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The Value of CT Fractional Flow Reserve

The Value of Fractional Flow Reserve Derived From Coronary CTA and in the Triage of Low to Intermediate Risk Chest Pain Patients: Design: Single Center Prospective Clinical Trial; Target Disease: Coronary Artery Disease

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT03026283
Acronym
VFFRCTA
Enrollment
586
Registered
2017-01-20
Start date
2017-01-31
Completion date
2018-09-30
Last updated
2023-05-30

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Angina, Stable Chest Pain

Brief summary

Coronary Computed Tomography Angiogram (CCTA) is a non-invasive imaging modality that has high sensitivity and negative predictive value for the detection of coronary artery disease (CAD). The main limitations of CCTA are its poor specificity and positive predictive value, as well as its inherent lack of physiologically relevant data on hemodynamic significance of coronary stenosis, a data that is provided either by non-invasive stress tests such as myocardial perfusion imaging (MPI) or invasively by measurement of the Fractional Flow Reserve (FFR). Recent advances in computational fluid dynamic techniques applied to standard CCTA are now emerging as powerful tools for virtual measurement of FFR from CCTA imaging (CT-FFR). These techniques correlate well with invasively measured FFR \[1-4\]. The primary purpose of this study is to evaluate the incremental benefit CT-FFR as compared to CCTA in triaging chest pain patients in outpatient settings who are found to have obstructive CAD upon CCTA (\> 30% and \< 90% stenosis). Invasive FFR and short term clinical outcomes (90 days) will be correlated with each diagnostic modality in order to evaluate positive and negative predictive value of each when used incrementally with CCTA. This will be an observational trial in which patients will undergo a CCTA, as part of routine care. If the patient consents to participate in the study and is found to have coronary stenosis of 30% to 90%, based on the cardiologist's reading, the CCTA study will be sent to HeartFlow, a vendor that will provide a computerized FFR reading, based on the CCTA study. If the noninvasive FFR diagnosis indicates obstructive disease, the patient will be recommended to undergo cardiac catheterization with invasive FFR. As CCTA utilization increases, the need to train additional imaging specialists will increase. This study will assess the capability of FFR-CT to enhance performance on both negative and positive predictive value for less experienced readers by providing feedback based on CT-FFR evaluation. CCTA readers will be grouped in two categories: those with more than 10 years reading experience and those with less than 10 years reading experience. Each CCTA will be read by a less experienced and a more experienced reader. Results from each reader will be correlated with each other and with the CT-FFR and invasive FFR results.

Detailed description

CCTA is increasingly becoming a preferred non-invasive imaging modality because of its high sensitivity and negative predictive value for the detection of CAD. It has been shown to be a robust imaging modality for evaluation of chest pain, and is associated with decreased unnecessary hospital admission, length of stay, major adverse cardiovascular event rates, recidivism rates, and downstream resource utilization compared to standard evaluation \[5\]. While findings so far are highly suggestive of CCTA's significance as a gatekeeper for Invasive Coronary Angiography (ICA) by ruling out obstructive CAD, fewer than half of obstructive stenosis identified by CCTA are ischemia-causing, signifying its poor positive predictive value and inherent lack of physiological information \[6-8\]. Consequently, utilization of CCTA has not entirely averted need for downstream testing for functional assessment of CCTA-detected obstructive lesions either by stress testing or ICA. Recently a major treatment modality, associated with the use of CCTA, has become available that offers promise for improving positive predictive value and physiological relevant hemodynamic data. Advances in computational fluid dynamic techniques applied to standard CCTA are now emerging as a powerful tool for virtual measurement of FFR from CCTA imaging (CT-FFR). This techniques correlate well with invasively measured FFR \[1-4\]. CT-FFR is not an investigational agent, having been approved by FDA in November, 2014. However, more work is necessary to delineate the patient population that could derive maximal benefit from this new technology. While few publications regarding the use of CT-FFR specifically address the cost of diagnostic work-up for obstructive disease, it is clear that the cost structure resulting from changes in diagnostic testing will also change. Deferral or avoidance of cardiac catheterization and nuclear stress testing will likely yield significant reductions in the cost of the diagnostic testing. From 1/1/2009 to 3/31/2015 our team introduced and operated a CCTA Chest Pain triage program for low to intermediate risk patients at Stony Brook University Hospital ED and non-emergency outpatient services, the only tertiary care hospital in Suffolk County. Concurrently, we established a registry to monitor patient outcomes for all patients receiving CCTA at Stony Brook Medicine. Our registry contained nearly 15,000 patient CCTA procedures. Our major registry study established the effectiveness of CCTA as an imaging modality for evaluating Emergency Department chest pain in a cost efficient manner with a false negative rate less than 1% \[5\]. However, our registry reflects the poorer positive predictive values documented by other industry studies \[6-8\]. False positive workup results in the necessity of performing cardiac catheterization on patients at risk for obstructive disease based on assessment with current standard of care (combined screening with CCTA and stress MPI). Reduction in the rate of false positive testing would lead to reduction in risk from invasive procedures and radiation exposure to patients and reduced cost to the health care system. Several medical institutions currently use HeartFlow CT-FFR as standard of care for evaluating obstructive disease. Generally, the standard of care at these institutions is to refer patients who are 30 to 90 percent obstructed by CCTA and who have reduction of flow \<= to 0.8 that is deemed to be medical significant by the attending cardiologist to Invasive FFR. HeartFlow has reported to us confidentially that this routine use of CT-FFR has resulted in a 54% reduction in false positive rate as compared to use of CCTA alone. The purpose of this study is to evaluate the incremental benefit of Fractional Flow Reserve derived from CCTA (FFR-CT) compared invasive FFR as the gold standard for patients with obstructive disease (\> 30% and \< 90% stenosis). This study will also assess the capability of CT-FFR to enhance performance on both negative and positive predictive value for less experienced readers by providing feedback based on CT-FFR evaluation. This will be a prospective observational clinical trial designed to evaluate the incremental benefit of virtual FFR measured from CCTA, compared to invasive FFR and CCTA for the detection of flow-limiting coronary stenosis, as defined by invasive FFR \<0.8 and vessel diameter of \>=2mm. 572 consecutive patients who present to Lenox Hill Hospital Outpatient Clinics for CCTA due to chest pain or stable angina over a ten month period and meeting the study inclusion criteria are eligible for the study (Figure 1). Our team will employ CCTA-appropriateness criteria to ensure proper selection of patients, derived from the Appropriate Use Criteria for Cardiac Computed Tomography published in 2010 and jointly authored by multiple societies including American College of Cardiology Foundation (ACCF), Society for Cardiovascular Computed Tomography (SCCT), and American College of Radiology (ACR) \[10\]. FFR-CT measurements will be performed by a core laboratory in a blinded fashion. All eligible patients will undergo 64-slice or greater multi detector CCTA and CT-FFR measurements. The severity of the stenosis will be determined on site by level III CCTA readers. Patients with obstructive lesions of (30% to 90% stenosis) will be referred for Stress-MPI, per SOC protocol, and CT-FFR. Patients with positive Stress-Myocardial Perfusion Imaging (MPI) and CCTA (50% - 70%%) or positive CCTA (71% to 90%) will be referred for undergo ICA with invasive FFR measurement in accordance to accepted guidelines and established practice standard. They will also received CT-FFR. Those patients with invasively measured FFR\<0.8 and with vessel diameter of \>= 2mm, or those who require revascularizations based on invasively estimated stenosis severity will be considered to have flow-limiting obstructive CAD, while the rest will be considered to have non-flow limiting obstructive CAD (if also \>50% stenosis on ICA). If stenosis severity turns out to be \< 50% after ICA (the gold standard), we will conclude that these patients have non-obstructive CAD. (Figure 1). Patients with 30% to 49% obstructive disease, according to CCTA, will be referred to optimal follow up care only. Any in this group who have positive CT-FFR will return for ICA with invasive FFR measurement, and follow the protocol for those with 50% to 90% obstruction. Defining an event as performance of ICA when no intervention is necessary, we expect to compare event rates for patients treated with CCTA and FFR-CT, using t-tests and a multivariate, risk adjusted 90 day hazard model with 95% confidence interval. Our null hypothesis is that outcomes will not vary regardless of which testing is used to assess obstructive disease. Our alternative hypothesis is that evaluation with FFR-CT as oppose to CTTA will change the event rate. We will also correlate noninvasive and invasive FFR studies. We will assess inter-observer reliability of the two reader cohorts' (\> 10 years experience and less than 10 years experience) readings for CCTA and CT-FFR.. We will also assess the nondiagnostic rate for CT-FFR exams as compared to independent quality ratings of CCTA scans by the scan reader. Scans will be rated as excellent, good, adequate, or non-diagnostic. Non-diagnostic exams will not be sent to CT-FFR. For those sent to CT-FFR we will compare the percentage of non-diagnostic exams to the percentage of non-diagnostic for CT-FFR, and we will also correlate exam results by level of obstruction.

Interventions

DEVICEHeartFLow CT-FFR

Patients receiving CCTA to diagnose stable chest pain or stable angina will receive CT-FFR to estimate rate of flow through the coronary arteries. The rate of flow will be compared to the rate found on Invasive FFR (the gold standard) if the subject receives invasive FFR.

Sponsors

HeartFlow, Inc.
CollaboratorINDUSTRY
Northwell Health
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
PROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

1. Inclusion Criteria: 2. Capable of giving informed consent. 3. Able to cooperate with the technician performing the procedure. 4. Patient must have Body Mass Index (BMI) \<= 50. 5. Patients must have non-ST Elevation Myocardial Infarction (STEMI) Electrocardiogram (EKG) without acute changes. 6. Patients must present to Research Institution with medically necessary appointment for CCTA for the purpose of evaluation of coronary stenosis for the provisional diagnoses of chest pain or angina or angina equivalent. 7. Patients must be able to take nitroglycerin and beta blockers. - 8. Patients must be 18 years of age or older.

Exclusion criteria

1. Patients must not have a history of coronary stenting or coronary artery bypass graft. 2. Patients must not have severe or end stage renal disease as diagnosed as estimated glomerular filtration rate (eGFR)\<50. 3. Patients must not have a BMI\>50. \-

Design outcomes

Primary

MeasureTime frameDescription
Comparison of CCTA Alone to FFR-CT After CCTAUp to 1 year from the study initiation will be required to enroll all study patients and obstain invasive and noninvasive FFR.To evaluate sensitivity, specificity, positive and negative predictive value for FFR-CT after CCTA vs. CCTA alone, using invasive FFR as the gold standard.

Secondary

MeasureTime frameDescription
Inter - Observer Reliability: Assessment of at Least Mild Disease (30% Stenosis or More)Up to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience when assessing cases on which the official reading identified at least mild disease. Mild disease is defined as cases with 30% or more stenosis documented on CCTA reading. CCTA cases that cannot be read are treated as severe.)
Inter - Observer Reliability: Assessment of at Least Moderate Disease (50% Stenosis or More on CCTA)Up to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience when assessing cases on which the official reading is at least moderate (50% stenosis on CCTA. CCTA cases that cannot be read are treated as severe.
Inter-observer Reliability: Assessment of All CasesUp to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience. CCTA results were documented by the official reader, all of whom had less than 9 years experience reading CCTA. Independently the exams were reviewed by a second reader with more than 10 years experience reading CCTA. Due to an operational error, for 5 of the 572 cases that received CCTA, the detailed data was removed from the server before the second read. Therefore these cases were excluded from this analysis.
Return VisitsUp to 15 months will be required to collect 90 day follow up information on all study participants.To identify factors influencing return visits within 90 days for all patients enrolled who received CCTA. While we are not aware of any documented incremental risks for adding FFR-CT to the evaluation process of coronary artery disease, this safety measure was designed to identify and evaluate all unplanned return events to ensure that they were not related to FFR-CT or to flaws in study design or operations.
Return Visits -- Reasons for ReturnUp to 15 months will be required to collect 90 day follow up information on all study participants.To identify factors influencing return visits within 90 days. All patient's who returned to the ED within 90 days of their initial visit were contacted for follow up. All their medical records were reviewed.
Inter - Observer Reliability: Assessment of Severe Disease is Diagnosesed on Official Read (70% or Greater)Up to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience when assessing cases with suspected severe disease on the official reading. (CCTAs that cannot be read are treated as severe).

Participant flow

Recruitment details

From 1/24/2017 to 6/13/2018 patients seen in the Cardiology ambulatory care service for CCTA to be evaluated for the diagnosis of obstructive disease, and who were evaluated as low to intermediate risk for obstructive disease, and who were symptomatic were offered the opportunity to participate in the study.

Pre-assignment details

To participate, patients were required to complete the CCTA, and on exam have no Cardiac stenting or bypasses as determined by medical history provided by the patient and review of CCTA scan.

Participants by arm

ArmCount
1: HeartFlow CT-FFR Arm
All patients who consent will receive HeartFlow CT-FFR and medically acceptable care based on the study protocol, commonly accepted standards of care, and the patients condition. HeartFLow CT-FFR: Patients receiving CCTA to diagnose stable chest pain or stable angina will receive CT-FFR to estimate rate of flow through the coronary arteries. The rate of flow will be compared to the rate found on Invasive FFR (the gold standard) if the subject receives invasive FFR.
569
Total569

Withdrawals & dropouts

PeriodReasonFG000FG001FG002FG003FG004FG005FG006FG007
CCTA DiagnosisCCTA not performed as planned90000000
CCTA DiagnosisWithdrawal by Subject50000000
Optimal Care/Stress Test/ICALost to Follow-up00092200
Optimal Care/Stress Test/ICAReferring MD ordered diagnostic cath000811000
Optimal Care/Stress Test/ICAReferring MD ordered stress test00020700
Optimal Care/Stress Test/ICAReferring MD used only optimal med care0000251900
Optimal Care/Stress Test/ICAWithdrawal by Subject00010000
Optimal Medical Care/FFR-CT DiagnosisFFRCT Nondiagnostic001500000
Optimal Medical Care/FFR-CT DiagnosisScreen Failure: Enrollment Criteria03000000

Baseline characteristics

Characteristic1: HeartFlow CT-FFR Arm
Age, Continuous62.2 years
STANDARD_DEVIATION 12.7
Body Mass Index (BMI)28.23 kg per meters squared
STANDARD_DEVIATION 6.15
Diabetes117 Participants
Ethnicity (NIH/OMB)
Hispanic or Latino
72 Participants
Ethnicity (NIH/OMB)
Not Hispanic or Latino
497 Participants
Ethnicity (NIH/OMB)
Unknown or Not Reported
0 Participants
Hyperlipidemia312 Participants
Hypertension337 Participants
Indication
Angina (Atypical)
284 Participants
Indication
Angina Status None
50 Participants
Indication
Angina Status Unknown
2 Participants
Indication
Angina (Typical)
62 Participants
Indication
Dyspnea
170 Participants
Indication
Noncardiac Chest Pain
1 Participants
Race (NIH/OMB)
American Indian or Alaska Native
0 Participants
Race (NIH/OMB)
Asian
59 Participants
Race (NIH/OMB)
Black or African American
79 Participants
Race (NIH/OMB)
More than one race
136 Participants
Race (NIH/OMB)
Native Hawaiian or Other Pacific Islander
0 Participants
Race (NIH/OMB)
Unknown or Not Reported
0 Participants
Race (NIH/OMB)
White
295 Participants
Sex: Female, Male
Female
289 Participants
Sex: Female, Male
Male
280 Participants
Smoking History
Current Smoker
39 Participants
Smoking History
Former Smoker
157 Participants
Smoking History
Never Smoked
364 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
deaths
Total, all-cause mortality
2 / 1010 / 730 / 398
other
Total, other adverse events
0 / 1012 / 732 / 398
serious
Total, serious adverse events
1 / 1011 / 730 / 398

Outcome results

Primary

Comparison of CCTA Alone to FFR-CT After CCTA

To evaluate sensitivity, specificity, positive and negative predictive value for FFR-CT after CCTA vs. CCTA alone, using invasive FFR as the gold standard.

Time frame: Up to 1 year from the study initiation will be required to enroll all study patients and obstain invasive and noninvasive FFR.

Population: All patients who received FFR-CT and Diagnostic Catheterization.

ArmMeasureGroupValue (NUMBER)
CCTAComparison of CCTA Alone to FFR-CT After CCTASensitivity90.97 percent
CCTAComparison of CCTA Alone to FFR-CT After CCTASpecifcity22.86 percent
CCTAComparison of CCTA Alone to FFR-CT After CCTAPositive Predictive Value64.47 percent
CCTAComparison of CCTA Alone to FFR-CT After CCTANegative Predictive Value60.67 percent
FFR-CT After CCTAComparison of CCTA Alone to FFR-CT After CCTANegative Predictive Value84.62 percent
FFR-CT After CCTAComparison of CCTA Alone to FFR-CT After CCTASensitivity92.73 percent
FFR-CT After CCTAComparison of CCTA Alone to FFR-CT After CCTAPositive Predictive Value80.95 percent
FFR-CT After CCTAComparison of CCTA Alone to FFR-CT After CCTASpecifcity69.71 percent
Comparison: Reference test is positive (test of sensitivity).p-value: 1Chi-squared
Comparison: Reference test is Negativep-value: <0.0047Chi-squared
Secondary

Inter-observer Reliability: Assessment of All Cases

To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience. CCTA results were documented by the official reader, all of whom had less than 9 years experience reading CCTA. Independently the exams were reviewed by a second reader with more than 10 years experience reading CCTA. Due to an operational error, for 5 of the 572 cases that received CCTA, the detailed data was removed from the server before the second read. Therefore these cases were excluded from this analysis.

Time frame: Up to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.

Population: All patients who received CCTA, for whom scans were available for clinical review and review by the study's expert reader.

ArmMeasureValue (MEAN)Dispersion
CCTAInter-observer Reliability: Assessment of All Cases67.72 percent agreementStandard Error 0.0247
Secondary

Inter - Observer Reliability: Assessment of at Least Mild Disease (30% Stenosis or More)

To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience when assessing cases on which the official reading identified at least mild disease. Mild disease is defined as cases with 30% or more stenosis documented on CCTA reading. CCTA cases that cannot be read are treated as severe.)

Time frame: Up to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.

Population: The less experienced reader read 271 of the CCTA scan as having Mild disease -- 30% obstructive disease or more. We compared these reading to the expert reader's assessment for the same cases.

ArmMeasureValue (MEAN)Dispersion
CCTAInter - Observer Reliability: Assessment of at Least Mild Disease (30% Stenosis or More)35.79 percent agreementStandard Error 0.0262
Secondary

Inter - Observer Reliability: Assessment of at Least Moderate Disease (50% Stenosis or More on CCTA)

To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience when assessing cases on which the official reading is at least moderate (50% stenosis on CCTA. CCTA cases that cannot be read are treated as severe.

Time frame: Up to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.

Population: The less experienced reader called moderate stenosis or higher (50% or more stenosis) on 159 cases.

ArmMeasureValue (MEAN)Dispersion
CCTAInter - Observer Reliability: Assessment of at Least Moderate Disease (50% Stenosis or More on CCTA)40.88 percent agreementStandard Error 0.0385
Secondary

Inter - Observer Reliability: Assessment of Severe Disease is Diagnosesed on Official Read (70% or Greater)

To evaluate differences in performance of readers of CCTA and CT-FFR based on years of experience when assessing cases with suspected severe disease on the official reading. (CCTAs that cannot be read are treated as severe).

Time frame: Up to 1 year will be required to obtain all reader evaluations for the study in order to asses inter-observer reliability.

Population: The population of patients expected to have severe of more (70% obstructive disease or more) on CCTA by less experienced reader interpretation.

ArmMeasureValue (MEAN)Dispersion
CCTAInter - Observer Reliability: Assessment of Severe Disease is Diagnosesed on Official Read (70% or Greater)51.81 percent agreementStandard Error 0.0422
Secondary

Return Visits

To identify factors influencing return visits within 90 days for all patients enrolled who received CCTA. While we are not aware of any documented incremental risks for adding FFR-CT to the evaluation process of coronary artery disease, this safety measure was designed to identify and evaluate all unplanned return events to ensure that they were not related to FFR-CT or to flaws in study design or operations.

Time frame: Up to 15 months will be required to collect 90 day follow up information on all study participants.

ArmMeasureCategoryValue (COUNT_OF_PARTICIPANTS)
CCTAReturn VisitsDirect Admit from CCTA4 Participants
CCTAReturn VisitsUrgent/Unplanned return within 90 days11 Participants
CCTAReturn VisitsNo Unplanned/Urgent returns in 90 days557 Participants
Secondary

Return Visits -- Reasons for Return

To identify factors influencing return visits within 90 days. All patient's who returned to the ED within 90 days of their initial visit were contacted for follow up. All their medical records were reviewed.

Time frame: Up to 15 months will be required to collect 90 day follow up information on all study participants.

Population: Overall 15/572 (2.6%) patients returned for emergent visits. All outcomes may be viewed as being consistent with the diagnoses provided with CCTA and FFR-CT.

ArmMeasureCategoryValue (COUNT_OF_PARTICIPANTS)
CCTAReturn Visits -- Reasons for ReturnNonobstructive Disease Went to Cardiac Cath0 Participants
CCTAReturn Visits -- Reasons for ReturnSevere Disease Received Intervention11 Participants
CCTAReturn Visits -- Reasons for ReturnNonobstructive Disease Discharged from ED0 Participants
FFR-CT After CCTAReturn Visits -- Reasons for ReturnNonobstructive Disease Went to Cardiac Cath1 Participants
FFR-CT After CCTAReturn Visits -- Reasons for ReturnSevere Disease Received Intervention0 Participants
FFR-CT After CCTAReturn Visits -- Reasons for ReturnNonobstructive Disease Discharged from ED1 Participants
Referred for Optimla Medical Care After CCTAReturn Visits -- Reasons for ReturnSevere Disease Received Intervention0 Participants
Referred for Optimla Medical Care After CCTAReturn Visits -- Reasons for ReturnNonobstructive Disease Discharged from ED2 Participants
Referred for Optimla Medical Care After CCTAReturn Visits -- Reasons for ReturnNonobstructive Disease Went to Cardiac Cath0 Participants

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026