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Septal scar and ventricular enlargement are candidate risk indicators for left bundle branch area pacingFactors Influencing Success in Heart Failure Pacing Procedures

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Key Takeaway
Note that septal scar is a marker of mechanical difficulty, but no clinically validated thresholds are available.

This systematic review synthesized 90 analytic full-text reports to identify preprocedural determinants of success in patients undergoing left bundle branch area pacing (LBBAP). The review focused on factors such as capture verification, mechanical deployment, and indication-specific electrical correction. The authors identified left ventricular enlargement, nonclassical conduction phenotypes, and septal scar as candidate risk indicators; however, no clinically validated threshold was identified for these markers.

Regarding mechanical difficulty, septal scar was identified as the most anatomically direct preprocedural marker of mechanical deployment difficulty. In 2 observational CMR cohorts, scar location and burden were linked to the intended lead path. Regarding prediction models, only 1 multivariable prediction model was identified, and it lacked external validation.

The authors note several limitations, including the absence of clinically validated thresholds for candidate risk indicators and the lack of external validation for the single identified prediction model. Furthermore, acute procedural outcomes were not directly comparable due to varying definitions. Clinical application is currently limited as routine CMR screening is unsupported, though confirmed capture may serve as a preferred mechanistic anchor endpoint for studies targeting successful left conduction-system recruitment.

How this fits prior evidence

This systematic review addresses a gap in identifying preprocedural markers for left bundle branch area pacing success. While prior coverage noted that baroreflex activation therapy ranks highest for LVEF and quality of life in HFrEF, this review focuses on the technical and anatomical predictors of successful LBBAP. It identifies septal scar as a marker of mechanical difficulty but notes that no clinically validated thresholds are currently available.

Researchers reviewed 90 reports to identify factors that predict success in a specific heart procedure called left bundle branch area pacing (LBBAP). This procedure is used for patients with heart failure. The review looked at how certain heart conditions might make the procedure easier or harder to perform.

One main finding was that septal scars are a direct indicator of how difficult it might be to place the device correctly. Other factors like heart enlargement and specific electrical patterns were also noted as potential risk indicators. However, the study did not find specific, proven numbers or thresholds to define exactly when these risks become a problem.

Because the data is from a review of different reports, the results are not yet ready to change standard medical practice. The study also noted that the only prediction model available has not been tested outside of its original group. Patients and doctors should view these findings as early indicators rather than a new standard of care.

What this means for you:
Septal scars are a known marker for mechanical difficulty in heart pacing, but specific risk thresholds are not yet established.

Common questions

What makes a heart pacing procedure more difficult?

The study found that septal scars are the most direct anatomical marker of mechanical difficulty during the procedure. Other factors like left ventricular enlargement and nonclassical conduction phenotypes were also identified as potential risk indicators, though specific clinical thresholds for these risks were not established.

Are there specific tools to predict if the procedure will work?

Only one multivariable prediction model was identified in the review of 90 reports. However, this specific model has not been externally validated, meaning it has not been tested in different settings to confirm its accuracy for all patients.

Is routine heart imaging required before the procedure?

The study notes that routine CMR screening is not currently supported as a standard requirement. While certain markers like septal scars are known to impact procedure difficulty, there are currently no clinically validated thresholds to guide routine screening.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedOct 2026
View Original Abstract ↓
BackgroundLeft bundle branch area pacing (LBBAP) achieves more physiological ventricular activation by advancing the lead deep into the interventricular septum and recruiting the left conduction system. Although alternative pacing is usually available when LBBAP is unsuccessful, difficult cases may undergo repeated nonproductive septal deployments before crossover, with longer procedure and fluoroscopy times and greater myocardial injury. Preprocedural prediction may therefore improve implantation and backup planning and reduce unnecessary procedural burden.MethodsPubMed and Embase were searched from inception through July 16, 2026. Two reviewers independently screened the literature. Ninety analytic full-text reports were included; preprocedural determinants formed the primary review question, while later-stage evidence was retained to contextualize endpoint definitions and clinical translation.ResultsAmong 90 analytic full-text reports, evidence was concentrated on capture verification, whereas only 10 evaluated preprocedural determinants. Recurrent candidate signals included left ventricular enlargement, nonclassical conduction phenotypes, and septal scar; no clinically validated threshold was identified. Septal scar was the most anatomically direct preprocedural marker of mechanical deployment difficulty, with scar location and burden linked to the intended lead path in two observational CMR cohorts. Only one multivariable prediction model was identified and it lacked external validation. Acute procedural outcomes varied by endpoint definition and clinical indication and were not directly comparable.ConclusionLeft ventricular enlargement, nonclassical conduction phenotypes, and septal scar may serve as candidate risk indicators for LBBAP procedural difficulty, although no clinically validated thresholds are currently available. When CMR is already available or clinically indicated, septal scar distribution may add information to substrate assessment and estimation of mechanical difficulty; whether dedicated CMR acquisition and CMR-informed planning improve implantation efficiency or outcomes remains untested. Routine CMR screening is unsupported. For preprocedural studies specifically targeting successful left conduction-system recruitment, confirmed capture may serve as a preferred mechanistic anchor endpoint. Mechanical deployment, indication-specific electrical correction, procedural complexity, crossover, and long-term benefit should be reported separately. Future models should incorporate operator and implant-system factors and demonstrate calibration, external validation, and clinical impact.Systematic Review Registrationhttps://www.crd.york.ac.uk/PROSPERO/view/CRD420261452030, PROSPERO CRD420261452030.
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