VirtualDose™DX

DX-Designed for Diagnostic X-Ray Imaging

VirtualDose™DX leverages the same validated Monte Carlo–based technology that powers VirtualDose™CT and VirtualDose™IR, extending our dose estimation expertise to radiographic (X-ray) exams.

It is designed to help clinicians, physicists, and researchers gain accurate, accessible radiation dose information for standard radiographic studies.

  • For Radiology Teams: Standardize and document patient dose in X-ray exams.
  • For Researchers: Expand studies on population radiation exposure with radiography included.
  • For Institutions: Demonstrate commitment to dose transparency and safety, meeting regulatory and accreditation expectations.

 

Built on the same Virtual Patient technology, VirtualDoseDX provides the following key features:

  • Wide Exam Coverage: Includes a catalog of typical radiographic exams with default technique settings.
  • Customizable Parameters: Users can easily adjust x-ray output, orientation, and geometry to match site-specific techniques or patient protocols.
  • Flexible Output Units: The x-ray beam is described by kVp and filtration, as well as output measurement in different units (entrance air kerma, entrance skin exposure, kerma or exposure area product, and tube current/time), matching the formats typically provided by X-ray machines.
  • Consistency Across Modalities: Consistent interface and reporting style consistent with VirtualDoseCT and VirtualDoseIR, simplifying cross-modality dose comparisons.
  • Validated Accuracy: Built on Virtual Phantoms’ rigorously tested dose modeling platform trusted worldwide.

Easy to Use, Web-Based.  Just like VirtualDoseCT and VirtualDoseIR, our easy-to-use radiation dosimetry tool is accessed via the Web. There is no software to install or maintain locally. This way, you are always accessing the most up-to-date version of the software tools. The VirtualDose system can also be accessed using an easy-to-configure API permitting batch processing and integration with local patient databases.