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20172021
most citeddiBELLA: Distributed Long Read to Long Read Alignment

17 citations · 40 across the 7 of their papers we have counts for

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cs.DC202014 cited

10 Years Later: Cloud Computing is Closing the Performance Gap

Giulia Guidi, Marquita Ellis, Aydin Buluc +2

Can cloud computing infrastructures provide HPC-competitive performance for scientific applications broadly? Despite prolific related literature, this question remains open. Answer…

cs.DC2020

Parallel String Graph Construction and Transitive Reduction for De Novo Genome Assembly

Giulia Guidi, Oguz Selvitopi, Marquita Ellis +3

One of the most computationally intensive tasks in computational biology is de novo genome assembly, the decoding of the sequence of an unknown genome from redundant and erroneous…

cs.DC202017 cited

diBELLA: Distributed Long Read to Long Read Alignment

Marquita Ellis, Giulia Guidi, Aydın Buluç +2

We present a parallel algorithm and scalable implementation for genome analysis, specifically the problem of finding overlaps and alignments for data from "third generation" long r…

cs.DC2020

The Parallelism Motifs of Genomic Data Analysis

Katherine Yelick, Aydin Buluc, Muaaz Awan +11

Genomic data sets are growing dramatically as the cost of sequencing continues to decline and small sequencing devices become available. Enormous community databases store and shar…

cs.DC2019

RDMA vs. RPC for Implementing Distributed Data Structures

Benjamin Brock, Yuxin Chen, Jiakun Yan +3

Distributed data structures are key to implementing scalable applications for scientific simulations and data analysis. In this paper we look at two implementation styles for distr…

cs.DC2018

Extreme Scale De Novo Metagenome Assembly

Evangelos Georganas, Rob Egan, Steven Hofmeyr +6

Metagenome assembly is the process of transforming a set of short, overlapping, and potentially erroneous DNA segments from environmental samples into the accurate representation o…