ARRHYTHMIA UNIT
Controller: Dr. Juan Benezet Mazuecos
Our Unit is responsible for the diagnosis, treatment and monitoring of patients suffering from heart rhythm disorders, offering current, effective and safe treatment for different tachyarrhythmias and bradyarrhythmias. To achieve this, we have medical and nursing personnel accredited at the highest level by both the Spanish Society of Cardiology and the European Society of Cardiology, as well as the technology necessary to offer optimal solutions to our patients.

Our Arrhythmia Unit provides a comprehensive service to our patients, from consultation assessment and clinical follow-up to treatment through the application of interventional techniques and treatments.
Our centers have a Arrhythmia Consultation specific to care for patients with compatible symptoms and/or documented rhythm disorders. In this consultation, an accredited specialist helps the patient understand their pathology and offers them the best alternatives for treatment and follow-up. In addition, they are carried out Device Tracking Inquiries of cardiac stimulation (pacemakers, defibrillators and subcutaneous holter) both in person and with remote monitoring systems.
Our centers have Electrophysiology room for performing invasive procedures for the treatment of certain arrhythmias. These procedures include diagnostic electrophysiological studies, conventional radiofrequency ablations of various tachyarrhythmias, ablation procedures with the use of electroanatomical navigators, and pulmonary vein cryoablation procedures for the treatment of atrial fibrillation. Likewise, our Unit performs implantation of all cardiac stimulation systems (pacemakers, defibrillators and cardiac resynchronization devices).
Our goal is to provide our patients the best treatment and treatment possible, explaining their pathology, showing them the various options and giving them the best recommendations based on scientific evidence and clinical practice guides. Our goal is to offer the best, most effective and safe treatments, and to accompany our patients in the monitoring and/or cure of their pathology.
- Cardiac catheterization. Diagnostic Electrophysiological Study of (Tachycardia)
- Cardiac catheterization. Diagnostic Electrophysiological Study of (Bradycardias)
- Therapeutic Electrophysiological Study (AV Conduction Ablation)
- Diagnostic and Therapeutic Electrophysiological Study (ablation) of supraventricular tachycardias: (Intranodal Tachycardias, Accessory Pathways and Atrial Tachycardias).
- Diagnostic and Therapeutic Electrophysiological Study of (Ventricular Tachycardias)
- Atrial fibrillation ablation using radiofrequency guided by an electroanatomical navigation system
- Atrial fibrillation ablation by cryoablation
- Atrial fibrillation ablation using pulsed field technology
- Definitive Endovenous Pacemaker Placement: VVI. VDD. DDD. Tricameral (MCP-CRT).
- Pacemaker Generator Replacement. Removal/Replacement of Pacemaker Cable.
- Temporary Endovenous Pacemaker Placement.
- Placement of implantable automatic defibrillator (ICD).
- Placement of a three-chamber implantable automatic defibrillator (ICD-CRT).
- Subcutaneous Holter implant.
- Review/interrogation of pacemakers, ICD, CRT, subcutaneous Holter.
- Tilt Table Test (Tilt-Test)
- Electrical cardioversion.
Un electrophysiological study (EEF) It is an invasive cardiology test that aims to diagnose certain heart rhythm disorders through the use of catheters (tachyarrhythmias and bradyarrhythmias) to provide the most appropriate treatment to patients who suffer from them. The electrophysiological study allows us to determine the origin of a tachyarrhythmia or bradyarrhythmia previously documented in an ECG with a view to planning the most appropriate treatment and on other occasions allows us to determine if the symptoms suffered by the patient (palpitations, dizziness, syncope, dyspnea) may be due to tachy or bradyarrhythmias. Therefore, it is indicated in patients with certain documented arrhythmias as well as in patients with symptoms highly suggestive of the presence of these arrhythmias intermittently and that have not been documented in ECG o Holter.
El EEF is done in a electrophysiology room the patient fasting, lying down, conscious although sedated for greater comfort. Applies local anesthesia in the area where the puncture will be carried out (generally the groin) so that it is not painful, and from this point, several catheters (thin, long and flexible cables) are introduced through the local veins or arteries and directed to the heart through control by X-rays. With these catheters, the electrical activity of the heart is recorded from within and we can even stimulate to try to induce the arrhythmias or electrical disorders that we are looking for. It may be necessary to administer some drug during the test to specify the diagnosis of the arrhythmia. During it you may notice palpitations, whether caused by the catheters or by the medication administered, always in a controlled environment and in a reversible manner. Once the diagnosis is made, in most cases the best treatment is applied in the same procedure. The duration of the studies is variable depending on the arrhythmias in question, with the patient having to remain in bed and rest for several hours afterwards.
The EEF are very safe procedures. Most of the time you will only notice slight discomfort in the puncture area, or the appearance of a small bruise on the puncture area that will almost always be reabsorbed spontaneously. The presence of serious complications related Fortunately, the procedure is exceptional (cases of phlebitis, arteriovenous complications,hemorrhage, cardiac perforation, embolisms…). In any case, the personnel involved in these procedures have the necessary experience and training to recognize possible complications early and provide appropriate treatment as soon as possible.
La radiofrequency catheter ablation It consists of generating heat injury in the underlying cardiac tissue. This is a very effective and safe method to damage the cardiac tissue responsible for certain arrhythmias. This technique usually accompanies the performance of electrophysiological studies (EPS) for the treatment of tachyarrhythmias. That is, when a patient is studied for palpitations or tachycardia documented on ECG and an EPS is performed that establishes the diagnosis, ablation is then performed to treat and eliminate these arrhythmias. Radiofrequency ablation allows generating a very localized, controlled and safe burn to injure or eliminate the tissue responsible for arrhythmias. Catheters similar to those used during EEF are used to perform the ablation but with the additional capacity to generate said burns. During the ablation the patient may perceive a sensation of heat or slight chest discomfort, so analgesia or superficial sedation is usually used to avoid patient discomfort. The presence of serious complications related Fortunately, the procedure is exceptional (cases of phlebitis, arteriovenous complications,hemorrhage, cardiac perforation, embolisms…). In any case, the personnel involved in these procedures have the necessary experience and training to recognize possible complications early and provide appropriate treatment as soon as possible.
Radiofrequency ablation seeks the electrical isolation of the pulmonary veins, which are considered the most important sources of triggers that precipitate the crises of this arrhythmia. Until a few years ago, the conventional method consisted of applying point-to-point radiofrequency impacts or burns around the entire perimeter of each of the pulmonary veins, which resulted in a laborious and prolonged procedure until effective isolation of them was achieved.
La cryoablation It is an advanced technique for the treatment of paroxysmal and persistent atrial fibrillation, in which the source of energy applied is cold and not heat, as occurs in the conventional procedure. Although it is true that the approach is the same, the greatest benefit of this technique lies in the fact that the injury to the antrum of each of the veins is carried out by freezing through a balloon that hits them. Thus, in a single application, and in a very quick and effective manner, the isolation of each vein is achieved, which very significantly reduces the time of the procedure and thus its risks. Recent studies have shown that cryoablation is a highly effective (lower rate of arrhythmia recurrence) and safe (fewer complications) technique, compared to the conventional radiofrequency ablation technique that has been traditionally used.
What is pulsed field technology or electroporation?
La pulsed field technology o electroporation Electroporation is a technique used in the ablation of atrial fibrillation (AF) that employs high-intensity electrical pulses to induce changes in the cell membranes of the heart's muscle fibers. These impulses cause the formation of transient pores in the cell membranes, increasing their permeability and allowing the entry of substances that would not normally pass through. This phenomenon can be exploited to selectively destroy the cells or tissues of interest without causing significant damage to the surrounding tissues. In the context of atrial fibrillation, electroporation is used to create precise lesions in the cardiac tissue responsible for the abnormal electrical impulses without damaging adjacent structures such as the esophagus, blood vessels, or nerves.
In atrial fibrillation ablation, as with other available technologies, electroporation is used to isolate the pulmonary veins, i.e., to destroy myocardial cells in the antrum and ostium of these veins where they enter the left atrium. This technique is used as an alternative to traditional ablation, which is usually performed using radiofrequency (heat) or cryoablation (cold).
What has pulsed field ablation technology demonstrated?
Pulsed field ablation technology has proven effective in creating precise and controlled tissue lesions in the heart. Clinical studies have shown that this technique can be a viable alternative to conventional ablation techniques, such as radiofrequency and cryoablation, especially in patients with atrial fibrillation and complex cardiac anatomy or in patients who have failed previous techniques, but also as a first-line ablation technique.
- Ablation effectivenessElectroporation has shown a high success rate in creating tissue lesions in the isolation of pulmonary veins.
- High-quality injuries: Lesions created by electroporation are of high quality and precision, which can result in more effective interruption of abnormal electrical impulses.
- Fewer side effectsStudies have also shown that electroporation causes less damage to surrounding tissues compared to traditional techniques, reducing complications and improving the safety of the procedure.
What advantages does electroporation offer in atrial fibrillation ablation?
- High precision and controlElectroporation allows for extremely precise ablation, as electrical pulses can be applied in a controlled manner to specific areas of the heart. This is especially useful in patients with complex anatomy or structures that are difficult to treat with conventional techniques.
- Reduction of damage to surrounding tissues and lower risk of complicationsUnlike radiofrequency thermal ablations, which use heat to destroy tissue, or cryoablation, which uses cold, electroporation does not rely on heat generation. This reduces the risk of damaging tissues adjacent to the ablation areas, such as blood vessels, nerves, or the esophagus. This also results in less discomfort after the procedure.
- Less invasive and faster procedure: Unlike radiofrequency, which involves longer procedures (3-4 hours) and usually requires general anesthesia, pulsed field ablation, like cryoablation, are quick procedures (1 hour) that can be performed under deep sedation.
- Durability of injuries: Lesions created by electroporation may be more durable compared to radiofrequency, reducing the likelihood of atrial fibrillation recurrence after the ablation procedure by reconnecting the lesions produced.
Future perspectives
Pulsed-field ablation (PFA) or electroporation technology has become a viable alternative and is being widely used worldwide. Given its recent implementation, further studies are still needed to fully understand its impact and directly compare it with traditional ablation methods in terms of long-term efficacy and safety. In summary, electroporation represents a significant advancement and alternative in the treatment of atrial fibrillation, offering a new option to improve the quality of life and prognosis of our patients with AF.
Atrial fibrillation ablation using pulsed field technology at UICAR
In UICAR Arrhythmia Unit We have the most advanced pulsed field ablation systems.
PulseSelect (Medtronic) It is a self-centering, guidewire-mounted, 9-electrode circular catheter that performs pulmonary vein isolation using sequential pulsed-field applications from a fixed-ring configuration, prioritizing simplicity, safety, and reproducibility.. It offers a faster, more versatile, and potentially safer way to perform atrial fibrillation ablation, maintaining comparable efficacy to conventional techniques and reducing the risk of injury to adjacent tissues. Clinical studies supporting its approval showed a very low rate of serious complications (0,7%) and clinical success rates approaching 80% per year in patients with paroxysmal and persistent atrial fibrillation.

Affera Sphere-360 and Sphere-9 (Medtronic) These are two more advanced and versatile pulsed field ablation technologies, designed to offer greater flexibility to the electrophysiologist depending on the type of arrhythmia and the patient's anatomy.
Sphere-360 It is a next-generation, single-shot PFA catheter designed to isolate the pulmonary veins with a single application around the vein. Its flexible mesh design adapts to different anatomies and is integrated with the Affera mapping system. In clinical studies, it demonstrated 88% freedom from arrhythmia recurrence at one year, long-lasting pulmonary vein isolation in 98% of cases, and no adverse events in the group treated with the optimized waveform.

Sphere-9 It is an all-in-one mapping and ablation catheter that allows for mapping, ablation, and results verification without changing catheters. It combines two energy sources: pulsed field (PFA) and radiofrequency (RF), enabling customized treatment based on the specific needs of the procedure. Its 9 mm mesh tip allows for the creation of wide lesions and enables not only pulmonary vein isolation but also more complex ablation lines, particularly in persistent atrial fibrillation. The SPHERE Per-AF study demonstrated an 80% efficacy rate with a 1,4% safety event rate in patients with persistent atrial fibrillation.












