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Dynamic Contrast Enhanced Computed Tomography to Assess Radiation Therapy in Liver Cancer Patients

Primary Purpose

Liver Cancer

Status
Completed
Phase
Early Phase 1
Locations
United States
Study Type
Interventional
Intervention
Dynamic Contrast Enhanced Computed Tomography
Sponsored by
University of Colorado, Denver
About
Eligibility
Locations
Arms
Outcomes
Full info

About this trial

This is an interventional diagnostic trial for Liver Cancer focused on measuring Radiation, Metastases, Dynamic Contrast Enhanced Computed Tomography, Pilot

Eligibility Criteria

18 Years - 100 Years (Adult, Older Adult)All SexesDoes not accept healthy volunteers

Inclusion Criteria:

  1. Provision to sign and date the consent form
  2. Stated willingness to comply with all study procedures and be available for the duration of the study
  3. Be a Male or Female aged 18-100
  4. Diagnosed with Liver HCC or metastases
  5. Must be receiving or will plan to receive SBRT for Liver HCC or metastases

Exclusion Criteria:

  1. Allergy to iodine contrast
  2. CT with contrast not offered as a Standard of Care
  3. Pregnant women

Sites / Locations

  • University of Colorado Denver

Arms of the Study

Arm 1

Arm Type

Experimental

Arm Label

Dynamic Contrast Enhanced Computed Tomography

Arm Description

DCE-CT, also known as perfusion CT, is a functional imaging modality that uses repeated computed tomography imaging after injection of an iodine based contrast agent.

Outcomes

Primary Outcome Measures

DCE-CT Perfusion Metrics: K-Trans
Determine the association between the delivered radiation therapy dose distribution and the change in perfusion measurement through K-Trans (extraction-flow product) as shown through DCE-CT imaging.
DCE-CT Perfusion Metrics: Blood Volume
Determine the association between the delivered radiation therapy dose distribution and the change in perfusion measurement through blood volume as shown through DCE-CT imaging.
DCE-CT Perfusion Metrics: Blood Flow
Determine the association between the delivered radiation therapy dose distribution and the change in perfusion measurement through blood flow as shown through DCE-CT imaging.

Secondary Outcome Measures

Correlation Between Patient Demographics and K-Trans: Age
Stratify K-Trans results by age to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and K-Trans: Sex
Stratify K-Trans results by sex to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and K-Trans: Race
Stratify K-Trans results by race to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and K-Trans: Clinical Stage of Disease
Stratify K-Trans results by clinical stage at diagnosis to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Volume: Age
Stratify blood volume results age to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Volume: Sex
Stratify blood volume results sex to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Volume: Race
Stratify blood volume results race to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Volume: Clinical Stage of Disease
Stratify blood volume results by clinical stage at diagnosis to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Flow: Age
Stratify blood flow results age to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Flow: Sex
Stratify blood flow results sex to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Flow: Race
Stratify blood flow results race to determine correlation of DCE-CT imaging results compared to patient demographics
Correlation Between Patient Demographics and Blood Flow: Clinical Stage of Disease
Stratify blood flow results by clinical stage at diagnosis to determine correlation of DCE-CT imaging results compared to patient demographics

Full Information

First Posted
March 25, 2019
Last Updated
April 28, 2022
Sponsor
University of Colorado, Denver
Collaborators
National Cancer Institute (NCI)
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1. Study Identification

Unique Protocol Identification Number
NCT03891654
Brief Title
Dynamic Contrast Enhanced Computed Tomography to Assess Radiation Therapy in Liver Cancer Patients
Official Title
Pilot Study of Dynamic Contrast Enhanced Computed Tomography (DCE-CT) Imaging for the Assessment of Radiation Therapy Outcome for Liver Cancer Patients
Study Type
Interventional

2. Study Status

Record Verification Date
April 2022
Overall Recruitment Status
Completed
Study Start Date
August 1, 2019 (Actual)
Primary Completion Date
December 20, 2021 (Actual)
Study Completion Date
April 28, 2022 (Actual)

3. Sponsor/Collaborators

Responsible Party, by Official Title
Sponsor
Name of the Sponsor
University of Colorado, Denver
Collaborators
National Cancer Institute (NCI)

4. Oversight

Studies a U.S. FDA-regulated Drug Product
No
Studies a U.S. FDA-regulated Device Product
Yes
Data Monitoring Committee
Yes

5. Study Description

Brief Summary
This is a pilot study that uses a standard of care technique, Stereotactic Body Radiation Therapy (SBRT), in combination with Dynamic Contrast Enhanced Computed Tomography (DCE-CT) to determine if perfusion changes from SBRT of liver cancer may be used for outcome assessment and prediction of prognosis.
Detailed Description
Patients will undergo standard of care SBRT while also receiving DCE-CT, also known as perfusion CT, pre-treatment, 6 hours post-treatment and 6 weeks post-treatment.

6. Conditions and Keywords

Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Liver Cancer
Keywords
Radiation, Metastases, Dynamic Contrast Enhanced Computed Tomography, Pilot

7. Study Design

Primary Purpose
Diagnostic
Study Phase
Early Phase 1
Interventional Study Model
Single Group Assignment
Model Description
Each patient will receive the standard of care, with the intervention, DCE-CT perfusion, occurring pre-treatment and post-treatment
Masking
None (Open Label)
Allocation
N/A
Enrollment
3 (Actual)

8. Arms, Groups, and Interventions

Arm Title
Dynamic Contrast Enhanced Computed Tomography
Arm Type
Experimental
Arm Description
DCE-CT, also known as perfusion CT, is a functional imaging modality that uses repeated computed tomography imaging after injection of an iodine based contrast agent.
Intervention Type
Diagnostic Test
Intervention Name(s)
Dynamic Contrast Enhanced Computed Tomography
Other Intervention Name(s)
DCE-CT, Perfusion CT
Intervention Description
Patients will receive DCE-CT prior to the start of standard of care, Stereotactic Body Radiation Therapy (SBRT), as well as 6 hours post administration of SBRT and 6 weeks post administration of SBRT.
Primary Outcome Measure Information:
Title
DCE-CT Perfusion Metrics: K-Trans
Description
Determine the association between the delivered radiation therapy dose distribution and the change in perfusion measurement through K-Trans (extraction-flow product) as shown through DCE-CT imaging.
Time Frame
Baseline to end of follow-up, up to 12 weeks
Title
DCE-CT Perfusion Metrics: Blood Volume
Description
Determine the association between the delivered radiation therapy dose distribution and the change in perfusion measurement through blood volume as shown through DCE-CT imaging.
Time Frame
Baseline to end of follow-up, up to 12 weeks
Title
DCE-CT Perfusion Metrics: Blood Flow
Description
Determine the association between the delivered radiation therapy dose distribution and the change in perfusion measurement through blood flow as shown through DCE-CT imaging.
Time Frame
Baseline to end of follow-up, up to 12 weeks
Secondary Outcome Measure Information:
Title
Correlation Between Patient Demographics and K-Trans: Age
Description
Stratify K-Trans results by age to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and K-Trans: Sex
Description
Stratify K-Trans results by sex to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and K-Trans: Race
Description
Stratify K-Trans results by race to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and K-Trans: Clinical Stage of Disease
Description
Stratify K-Trans results by clinical stage at diagnosis to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Volume: Age
Description
Stratify blood volume results age to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Volume: Sex
Description
Stratify blood volume results sex to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Volume: Race
Description
Stratify blood volume results race to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Volume: Clinical Stage of Disease
Description
Stratify blood volume results by clinical stage at diagnosis to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Flow: Age
Description
Stratify blood flow results age to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Flow: Sex
Description
Stratify blood flow results sex to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Flow: Race
Description
Stratify blood flow results race to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months
Title
Correlation Between Patient Demographics and Blood Flow: Clinical Stage of Disease
Description
Stratify blood flow results by clinical stage at diagnosis to determine correlation of DCE-CT imaging results compared to patient demographics
Time Frame
Post follow-up to end of study, up to 12 months

10. Eligibility

Sex
All
Minimum Age & Unit of Time
18 Years
Maximum Age & Unit of Time
100 Years
Accepts Healthy Volunteers
No
Eligibility Criteria
Inclusion Criteria: Provision to sign and date the consent form Stated willingness to comply with all study procedures and be available for the duration of the study Be a Male or Female aged 18-100 Diagnosed with Liver HCC or metastases Must be receiving or will plan to receive SBRT for Liver HCC or metastases Exclusion Criteria: Allergy to iodine contrast CT with contrast not offered as a Standard of Care Pregnant women
Overall Study Officials:
First Name & Middle Initial & Last Name & Degree
Moyed Miften, PhD
Organizational Affiliation
University of Colorado, Denver
Official's Role
Principal Investigator
Facility Information:
Facility Name
University of Colorado Denver
City
Aurora
State/Province
Colorado
ZIP/Postal Code
80045
Country
United States

12. IPD Sharing Statement

Plan to Share IPD
No

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Dynamic Contrast Enhanced Computed Tomography to Assess Radiation Therapy in Liver Cancer Patients

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