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RF Power, LSI and Oesophageal Temperature Alerts During AF Ablation (PiLOT-AF Study)

Radiofrequency Power, Lesion Size Index and Oesophageal Temperature Alerts During Atrial Fibrillation Ablation: A Pilot Study

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02619396
Acronym
PiLOT-AF
Enrollment
80
Registered
2015-12-02
Start date
2016-01-31
Completion date
2017-03-11
Last updated
2020-07-08

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

Conditions

Atrial Fibrillation

Keywords

radiofrequency power, lesion size index, esophageal temperature alerts

Brief summary

Atrial fibrillation (AF) is a very common abnormal heart rhythm, triggered by rapid electrical activity originating from the pulmonary veins (PVs) that drain blood from the lungs back to the left atrium (LA). Ablation of the junction between the PVs and the LA, electrically isolating the veins from the heart, is the key to prevent AF. When using radiofrequency energy (RF), transmural lesions are required to achieve permanent pulmonary vein isolation (PVI). New technologies are currently available to predict the ablation lesion depth and to guide the duration of each application. However, deeper lesions mean a higher risk of overheating and damage of adjacent structures such as the esophagus that lies against the back wall of the LA. In order to minimize this risk, the investigators continuously monitor the temperature inside the esophagus during the procedure through a probe placed in the esophagus and they promptly terminate energy delivery in case of any esophageal temperature rises more than 39°C. To date, it is not known if a low power for a longer time is better than a high power for a shorter time when ablating on the LA posterior wall in order to create permanent scars without heating the esophagus. Therefore, the investigators plan to compare the incidence of esophageal temperature alerts and the success of the procedure with four different energy settings during ablation on the LA posterior wall.

Detailed description

The PiLOT-AF study is a prospective single-centre randomized observational study aiming at comparing different radiofrequency energy (RF) settings during atrial fibrillation (AF) ablation on the left atrial (LA) posterior wall, in terms of esophageal heating, acute and long-term procedure success and procedural complications. Patients scheduled for their first RF ablation, because of a history of symptomatic and drug-refractory paroxysmal or persistent AF, will be considered for inclusion in the study. Potential subjects will initially be approached 4-6 weeks before their ablation procedure, in order to give them enough time to consider the information, to ask questions to the investigators, their family doctor or other independent parties to decide whether they wish to participate in the study or not. For those interested in participation, a baseline assessment will be arranged to coincide with their standard pre-admission visit, for informed consent, screening and eligibility assessment and randomization. All AF ablation procedures will be performed in a standard fashion, under general anaesthesia and with continuous esophageal temperature monitoring using a sinusoidal multi-sensor esophageal temperature probe (CIRCAtemp). After LA geometry reconstruction using 3-dimensional electroanatomical mapping EnSite Velocity and a multipolar circular mapping catheter St Jude Medical Optima, the ablation catheter Endosense Tacticath through a deflectable sheath St Medical Agilis will be used for Pulmonary Vein Isolation (PVI). Standardized RF settings will be used during ablation on the LA anterior wall as current practice in our centre. Different RF settings will be used on the LA posterior wall, according to randomization group. Moreover target values will be chosen for Lesion Size Index (LSI), a parameter useful to predict the lesion depth, during ablation on LA posterior wall. The duration of RF delivery on the LA posterior wall will be dictated by achievement of the target LSI or esophageal temperature rise \> 39◦C during ablation. PVI will be achieved and confirmed after 30 minutes waiting time. In case of acute PV reconnection, ablation at sites of breakthrough signals will be performed in order to achieve durable PVI. The occurrence of acute PV reconnection (PVR) with sites of breakthrough signals on the LA posterior wall will be recorded for each procedure. The total procedure and RF ablation times will be also collected. After the ablation, before discharge the symptoms status and heart rhythm will be assessed and the patient will be instructed to commence a symptoms diary. Telephone follow-ups will be then performed at 3 and 6 months to assess current symptom status. Standard care follow-up Arrhythmia Clinic visits will be also performed 3-4 months after the ablation procedure. Ad hoc visits and/or additional investigations as prolonged electrocardiogram (ECG) monitoring will also take place, dictated by arrhythmia symptoms and assessment for potential adverse events related to the procedure, in accordance with standard practice. The end of the study for each patient will be the date of the 6 months telephone follow-up.

Interventions

PROCEDURECombination 1 of radiofrequency (RF) power and Lesion Size Index (LSI) on left atrial (LA) posterior wall

20 W RF power and target LSI = 4 on LA posterior wall

PROCEDURECombination 2 of radiofrequency (RF) power and Lesion Size Index (LSI) on left atrial (LA) posterior wall

40 W RF power and target LSI = 4 on LA posterior wall

PROCEDURECombination 3 of radiofrequency (RF) power and Lesion Size Index (LSI) on left atrial (LA) posterior wall

20 W RF power and target LSI = 5 on LA posterior wall

PROCEDURECombination 4 of radiofrequency (RF) power and Lesion Size Index (LSI) on left atrial (LA) posterior wall

40 W RF power and target LSI = 5 on LA posterior wall

Sponsors

Oxford University Hospitals NHS Trust
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 80 Years
Healthy volunteers
No

Inclusion criteria

* male or female, aged 18 to 80 years; * willing and able to give informed consent for participation in the study; * history of symptomatic and drug-refractory atrial fibrillation; * planned atrial fibrillation (AF) ablation on a clinical basis.

Exclusion criteria

* previous AF ablation; * pregnancy, trying for a baby or breast feeding; * oesophageal obstruction (mass, stricture), diverticulum or varices, tracheo-oesophageal fistula or any other oesophageal conditions prohibiting the use of oesophageal temperature probe for continuous luminal temperature monitoring; * any other significant disease or disorder which, in the opinion of the investigator, may either put the participants at risk because of participation in the study, or may influence the result of the study, or the participant's ability to participate in the study.

Design outcomes

Primary

MeasureTime frameDescription
Oesophageal Temperature Alerts Per Patient1 dayNumber of oesophageal temperature alerts per patient
Rate of Oesophageal Temperature Alerts During Radiofrequency Energy (RF) Ablation on the Left Atrial (LA) Posterior Wall1 dayNumber of patients with luminal oesophageal temperature rises \> 39◦C during radiofrequency (RF) ablation on the left atrial (LA) posterior wall

Secondary

MeasureTime frameDescription
Rate of Acute Pulmonary Vein Reconnection (PVR)1 dayNumber of pulmonary veins acutely reconnected after catheter ablation and isolation
Total Procedure Time1 dayTotal duration of the procedure
Freedom From Atrial Fibrillation6 months after the procedureAbsence of symptoms suggestive of atrial fibrillation and no documentation of atrial fibrillation during the follow-up period
Esophageal Symptoms After the Atrial Fibrillation (AF) Ablation6 months after the procedureDifficult or painful swallowing, heartburn, acid reflux, sore throat, hoarseness, cough, nausea, vomiting, non-cardiac chest pain
Total Radiofrequency Energy (RF) Time for Pulmonary Vein Isolation (PVI)1 dayTotal duration of radiofrequency energy required to achieve electrical isolation of the pulmonary veins
Rate of First-pass Pulmonary Vein Isolation (PVI)1 dayRate of Pulmonary Veins (PVs) isolated after completion of first Pulmonary Vein Encirclement

Other

MeasureTime frameDescription
Procedural Complications1 dayPericardial effusion, transient ischemic attack/stroke, phrenic nerve injury, pulmonary vein stenosis, open-heart surgery, death

Countries

United Kingdom

Participant flow

Participants by arm

ArmCount
Group 20 W / LSI 4
Patients elected to AF ablation and randomized to Combination 1 of RF power and Lesion Size Index (LSI) on LA posterior wall: 20 W RF power and target LSI = 4 on LA posterior wall
20
Group 40 W / LSI 4
Patients elected to AF ablation and randomized to Combination 2 of RF power and Lesion Size Index (LSI) on LA posterior wall: 40 W RF power and target LSI = 4 on LA posterior wall
20
Group 20 W / LSI 5
Patients elected to AF ablation and randomized to Combination 3 of RF power and Lesion Size Index (LSI) on LA posterior wall: 20 W RF power and target LSI = 5 on LA posterior wall
20
Group 40 W / LSI 5
Patients elected to AF ablation and randomized to Combination 4 of RF power and Lesion Size Index (LSI) on LA posterior wall: 40 W RF power and target LSI = 5 on LA posterior wall
20
Total80

Baseline characteristics

CharacteristicTotalGroup 40 W / LSI 4Group 20 W / LSI 5Group 20 W / LSI 4Group 40 W / LSI 5
Age, Continuous59.0 years
STANDARD_DEVIATION 9.6
60.1 years
STANDARD_DEVIATION 9.4
55.7 years
STANDARD_DEVIATION 10
58.9 years
STANDARD_DEVIATION 9.2
61.3 years
STANDARD_DEVIATION 9.6
Atrial fibrillation (AF) history duration (months)24 months27 months20 months24 months24 months
Body Mass Index (BMI)29.2 BMI unit = kg/m^2
STANDARD_DEVIATION 6.3
27.3 BMI unit = kg/m^2
STANDARD_DEVIATION 5
28.2 BMI unit = kg/m^2
STANDARD_DEVIATION 4.85
30.8 BMI unit = kg/m^2
STANDARD_DEVIATION 4.6
28.8 BMI unit = kg/m^2
STANDARD_DEVIATION 4.9
Left atrial (LA) size42.8 diameter (mm)
STANDARD_DEVIATION 7.4
41.4 diameter (mm)
STANDARD_DEVIATION 6.5
42.4 diameter (mm)
STANDARD_DEVIATION 7.7
43 diameter (mm)
STANDARD_DEVIATION 6
43.7 diameter (mm)
STANDARD_DEVIATION 9.3
Left ventricular (LV) function59.4 LVEF (%)
STANDARD_DEVIATION 9.2
60 LVEF (%)
STANDARD_DEVIATION 9.2
60 LVEF (%)
STANDARD_DEVIATION 10.2
60 LVEF (%)
STANDARD_DEVIATION 11.5
57.9 LVEF (%)
STANDARD_DEVIATION 6.4
Paroxysmal atrial fibrillation (AF)31 Participants8 Participants6 Participants9 Participants8 Participants
Race and Ethnicity Not Collected0 Participants
Region of Enrollment
United Kingdom
80 Participants20 Participants20 Participants20 Participants20 Participants
Sex: Female, Male
Female
21 Participants8 Participants6 Participants1 Participants6 Participants
Sex: Female, Male
Male
59 Participants12 Participants14 Participants19 Participants14 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
EG002
affected / at risk
EG003
affected / at risk
deaths
Total, all-cause mortality
0 / 200 / 200 / 200 / 20
other
Total, other adverse events
0 / 200 / 200 / 200 / 20
serious
Total, serious adverse events
0 / 201 / 200 / 201 / 20

Outcome results

Primary

Oesophageal Temperature Alerts Per Patient

Number of oesophageal temperature alerts per patient

Time frame: 1 day

ArmMeasureValue (MEDIAN)
Group 20 W / LSI 4Oesophageal Temperature Alerts Per Patient4 oesophageal temperature alerts
Group 40 W / LSI 4Oesophageal Temperature Alerts Per Patient4 oesophageal temperature alerts
Group 20 W / LSI 5Oesophageal Temperature Alerts Per Patient7 oesophageal temperature alerts
Group 40 W / LSI 5Oesophageal Temperature Alerts Per Patient4 oesophageal temperature alerts
Primary

Rate of Oesophageal Temperature Alerts During Radiofrequency Energy (RF) Ablation on the Left Atrial (LA) Posterior Wall

Number of patients with luminal oesophageal temperature rises \> 39◦C during radiofrequency (RF) ablation on the left atrial (LA) posterior wall

Time frame: 1 day

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Group 20 W / LSI 4Rate of Oesophageal Temperature Alerts During Radiofrequency Energy (RF) Ablation on the Left Atrial (LA) Posterior Wall18 Participants
Group 40 W / LSI 4Rate of Oesophageal Temperature Alerts During Radiofrequency Energy (RF) Ablation on the Left Atrial (LA) Posterior Wall18 Participants
Group 20 W / LSI 5Rate of Oesophageal Temperature Alerts During Radiofrequency Energy (RF) Ablation on the Left Atrial (LA) Posterior Wall19 Participants
Group 40 W / LSI 5Rate of Oesophageal Temperature Alerts During Radiofrequency Energy (RF) Ablation on the Left Atrial (LA) Posterior Wall19 Participants
Secondary

Esophageal Symptoms After the Atrial Fibrillation (AF) Ablation

Difficult or painful swallowing, heartburn, acid reflux, sore throat, hoarseness, cough, nausea, vomiting, non-cardiac chest pain

Time frame: 6 months after the procedure

Population: Patients per group

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Group 20 W / LSI 4Esophageal Symptoms After the Atrial Fibrillation (AF) Ablation0 Participants
Group 40 W / LSI 4Esophageal Symptoms After the Atrial Fibrillation (AF) Ablation0 Participants
Group 20 W / LSI 5Esophageal Symptoms After the Atrial Fibrillation (AF) Ablation0 Participants
Group 40 W / LSI 5Esophageal Symptoms After the Atrial Fibrillation (AF) Ablation0 Participants
Secondary

Freedom From Atrial Fibrillation

Absence of symptoms suggestive of atrial fibrillation and no documentation of atrial fibrillation during the follow-up period

Time frame: 6 months after the procedure

Population: Patients per group

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Group 20 W / LSI 4Freedom From Atrial Fibrillation8 Participants
Group 40 W / LSI 4Freedom From Atrial Fibrillation3 Participants
Group 20 W / LSI 5Freedom From Atrial Fibrillation7 Participants
Group 40 W / LSI 5Freedom From Atrial Fibrillation2 Participants
Secondary

Rate of Acute Pulmonary Vein Reconnection (PVR)

Number of pulmonary veins acutely reconnected after catheter ablation and isolation

Time frame: 1 day

Population: 80 pulmonary veins in each group (4 veins per patient, 20 patients)

ArmMeasureValue (NUMBER)
Group 20 W / LSI 4Rate of Acute Pulmonary Vein Reconnection (PVR)5 pulmonary veins
Group 40 W / LSI 4Rate of Acute Pulmonary Vein Reconnection (PVR)10 pulmonary veins
Group 20 W / LSI 5Rate of Acute Pulmonary Vein Reconnection (PVR)17 pulmonary veins
Group 40 W / LSI 5Rate of Acute Pulmonary Vein Reconnection (PVR)5 pulmonary veins
Secondary

Rate of First-pass Pulmonary Vein Isolation (PVI)

Rate of Pulmonary Veins (PVs) isolated after completion of first Pulmonary Vein Encirclement

Time frame: 1 day

Population: 80 pulmonary veins in each group (4 veins per patient, 20 patients)

ArmMeasureValue (NUMBER)
Group 20 W / LSI 4Rate of First-pass Pulmonary Vein Isolation (PVI)59 pulmonary veins
Group 40 W / LSI 4Rate of First-pass Pulmonary Vein Isolation (PVI)59 pulmonary veins
Group 20 W / LSI 5Rate of First-pass Pulmonary Vein Isolation (PVI)38 pulmonary veins
Group 40 W / LSI 5Rate of First-pass Pulmonary Vein Isolation (PVI)59 pulmonary veins
Secondary

Total Procedure Time

Total duration of the procedure

Time frame: 1 day

ArmMeasureValue (MEDIAN)
Group 20 W / LSI 4Total Procedure Time180 minutes
Group 40 W / LSI 4Total Procedure Time165 minutes
Group 20 W / LSI 5Total Procedure Time180 minutes
Group 40 W / LSI 5Total Procedure Time165 minutes
Secondary

Total Radiofrequency Energy (RF) Time for Pulmonary Vein Isolation (PVI)

Total duration of radiofrequency energy required to achieve electrical isolation of the pulmonary veins

Time frame: 1 day

Population: Patients/ablation procedures per group

ArmMeasureValue (MEDIAN)
Group 20 W / LSI 4Total Radiofrequency Energy (RF) Time for Pulmonary Vein Isolation (PVI)28.4 minutes
Group 40 W / LSI 4Total Radiofrequency Energy (RF) Time for Pulmonary Vein Isolation (PVI)23.8 minutes
Group 20 W / LSI 5Total Radiofrequency Energy (RF) Time for Pulmonary Vein Isolation (PVI)38 minutes
Group 40 W / LSI 5Total Radiofrequency Energy (RF) Time for Pulmonary Vein Isolation (PVI)22 minutes
Other Pre-specified

Procedural Complications

Pericardial effusion, transient ischemic attack/stroke, phrenic nerve injury, pulmonary vein stenosis, open-heart surgery, death

Time frame: 1 day

ArmMeasureValue (COUNT_OF_PARTICIPANTS)
Group 20 W / LSI 4Procedural Complications0 Participants
Group 40 W / LSI 4Procedural Complications1 Participants
Group 20 W / LSI 5Procedural Complications0 Participants
Group 40 W / LSI 5Procedural Complications1 Participants

Source: ClinicalTrials.gov · Data processed: Feb 17, 2026