Barts Heart Centre, Barts Health NHS trust
London, EC1A 7BE, United Kingdom
Location status: Recruiting
Location contact
Shohreh Honarbakhsh, MRCP, BSc, PhD
CONTACT
Shohreh Honarbakhsh, MRCP, BSc, PhD
PRINCIPAL_INVESTIGATOR
NCT Number: NCT05633303
Atrial fibrillation (AF) is the most common arrhythmia with an expected rise in prevalence over the next decade. Catheter ablation is a safe treatment option in eliminating AF however, success rates still remains variable. Existing strategies do not take into account the differences in AF perpetuation mechanisms beyond the pulmonary veins (PVs) due to the underlying substrate. Here, I will investigate the differences in persistent AF mechanisms due to the underlying substrate and utilise these findings to generate AF mechanism specific ablation strategies. I have defined a new metric, rate-dependent conduction velocity (RDCV) slowing that has shown to correlate with sites of re-entry activity in AF. In this study, techniques and methods will be developed to measure RDCV slowing sites. The impact autonomic modulation has on AF mechanisms and CV dynamics will also be assessed. The hypothesis is that a combination of structural, electrical and autonomic remodelling play an important mechanistic role in persistent AF and ablation strategies adapted to target these will result in greater procedural success rate. The study findings have the potential to improve the success rate of catheter ablation in persistent AF thereby improve patient wellbeing and reduce the cost burden of AF treatment.
Interested in participating?
Request Info18 year and older
All sexes
Interventional
Not applicable
London, EC1A 7BE, United Kingdom
Location status: Recruiting
Shohreh Honarbakhsh, MRCP, BSc, PhD
CONTACT
Shohreh Honarbakhsh, MRCP, BSc, PhD
PRINCIPAL_INVESTIGATOR
This study is a single centre prospective cohort study conducted at the Barts Heart Centre, St Bartholomew's Hospital. It will include patients that are undergoing and have provided informed consent for catheter for AF. These patients will be selected from outpatient clinics and referring physicians.
Patients undergoing catheter ablation for persistent AF will be included (<24 months AF duration and no previous left atrial ablation). Patients in whom AF ablation is contraindicated or unable to consent for the procedure will be excluded. All patients included in these studies will have to provide informed consent for study participation.
For all the studies performed all patients will have a bipolar voltage map created in sinus rhythm. If patients are not in sinus rhythm at the start of the procedure, they will undergo DC cardioversion (DCCV) to achieve sinus rhythm. Low voltage zones (LVZs) will be defined as sites with a voltage <0.5mV on bipolar voltage map. If patients have ≥30% of LVZs in the LA body excluding the PVs and mitral valve annulus, they will be classified as patients with underlying LVZs whilst those with a proportion of LVZs of <30% will be defined as those without LVZs. The project study protocol undertaken will be decided based on whether the patient has underlying LVZs or not. Patients will therefore be in sinus rhythm at the start of the procedural protocol.
Patients with underlying LVZs (≥30% of LVZs in the LA body)
Patients without underlying LVZs (<30% of LVZs in the LA body)
d) Hypothesis 6- Study 6- Prospectively targeting GP sites in addition to PV isolation and determine if therapeutically targeting sites of autonomic innervation results in improvement in procedural outcomes in this cohort of patients. Forty patients will undergo prospective ablation of GP sites followed by PV isolation with WACAs. All patients will undergo clinical follow-up at 3, 6, 9 and 12 months, with 48-hour ambulatory Holter monitoring at 6 and 12 months. Clinical success will be defined as freedom from AF/AT lasting >30 seconds off anti-arrhythmic drugs.
Patients with and without underlying LVZs f) Hypothesis 7 Study 7- In both cohorts of patients, with and without LVZs a subgroup of patients undergoing prospective guided ablation as per study ablation strategy will undergo cardiac magnetic resonance imaging (MRI) prior to their ablation. The aim is to ensure 20 patients in each cohort, with a total of 40 patients undergoing cardiac MRI. In patients with LVZs, the aim is to obtain 3D late gadolinium enhancement (LGE) MRI of the LA whilst in patients without LVZs the aim is to evaluate atrial EAT. To achieve this, one of the sequences that will be used is the 3D Dixon-LGE pulse sequence which has shown to allow simultaneous visualisation of LA fibrosis and atrial epicardial adipose tissue (EAT). In the patient cohort with LVZs, the 3D LGE cardiac MRI sequences will be imported into ADAS 3D software (ADAS 3D medical). This will be used to create a 3D shape of the segmented LA with the associated fibrosis. The segmented LA image will be derived through tracing the border of the LA. This 3D shape will be compatible to that obtained using the 3D mapping system. This will be imported into the 3D mapping system and co-registered to the existing bipolar voltage map. This will allow the characteristics of sites on the MRI derived LA map that correlate to RDCV slowing sites tagged on the bipolar voltage LA map created with the 3D mapping system to be made. The aim is to evaluate different MRI sequences and image intensity ratios to effectively evaluate the use of cardiac MRI to identify RDCV slowing sites. GP site mapping is time consuming and relay on additional mapping equipment. Therefore, I will evaluate whether in patients without underlying LVZs, atrial EAT identified on cardiac MRI could predict GP sites and thereby enable the use of a non-invasive modality to identify GP sites and aid in planning the ablation strategy and procedure. The 3D LGE cardiac MRI will also be reviewed to elicit for the presence of scar that has been missed on the bipolar voltage map. This will be used to enhance our understanding of the structural remodelling in these patients and relationship to AF.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Ablation strategy implemented will be dependent on the Arm the patient has been allocated to based on the presence of underlying LVZs.
Time frame: 6 months
RDCV slowing sites can be effectively identified prospectively using pacing protocols and multipolar catheters that are applicable to those routinely used in conventional ablation procedures.
Time frame: 6 months
RDCV slowing sites are mechanistically important in driving AF in patients with underlying LVZs. This will be measured through the impact ablation of RDCV slowing sites has on electrophysiological endpoints. RDCV slowing sites will be ablated and the proportion of these sites that results in a positive ablation response i.e. termination of AF into sinus rhythm or slowing of AF cycle length will be measured.
Time frame: 6 months
Autonomic modulation impacts conduction velocity (CV) measurements in patients with underlying LVZs. This will be measured through the impact autonomic modulation with Isoprenaline has on CV by comparing CVs measurements obtained post autonomic modulation to CVs measurements pre autonomic modulation.
Time frame: 6 months
Autonomic modulation impacts conduction velocity (CV) measurements in patients with underlying LVZs. This will be measured through the impact autonomic modulation by ganglionated plexi stimulation has on CV by comparing CVs measurements obtained post autonomic modulation to CVs measurements pre autonomic modulation.
Time frame: 12 months
GP site ablation and substrate modification guided by RDCV slowing sites in addition to PV isolation impacts freedom from AF and atrial tachycardia (AT) rates during 12 months follow-up in patients with underlying LVZs. This will be measured through the impact this ablation strategy (GP site ablation, substrate modification guided by RDCV slowing sites and PV isolation) has on the number of patients that are free from AF and AT during 12 months follow-up.
Time frame: 6 months
GP sites are mechanistically important in driving AF in patients without underlying LVZs whereby ablation of GP sites will have an impact on electrophysiological endpoints and electrical parameters (spectral analysis parameters and CS electrogram characteristics). This will be measured through the impact ablation of GP sites has on electrophysiological endpoints. GP sites will be ablated and the proportion of these sites that results in a positive ablation response i.e. termination of AF into sinus rhythm or slowing of AF cycle length will be measured.
Time frame: 12 months
GP site ablation in addition to PV isolation results impact freedom from AF and atrial tachycardia (AT) rates during follow-up in patients without underlying LVZs. This will be measured through the impact this ablation strategy (GP site ablation, substrate modification guided by RDCV slowing sites and PV isolation) has on the number of patients that are free from AF and AT during 12 months follow-up.
Time frame: 12 months
Cardiac MRI can be effectively used to identify RDCV slowing sites and GP sites whereby cardiac MRI can be used to pre procedure to target mapping and ablation more efficiently.
Contact information is provided by the study sponsor or research team.
Barts & The London NHS Trust
Other
Developing Dynamic Substrate Targeted Personalised Treatment Strategies in AF.
Acronym: PAS
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
Published trials that share one or more normalized conditions with this study.
NCT06165510
Arrhythmias, Cardiac, Atrial Arrhythmia
London, United Kingdom
View Trial DetailsNCT06402851
Arrhythmias, Cardiac, Atrial Fibrillation
Salvador, Estado de Bahia, Brazil
View Trial DetailsNCT05434650
Arrhythmias, Cardiac, Atrial Arrhythmia
Huntsville, Alabama, United States
View Trial DetailsNCT05456204
Arrhythmias, Cardiac, Atrial Fibrillation
Moscow, Russia
View Trial Details