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Thoughts About Code Modernization with Intel® Black Belt Dr. Clay Breshears

Dr. Clay Breshears gives his thoughts about code modernization, and where he thinks that new technology is going.

Authored by Clay B. (Blackbelt) Last updated on 03/09/2019 - 14:40
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Accelerating Crucial Steps in Drug Development with Intel® Scalable System Framework

Life Sciences simulation and modeling are breaking new ground in cancer research, drug development, patient screening, and visualization based on high-performance Intel® Xeon Phi™ processors and th

Authored by admin Last updated on 12/12/2018 - 18:00
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3D Imaging with Cryo-Electron Microscopy

The ROME System was developed at the  Dana Farber  Cancer Institute and Harvard Medical School and funded in part by Intel® Parallel Computing Centers.

Authored by admin Last updated on 12/12/2018 - 18:00
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3D Molecular Dynamics Simulation

LAMMPS* 3D molecular dynamics simulations are used to analyze, visualize, and manipulate the high-resolution 3D molecular structure of proteins and  simulate  its movement and interaction.

Authored by admin Last updated on 12/12/2018 - 18:00
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Deep Learning for Virtual Cancer Screening

This demo highlights research performed at Kyoto University Graduate School of Medicine with a dataset of more than 400 million proteins.

Authored by admin Last updated on 12/12/2018 - 18:00
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High Fidelity 3D Visualization of Evolving Brain Tumors

HPC resources add scale and power for clinical care and research that extends well beyond the drug development pipeline.

Authored by admin Last updated on 08/02/2019 - 17:54
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Clinical Trial Patient Screening via Genome Analysis

QIAGEN performs genome sequencing and analyzes the sequenced DNA to help identify patients who have variants of interest compared to a reference genome, and thus could have the protein that the cry

Authored by admin Last updated on 12/12/2018 - 18:00
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深度学习助力虚拟癌症筛选

本演示重点介绍了京都大学医学研究生院的研究成果。该大学对超过 4 亿种蛋白质的数据集进行了研究。 此次演示使用相关的算法来分析化合物的虚拟库,并根据相关的化学和其他属性,预测哪些化合物可能适用于特定的蛋白质。其研究成果有助于更快地确定治疗方案。

Authored by IDZSupport K. Last updated on 01/17/2019 - 19:37
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英特尔® 可扩展系统框架助力加快药物开发流程

得益于高性能英特尔® 至强融核™ 处理器和英特尔® 可扩展系统框架(英特尔® SSF),生命科学模拟和建模在癌症研究、药物发现、患者筛查以及可视化领域取得新的突破。这些演示展示了最新的科研技术和成果。

Authored by IDZSupport K. Last updated on 01/17/2019 - 01:47
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冷冻电镜技术助力 3D 成像

ROME System 由 Dana Farber 癌症研究院和哈佛医学院开发,并获得英特尔® 并行计算中心的资助。本演示使用 ROME System、英特尔® 至强融核处理器以及英特尔® 可扩展系统框架(英特尔® SSF),快速将冷冻电镜影像转换为 3D 高分辨率结构。通过将 VMD 与英特尔的 OSPRay* 光线追踪库相集成,可以实现 3D 重建过程的可视化。

Authored by IDZSupport K. Last updated on 01/17/2019 - 01:50