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NCICT User Manual
NCI Dosimetry System for Computed Tomography

The National Cancer Institute Dosimetry System for Computed Tomography (NCICT) is a reference-grade radiation dose estimation system developed by the National Cancer Institute (NCI) for estimating organ absorbed doses and effective dose associated with computed tomography (CT) examinations.
NCICT is based on pre-calculated organ dose conversion coefficients derived from Monte Carlo radiation transport simulations, multiple computational human phantom models, and a reference CT scanner framework. The system supports population-based dose evaluation, benchmarking, and regulatory-facing analyses, rather than patient-specific clinical decision support.
Organ dose calculations are performed through four sequential steps:
- Patient characteristics
- Scanner parameters
- Scan coverage definition
- Organ and effective dose output
A Batch Calculation mode is provided to support automated dose reconstruction for large datasets.
Intended use
NCICT is intended for reference dose estimation and comparative analyses.
It is not intended for real-time clinical dose calculation, site-specific customization, or individualized clinical decision making.
| Step | Description |
|---|---|
| 1 | Define patient age or body size |
| 2 | Specify scanner output (CTDIvol or reconstruction parameters) |
| 3 | Define scan coverage |
| 4 | Review organ and effective dose output |
NCICT supports two approaches for defining patient characteristics, depending on the availability of body size information.
When detailed body size information is unavailable, users may select one of the ICRP-defined reference age groups:
- Newborn
- 1, 5, 10, or 15 years
- Adult (assumed ≥20 years)
Reference height and weight corresponding to the selected age group are assigned automatically and are not user-editable.
If a patient’s age falls between reference groups, users may interpolate organ doses or select the nearest reference age group.
View age-based selection example

When patient height and weight are available, users may directly specify body size within the pediatric or adult phantom libraries.
This approach maps the patient’s body size to the closest matching body size–dependent phantom.
View height–weight selection example

Separate tabs are provided to support fetal and maternal organ dose calculations for eight gestational ages.
View pregnancy tabs

Two scanner parameter scenarios are supported.
Users enter CTDIvol, CTDI phantom type, and tube potential (kVp).
View CTDIvol input example

When CTDIvol is not available, it may be reconstructed using scanner model, tube potential (kVp), mAs, pitch, and collimation.
View CTDIvol reconstruction example

A vendor-neutral, generic tube current modulation (TCM) model may be applied. Average CTDIvol is computed automatically.
View TCM settings

Scan coverage may be defined interactively, numerically, or by selecting predefined NIH clinical protocols (e.g., head, chest, abdomen).
View scan range definition

NCICT reports organ absorbed doses (mGy) and effective dose (mSv). Results are appropriate for comparative and population-level analyses, rather than individual risk estimation.
View dose output table

Batch mode supports automated dose calculation using CSV-formatted input files when CTDIvol is available.
NCI dose tools are available at no cost for non-commercial research use under an approved Software Transfer Agreement (STA).
To request access:
- Complete the STA form
- Obtain required signatures
- Submit the completed form to:
Dr. Choonsik Lee
choonsik.lee@nih.gov
Scientific Director and Lead Architect
Commercial use of NCI dose tools requires a licensing agreement through the NCI Technology Transfer Center.
Vendors may request:
- Evaluation access
- Commercial runtime licensing
- API integration licensing
To initiate the process, contact:
Dr. Kevin Chang
kevin.chang@nih.gov
Licensing and Technology Transfer Officer
NCI Technology Transfer Center