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This paper revisits the k-mismatch shortest unique substring finding problem and demonstrates that a technique recently presented in the context of solving the k-mismatch average common substring problem can be adapted and combined with parts of the existing solution, resulting in a new algorithm which has expected time complexity of O(n log^k n), while maintaining a practical space complexity at O(kn), where n is the string length. When , which is the hard case, our new proposal significantly improves the any-case O(n^2) time complexity of the prior best method for k-mismatch shortest unique substring finding. Experimental study shows that ourmore »
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Allen, Daniel R. ; Thankachan, Sharma V. ; Xu, Bojian ( , Proceedings of the 2018 {ACM} International Conference on Bioinformatics, Computational Biology, and Health Informatics, {BCB} 2018, Washington, DC, USA, August 29 - September 01, 2018)