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Dual-chamber pacing from a single leadless device: Preclinical implant and retrieval feasibility study.

Journal articles  - Journal Article
Piccini, JP; Hayden, K; Mattson, AR; Hilpisch, K; Wika, K; Soejima, K
Published in: Heart Rhythm
April 29, 2026

BACKGROUND: Sequential atrioventricular pacing can be accomplished with separate atrial and ventricular devices. Integration of atrial and ventricular pacing within a single leadless device represents a novel approach to dual-chamber pacing (DDD). OBJECTIVE: This study aimed to demonstrate the feasibility of single-device, leadless DDD in an ovine model by assessing implant safety, chronic electrical performance, and chronic device retrieval. METHODS: 12 sheep were implanted with a leadless DDD pacemaker in the triangle of Koch (TOK) via a jugular venous approach. Chronic electrical performance through 6 months was assessed using periodic cardiac monitoring. At 6 months, half of the devices were retrieved using a custom retrieval system, followed by attempted reimplantation of a new leadless DDD device in the TOK. RESULTS: Device implantation was successful in all 12 sheep, with no major complications through 6 months. At 6 months, the mean capture threshold was 0.6 ± 0.2 V at 0.24 ms at 402 ± 80 Ω for atrial pacing and 1.2 ± 0.2 V at 0.24 ms at 531 ± 258 Ω for ventricular pacing. Average P-wave and R-wave amplitudes were 2.2 ± 1.0 mV and 4.9 ± 3.7 mV, respectively. All 6 leadless pacemakers were successfully retrieved without complication (mean retrieval time 20 ± 3 minutes). All 6 animals were reimplanted with a new device in the TOK, with 5 of 6 achieving dual-chamber capture on the first attempt. CONCLUSION: This study demonstrates the proof of concept and feasibility of fully leadless DDD via a single device implanted in the TOK, including chronic pacing efficacy and successful retrieval through 6 months.

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Published In

Heart Rhythm

DOI

EISSN

1556-3871

Publication Date

April 29, 2026

Location

United States

Related Subject Headings

  • Cardiovascular System & Hematology
  • 3201 Cardiovascular medicine and haematology
 

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Piccini, J. P., Hayden, K., Mattson, A. R., Hilpisch, K., Wika, K., & Soejima, K. (2026). Dual-chamber pacing from a single leadless device: Preclinical implant and retrieval feasibility study. Heart Rhythm. https://doi.org/10.1016/j.hrthm.2026.04.039
Piccini, Jonathan P., Kaileigh Hayden, Alexander R. Mattson, Kathryn Hilpisch, Kent Wika, and Kyoko Soejima. “Dual-chamber pacing from a single leadless device: Preclinical implant and retrieval feasibility study.Heart Rhythm, April 29, 2026. https://doi.org/10.1016/j.hrthm.2026.04.039.
Piccini JP, Hayden K, Mattson AR, Hilpisch K, Wika K, Soejima K. Dual-chamber pacing from a single leadless device: Preclinical implant and retrieval feasibility study. Heart Rhythm. 2026 Apr 29;
Piccini, Jonathan P., et al. “Dual-chamber pacing from a single leadless device: Preclinical implant and retrieval feasibility study.Heart Rhythm, Apr. 2026. Pubmed, doi:10.1016/j.hrthm.2026.04.039.
Piccini JP, Hayden K, Mattson AR, Hilpisch K, Wika K, Soejima K. Dual-chamber pacing from a single leadless device: Preclinical implant and retrieval feasibility study. Heart Rhythm. 2026 Apr 29;
Journal cover image

Published In

Heart Rhythm

DOI

EISSN

1556-3871

Publication Date

April 29, 2026

Location

United States

Related Subject Headings

  • Cardiovascular System & Hematology
  • 3201 Cardiovascular medicine and haematology