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April 19, 2026Animals0 citationsOpen Access

Early Detection and Long-Term Monitoring as a Strategy for African Swine Fever Outbreak Control and A Comparative Study on the Reproductive Performance of Convalescent and Naïve Sows in a Commercial Farm in Thailand

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TWThanut WathirunwongJJJatesada JiwakanonKDKlaus Depner

Key Points

  • To assess long-term reproductive performance of convalescent sows compared to naïve sows and evaluate passive surveillance effectiveness.
  • Evaluated reproductive performance of convalescent and naïve sows under co-habitation conditions.
  • Used passive surveillance and strict biosecurity measures to prevent viral transmission.
  • Monitored two parities for reproductive performance comparisons.
  • Convalescent sows showed reproductive performance comparable to naïve cohorts across two parities.
  • No detectable viral transmission occurred between convalescent and naïve sows during co-habitation.
  • Strict biosecurity and rapid response reduced transmission risks of African swine fever virus.

Abstract

African swine fever (ASF), caused by African swine fever virus (ASFV), is a highly destructive transboundary disease in domestic pigs. The circulating virus in this study belonged to ASFV genotype II, commonly associated with high virulence. In endemic regions such as Thailand, limited vaccine availability and shortages of naïve breeding stock necessitate reliance on early detection, surveillance, and the retention of convalescent sows, thereby raising concerns regarding viral persistence and reproductive performance. This study evaluated the long-term reproductive performance of convalescent sows compared with naïve cohorts under co-habitation conditions, while assessing the efficacy of passive surveillance and strict biosecurity in preventing viral transmission from both internal and external sources. Convalescent sows showed reproductive performance comparable to naïve cohorts across two parities. Long-term co-habitation with naïve sentinel pigs was not associated with detectable viral transmission, although low-level viral persistence or intermittent shedding cannot be excluded. From a disease control perspective, the transition from delayed detection to enhanced passive surveillance facilitated early clinical recognition and targeted removal (“tooth extraction”) of infected animals, effectively limiting intra-herd transmission without full depopulation. Importantly, irrespective of the uncertain carrier status, strict biosecurity and rapid response protocols appeared effective in mitigating both external introduction and within-farm transmission of ASFV. These findings suggest that, under appropriate management and biosecurity conditions, convalescent sows may be reintegrated into production systems with caution.

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Cite This Study

Wathirunwong et al. (2026) studied this question.

synapsesocial.com/papers/69e473bd010ef96374d8f885https://doi.org/10.3390/ani16081235
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Long‐term follow‐up of convalescent pigs and their offspring after an outbreak of acute African swine fever in Vietnam2021 · 15 citations
  2. 2Duration of immunity following infection with moderately virulent ASFV2026
  3. 3Elimination of ASFV via Precise Culling in a Large-Scale Breeding Herd in China: A Field Experience2025 · 5 citations
  4. 4No evidence for long-term carrier status of pigs after African swine fever virus infection2018 · 83 citations
  5. 5Duration of immunity following infection with moderately virulent ASFV2025 · 2 citations