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  4. Quantifying Genomic Privacy via Inference Attack with High-Order SNV Correlations
 
conference paper

Quantifying Genomic Privacy via Inference Attack with High-Order SNV Correlations

Samani, Sahel
•
Huang, Zhicong  
•
Ayday, Erman  
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2015
2015 IEEE Security and Privacy Workshops
2nd International Workshop on Genome Privacy and Security (in conjunction with IEEE S&P 2015)

As genomic data becomes widely used, the problem of genomic data privacy becomes a hot interdisciplinary research topic among geneticists, bioinformaticians and security and privacy experts. Practical attacks have been identified on genomic data, and thus break the privacy expectations of individuals who contribute their genomic data to medical research, or simply share their data online. Frustrating as it is, the problem could become even worse. Existing genomic privacy breaches rely on low-order SNV (Single Nucleotide Variant) correlations. Our work shows that far more powerful attacks can be designed if high-order correlations are utilized. We corroborate this concern by making use of different SNV correlations based on various genomic data models and applying them to an inference attack on individuals' genotype data with hidden SNVs. We also show that low-order models behave very differently from real genomic data and therefore should not be relied upon for privacy-preserving solutions.

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Type
conference paper
DOI
10.1109/SPW.2015.21
Author(s)
Samani, Sahel
Huang, Zhicong  
Ayday, Erman  
Elliot, Mark
Fellay, Jacques  
Hubaux, Jean-Pierre  
Kutalik, Zoltán
Date Issued

2015

Published in
2015 IEEE Security and Privacy Workshops
Start page

32

End page

40

Subjects

genomic privacy

•

SNV correlation

•

linkage disequilibrium

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LDS  
UPFELLAY  
Event nameEvent placeEvent date
2nd International Workshop on Genome Privacy and Security (in conjunction with IEEE S&P 2015)

San Jose, CA, USA

May 21, 2015

Available on Infoscience
March 18, 2015
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/112563
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