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Science without Constraints

Fueling the Next Great Wave of Data-Driven Innovation in the Life Sciences

Authored by Mike P. (Intel) Last updated on 07/06/2019 - 19:26
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Second Generation Intel® Xeon® Processor Scalable Family Technical Overview

New features and enhancements available in the second generation Intel® Xeon® processor Scalable family and how developers can take advantage of them
Authored by David Mulnix (Intel) Last updated on 09/30/2019 - 17:28
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Accelerating Secondary Genome Analysis Using Intel® Reference Architecture

The dramatic reduction in whole human genome sequencing costs, from USD 100 million per genome in 2001 to USD 4,500 per genome in 2014, combined with the increasing performance gains in computing t

Authored by Mike P. (Intel) Last updated on 10/01/2019 - 16:45
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Improving Medical Imaging Performance on the Intel® Xeon® Processor 5500 series

In Medical Imaging, it is important to maximize healthcare quality by providing the best images in the shortest time to assure accurate diagnosis & patient treatment. This article describes the 50x speedup of an image reconstruction algorithm.
Authored by Last updated on 10/02/2019 - 16:26
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提高英特尔® 至强® 处理器 5500 系列的医疗成像性能

In Medical Imaging, it is important to maximize healthcare quality by providing the best images in the shortest time to assure accurate diagnosis & patient treatment. This article describes the 50x speedup of an image reconstruction algorithm.
Authored by Last updated on 10/02/2019 - 16:26
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Neusoft Computed Tomography on Intel® Xeon® Processor E5-2600 v3

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Authored by Nguyen, Khang T (Intel) Last updated on 10/02/2019 - 16:39
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Case Study: Optimized Code for Neural Cell Simulations

One of the Intel® Modern Code Developer Challenge winners, Daniel Falguera, describes many of the optimizations he implemented and why some didn't work.
Authored by Last updated on 10/03/2019 - 07:55
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案例研究: 面向神经细胞模拟优化代码

Intel held the Intel® Modern Code Developer Challenge that had about 2,000 students from 130 universities in 19 countries registered to participate in the Challenge. They were provided access to Intel® Xeon Phi™ coprocessors to optimize code used in a CERN openlab brain simulation research project. In this article Daniel Vea Falguera (Modern Code Developer Challenge winner) shares how he...
Authored by Last updated on 10/03/2019 - 07:56
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ABySS for Intel® Xeon® Processors

Widespread adoption of massively parallel deoxyribonucleic acid (DNA) sequencing instruments has prompted the recent development of de novo short read assembly algorithms. A common shortcoming of the available tools is their inability to efficiently assemble vast amounts of data generated from large-scale sequencing projects, such as the sequencing of individual human genomes to catalog natural...
Authored by Sunny G. (Intel) Last updated on 10/03/2019 - 11:17