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ease
features
design
support

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Description

Dragonfly 3D World, developed by Object Research Systems (ORS), serves as a sophisticated software platform tailored for the visualization, analysis, and collaborative study of multidimensional images across various scientific and industrial domains. This platform boasts an array of robust features that facilitate the visualization, processing, and interpretation of 2D, 3D, and even 4D imaging data, which can be obtained from modalities like CT, MRI, and electron microscopy, among others. Users can engage in interactive exploration of intricate structures through real-time volume rendering, surface rendering, and orthogonal slicing capabilities. The integration of artificial intelligence within Dragonfly empowers users to harness deep learning techniques for tasks such as image segmentation, classification, and object detection, significantly enhancing analytical precision. Additionally, the software includes sophisticated quantitative analysis tools that allow for region-of-interest investigations, measurements, and statistical assessments. The user-friendly graphical interface of Dragonfly ensures that researchers can construct reproducible workflows and efficiently conduct batch processing, promoting consistency and productivity in their work. Ultimately, Dragonfly 3D World stands out as a vital resource for those seeking to push the boundaries of imaging analysis in their respective fields.

Description

The NVIDIA Deep Learning GPU Training System (DIGITS) empowers engineers and data scientists by making deep learning accessible and efficient. With DIGITS, users can swiftly train highly precise deep neural networks (DNNs) tailored for tasks like image classification, segmentation, and object detection. It streamlines essential deep learning processes, including data management, neural network design, multi-GPU training, real-time performance monitoring through advanced visualizations, and selecting optimal models for deployment from the results browser. The interactive nature of DIGITS allows data scientists to concentrate on model design and training instead of getting bogged down with programming and debugging. Users can train models interactively with TensorFlow while also visualizing the model architecture via TensorBoard. Furthermore, DIGITS supports the integration of custom plug-ins, facilitating the importation of specialized data formats such as DICOM, commonly utilized in medical imaging. This comprehensive approach ensures that engineers can maximize their productivity while leveraging advanced deep learning techniques.

API Access

Has API

API Access

Has API

Screenshots View All

Screenshots View All

Integrations

TensorFlow
Caffe
Dask
Keras
NetApp AIPod
Torch
Unleash live

Integrations

TensorFlow
Caffe
Dask
Keras
NetApp AIPod
Torch
Unleash live

Pricing Details

No price information available.
Free Trial
Free Version

Pricing Details

No price information available.
Free Trial
Free Version

Deployment

Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook

Deployment

Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook

Customer Support

Business Hours
Live Rep (24/7)
Online Support

Customer Support

Business Hours
Live Rep (24/7)
Online Support

Types of Training

Training Docs
Webinars
Live Training (Online)
In Person

Types of Training

Training Docs
Webinars
Live Training (Online)
In Person

Vendor Details

Company Name

Dragonfly

Founded

2004

Country

Canada

Website

dragonfly.comet.tech/en/product-overview/dragonfly-3d-world

Vendor Details

Company Name

NVIDIA DIGITS

Founded

1993

Country

United States

Website

developer.nvidia.com/digits

Product Features

Deep Learning

Convolutional Neural Networks
Document Classification
Image Segmentation
ML Algorithm Library
Model Training
Neural Network Modeling
Self-Learning
Visualization

Product Features

Deep Learning

Convolutional Neural Networks
Document Classification
Image Segmentation
ML Algorithm Library
Model Training
Neural Network Modeling
Self-Learning
Visualization

Alternatives

Alternatives

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Neural Designer

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