Here we introduce a Fiji plugin utilizing the HPC-as-a-Service concept, significantly mitigating the challenges life scientists face when delegating complex data-intensive processing workflows to HPC clusters. We demonstrate on a common Selective Plane Illumination Microscopy image processing task that execution of a Fiji workflow on a remote supercomputer leads to improved turnaround time despite the data transfer overhead. The plugin allows the end users to conveniently transfer image data to remote HPC resources, manage pipeline jobs and visualize processed results directly from the Fiji graphical user interface
Resource-intensive and complex medical imaging applications can benefit from the use of scientific w...
Optimizing scientific application performance in HPC environments is a complicated task which has mo...
Object management represents a substantial fraction of the total computing time in any distributed a...
Summary: Here we introduce a Fiji plugin utilizing the HPC-as-a-Service concept, significantly mitig...
Biological research is increasingly dependent on analyzing vast amounts of microscopy datasets. Tech...
This tutorial will focus on providing attendees exposure to cutting-edge technologies for building r...
Selective Plane Illumination Microscopy (SPIM) allows to image developing organisms in 3D at unprece...
As scientific workflows are becoming more complex and apply compute-intensive methods to increasingl...
Selective Plane Illumination Microscopy (SPIM) allows to image developing organisms in 3D at unprece...
Nowadays, HPC, Grid and Cloud systems are evolving very rapidly. However, the development of infrast...
Heterogeneous architectures can be problematic to program on, particularly when trying to schedule t...
Running scientific workflows on a supercomputer can be a daunting task for a scientific domain speci...
In this paper, we propose BeeFlow - an in situ analysis enabled workflow management system across mu...
Finding an effective way to improve accessibility to High-Performance Computing facilities, still an...
We present AccaSim, an HPC simulator for workload management. Thanks to the scalability and high cus...
Resource-intensive and complex medical imaging applications can benefit from the use of scientific w...
Optimizing scientific application performance in HPC environments is a complicated task which has mo...
Object management represents a substantial fraction of the total computing time in any distributed a...
Summary: Here we introduce a Fiji plugin utilizing the HPC-as-a-Service concept, significantly mitig...
Biological research is increasingly dependent on analyzing vast amounts of microscopy datasets. Tech...
This tutorial will focus on providing attendees exposure to cutting-edge technologies for building r...
Selective Plane Illumination Microscopy (SPIM) allows to image developing organisms in 3D at unprece...
As scientific workflows are becoming more complex and apply compute-intensive methods to increasingl...
Selective Plane Illumination Microscopy (SPIM) allows to image developing organisms in 3D at unprece...
Nowadays, HPC, Grid and Cloud systems are evolving very rapidly. However, the development of infrast...
Heterogeneous architectures can be problematic to program on, particularly when trying to schedule t...
Running scientific workflows on a supercomputer can be a daunting task for a scientific domain speci...
In this paper, we propose BeeFlow - an in situ analysis enabled workflow management system across mu...
Finding an effective way to improve accessibility to High-Performance Computing facilities, still an...
We present AccaSim, an HPC simulator for workload management. Thanks to the scalability and high cus...
Resource-intensive and complex medical imaging applications can benefit from the use of scientific w...
Optimizing scientific application performance in HPC environments is a complicated task which has mo...
Object management represents a substantial fraction of the total computing time in any distributed a...