Acute Pain Clinical Trial
— DETECT_AcuteOfficial title:
Diagnostic Performance of Deep Learning Image Reconstruction in Low Dose CT for the Detection of Acute Abdominal Conditions
Verified date | October 2023 |
Source | Oslo University Hospital |
Contact | n/a |
Is FDA regulated | No |
Health authority | |
Study type | Observational |
The goal of this non-inferiority observational study is to assess the diagnostic performance of low-dose CT with deep learning image reconstruction (DLIR) in adult participants with acute abdominal conditions. The main research question is: • Can low-dose CT with DLIR achieve the same diagnostic performance as standard CT for the diagnosis of acute abdominal conditions. Participants will be examined with an additional low-dose CT directly after the standard CT. Participant will be their own controls.
Status | Completed |
Enrollment | 246 |
Est. completion date | July 10, 2023 |
Est. primary completion date | July 10, 2023 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 18 Years and older |
Eligibility | Inclusion Criteria: - Patients under evaluation for an acute abdominal condition who are referred to CT of the abdomen and pelvis. - Age >18 years - The patients must be able to give their oral and written consent to study participation. Exclusion Criteria: - Contraindications regarding contrast enhanced CT examinations like known iodinated contrast media adverse reactions or claustrophobia. - Pregnancy. |
Country | Name | City | State |
---|---|---|---|
Denmark | Odense University Hospital | Odense | |
Norway | Oslo University Hospital | Oslo |
Lead Sponsor | Collaborator |
---|---|
Oslo University Hospital | Odense University Hospital |
Denmark, Norway,
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* Note: There are 29 references in all — Click here to view all references
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Diagnostic performance of low-dose CT | Diagnostic performance of low-dose CT compared to standard CT according to ICD 10 diagnosis.
Diagnostic performance measured in terms of: Sensitivity given in % according to TP/(TP+FN); specificity given in % according to TN/(TN+FP); positive predictive value given in % according to TP/(TP+FP); negative predictive value given in % according to TN/(TN+FN); accuracy given in % according to (TP+TN)/(TP+TN+FP+FN). Number true positive (TP); number true negative (TN); number false positive (FP); number false negative (FN). |
4 to 6 months | |
Secondary | Perceived image quality | Compare perceived image quality; low-dose vs standard CT:
Perceived image quality scored on a ordinal, 5-point Likert scale (at least two readers). |
4 to 6 months | |
Secondary | Image quality - noise | Compare technical image quality; low-dose vs standard CT:
Image noise in terms of standard deviation within a region of interest (ROI); numerical as Hounsfield unit (HU), several points of measurement. |
4 to 6 months | |
Secondary | Image quality - contrast-to-noise ratio | Compare technical image quality; low-dose vs standard CT:
Contrast-to-noise ratio; numerical, several points of measurement. Calculated according to: CNR=(¦?HU?_Kidney - ?HU?_(Water )¦)/v((?SD?_Kidney 2 + ?SD?_Water 2 )/2) |
4 to 6 months | |
Secondary | Radiation dose | Compare radiation dose; low-dose vs standard CT:
Radiation dose measured in terms of DLP and CTDIvol. |
4 to 6 months | |
Secondary | Diagnoses | Descriptive exploration of diagnoses among patients referred to CT examinations; diagnoses according to ICD 10. | 4 to 6 months |
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