 위한 동형암호의 필요성)

  • Seo, Jin-Beom;Cho, Young-Bok
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2021.10a
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    • pp.47-49
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    • 2021
  • According to the revision of the Data 3 Act in 2020, personal information of medical data can be processed anonymously for statistical purposes, research, and public interest record keeping. However, unidentified data can be re-identified using genetic information, credit information, etc., and personal health information can be abused as sensitive information. In this paper, we derive the need for homomorphic encryption to protect the privacy of personal information separated by sensitive information.

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Privacy model for DTC genetic testing using fully homomorphic encryption (동형암호를 활용한 DTC유전자검사 프라이버시모델)

  • Hye-hyeon Jin;Chae-ry Kang;Seung-hyeon Lee;Gee-hee Yun;Kyoung-jin Kim
    • Convergence Security Journal
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    • v.24 no.2
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    • pp.133-140
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    • 2024
  • The spread of Direct-to-Consumer (DTC) genetic testing, where users request tests directly, has been increasing. With growing demand, certification systems have been implemented to grant testing qualifications to non-medical institutions, and the scope of tests has been expanded. However, unlike cases in less regulated foreign countries, disease-related tests are still excluded from the domestic regulations. The existing de-identification method does not adequately ensure the uniqueness and familial sharing of genomic information, limiting its practical utility. Therefore, this study proposes the application of fully homomorphic encryption in the analysis process to guarantee the usefulness of genomic information while minimizing the risk of leakage. Additionally, to safeguard the individual's right to self-determination, a privacy preservation model based on Opt-out is suggested. This aims to balance genomic information protection with maintainability of usability, ensuring the availability of information in line with the user's preferences.

Draft genome sequence of Pelagicola sp. DSW4-44 isolated from seawater (해수에서 분리된 Pelagicola sp. DSW4-44의 초안 유전체 서열분석)

  • Oh, Ji-Sung;Roh, Dong-Hyun
    • Korean Journal of Microbiology
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    • v.55 no.3
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    • pp.283-285
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    • 2019
  • The draft genome sequencing for Pelagicola sp. DSW4-44 (= KCTC 62762 = KCCM 43261), isolated from deep seawater of East Sea in Korea, was performed using Illumina HiSeq platform. As a result, the draft genome was comprised of a total length of approximately 4.85 Mbp with G + C content of 54.3%, and included a total of 4,566 protein-coding genes, 3 rRNA genes, 48 tRNA genes, 3 non-coding RNA genes, and 67 pseudo genes. In the draft genome, the strain DSW4-44 contained genes involved in the nitrogen metabolism of dissimilatory nitrate reduction to ammonium (DNRA) and denitrification, which were not found other strains in the genus Pelagicola.

A study on Performance Evaluation for Network Architecture using Quantum Key Distribution Technology (양자암호기반의 통신망 구축 및 성능시험 검증연구)

  • Lee, Wonhyuk;Seok, Woojin;Park, Chanjin;Kwon, Woochang;Sohn, Ilkwon;Kim, Seunghae;Park, Byoungyoen
    • KNOM Review
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    • v.22 no.2
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    • pp.39-47
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    • 2019
  • There are several big data-driven advanced research activities such as meteorological climate information, high energy physics, astronomy research, satellite information data, and genomic research data on KREONET. Since the performance degradation occurs in the environment with the existing network security equipment, methods for preventing the performance degradation on the high-performance research-only network and for high-speed research collaboration are being studied. In addition, the recent issue of quantum computers has been a threat to security using the existing encryption system. In this paper, we construct quantum cryptography-based communication network through environment construction and high-performance transmission test that build physical security through quantum cryptography-based communication network in end-to-end high-speed research network. The purpose of this study is to analyze the effect on network performance when performing physical encryption and to use it as basic data for constructing high-performance research collaboration network.

Privacy-Preserving DNA Matching Protocol (프라이버시를 보호하는 DNA 매칭 프로토콜)

  • Noh, Geontae
    • Journal of Internet Computing and Services
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    • v.19 no.2
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    • pp.1-7
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    • 2018
  • Due to advances in DNA sequencing technologies, its medical value continues to grow. However, once genome data leaked, it cannot be revoked, and disclosure of personal genome information impacts a large group of individuals. Therefore, secure techniques for managing genomic big data should be developed. We first propose a privacy-preserving inner product protocol for large data sets using the homomorphic encryption of Gentry et al., and then we introduce an efficient privacy-preserving DNA matching protocol based on the proposed protocol. Our efficient protocol satisfies the requirements of correctness, confidentiality, and privacy.

Development of microarrayer for manufacturing DNA chip used in genome project (I) - A summary of research trend in-and-out of state - (유전자 검색을 위한 DNA chip 제작용 로봇 시스템의 개발(I) - 국내외 연구동향 -)

  • 이현동;김기대;임용표;김찬수
    • Proceedings of the Korean Society for Agricultural Machinery Conference
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    • 2002.02a
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    • pp.407-412
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    • 2002
  • 세계는 지금 post-genome 시대에 접어들고 있고, 하루에도 수백개 이상 밝혀지는 새로운 유전정보들이나 모든 유전암호가 밝혀진 생물들을 기존의 방법들로 연구한다는 것은 너무나 많은 시간을 요구한다. 즉, 인간 게놈 프로젝트 뿐만 아니라, 식물 게놈 프로젝트 등 다양한 분야에서 DNA chip의 필요성이 인식되고 있다. 그러나 우리나라는 DNA chip의 생산에 있어서 chip 제작에 필수적인 DNA chip 제작용 microarrayer를 고가를 들여 수입에 의존하고 있는 실정이다. 이는 DNA chip 생산비를 높이고, 더 나아가 우리나라 생명공학분야 연구의 발전에 악영향을 미치는 결과를 초래할 수 있다. 몇몇 국내 생산 업체가 있지만, 아직 그 실요성을 입증하지 못하였고, 대부분의 chip 공급업체는 아직 수입품을 사용하고 있는 상태이다. 이에 본 연구에서는 microarrayer의 국산화를 통해 안정적 DNA chip 및 microarrayer의 공급을 위해 microarrayer의 개발에 관해 수행하는 연구이며, 앞으로의 연구방향을 다음과 같이 설정하였다. 1) 유전자 검색을 위한 DNA chip 제작용 로봇 시스템 (microarrayer)을 pin 타입으로 설정한다. 2) 정밀도 향상을 위하여 로봇 시스템의 구동은 XYZ 직교좌표형으로 설정한다. 3) 1$cm^2$당 5,000개 정도의 DNA를 붙일 수 있도록 한다.

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