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Updated: Jun 2, 2026

Real-Time Cardiac Mapping with a Noninvasive Imageless Electrocardiographic Imaging System
Published on: April 11, 2025
Electrovectorcardiographic diagnosis of left septal fascicular block: anatomic and clinical considerations
Andrés Ricardo Pérez Riera1, Celso Ferreira, Celso Ferreira Filho
1Cardiology Discipline, ABC Foundation, Santo André, São Paulo, Brazil. riera@uol.com.br
Insights
The left bundle branch is trifascicular, not bifascicular. This review supports recognizing left septal fascicle block (LSFB) using ECG/VCG, distinguishing it from other conditions causing anterior QRS forces.
Area of Science:
- Cardiology
- Electrophysiology
- Anatomy
Background:
- The left bundle branch is increasingly recognized as a trifascicular system, comprising anterior, posterior, and septal fascicles.
- Classic terminology like 'hemiblock' may be outdated given this complex anatomy.
- Conduction defects in the left septal fascicle (LSFB) remain controversial despite evidence.
Purpose of the Study:
- To review evidence supporting a trifascicular left Hisian system.
- To aid in the electrocardiographic (ECG) and vectorcardiographic (VCG) recognition of LSFB.
- To differentiate LSFB from other conditions causing anterior QRS forces.
Main Methods:
- Review of anatomical, histological, pathological, and electrophysiological studies.
- Analysis of electrocardiographic and vectorcardiographic criteria for fascicular blocks.
- Comparison of LSFB ECG/VCG findings with differential diagnoses.
Main Results:
- Evidence supports a trifascicular structure of the left His system.
- Prominent anterior QRS forces in the horizontal plane are the hallmark of LSFB.
- Distinguishing LSFB from conditions like ventricular enlargement or myocardial infarction is crucial.
Conclusions:
- The left His system is indeed trifascicular.
- ECG/VCG can help diagnose LSFB, particularly when prominent anterior QRS forces are observed.
- Updated terminology and diagnostic criteria are needed for LSFB.
Abstract:
Several publications considering anatomical, histological, pathological, electrocardiographic, vectorcardiographic, and electrophysiologic studies have shown that the left bundle branch splits into three fascicles or in a "fan-like interconnected network" in the vast majority of human hearts. The left His system is trifascicular with a left anterior, a left posterior, and a left septal fascicle (LSF). Consequently, the classic term "hemiblock," to describe the block of one of the fascicles, established several decades ago by the Rosembaum's school, should be updated. Electrovectorcardiographic changes resulting from conduction abnormalities of the left anterior and left posterior fascicles are commonly diagnosed, mainly by their changes in the frontal plane. However, the existence of conduction defects of the LSF remains controversial. The ECG/VCG hallmark of LSF block is prominent anterior QRS forces (PAF) on the horizontal plane. This ECG/VCG phenomena should be distinguished from other conditions that also produce anterior QRS shift in the HP as: normal variants, right ventricular enlargement, misplaced precordial leads, lateral myocardial infarction, right bundle branch block, Wolff-Parkinson-White, obstructive and nonobstructive forms of hypertrophic cardiomyopahty, diastolic left ventricular enlargement, endomiocardial fibrosis, Duchenne muscular dystrophy, and dextroposition. The two highly frequent etiologies of LSFB are ischemia (coronary artery disease (CAD) with critical proximal obstruction of the left anterior descending coronary artery) and, in Latin America, Chagas' cardiomyopathy. The aims of this review are to revise the evidence of the existence of a trifascicular left Hissian system and to help in the ECG/VCG recognition of the LSFB.
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