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Sudden Unexpected Death in Fetal Life Through Early Childhood
Richard D Goldstein1, Hannah C Kinney2, Marian Willinger3
1Department of Psychosocial Oncology and Palliative Care, Dana-Farber Cancer Institute, Department of Medicine, and richard_goldstein@dfci.harvard.edu.
Insights
Sudden unexpected death in early life, including SIDS, may share biological origins. Research is advancing to understand vulnerabilities and triggers, aiming for prevention and consistent classification.
Area of Science:
- Perinatology and Child Health
- Pathogenesis of Sudden Unexpected Death
- Forensic Pathology and Pediatric Research
Background:
- Workshop convened to explore a continuum of sudden death from fetal life through childhood.
- Addressed common biological origins and pathways in unexplained infant and child deaths.
- Highlighted challenges in Sudden Infant Death Syndrome (SIDS) classification and forensic use.
Framework:
- Explored current knowledge on intrinsic vulnerabilities and environmental triggers.
- Encouraged novel approaches like 'omics' and new technologies for accelerated research.
- Synthesized findings from epidemiologic, neural, cardiac, metabolic, genetic, and physiologic studies.
Implementation:
- Identified commonalities among unexplained stillbirth, SIDS, and sudden unexplained childhood death.
- Emphasized inconsistencies in sudden unexpected death investigations and death certification practices.
- Noted lack of consensus on SIDS as a cause of death determination.
Implications:
- Called for improved standardization in death investigations and certification.
- Stressed the need for a unified understanding and classification of SIDS.
- Identified key clinical, forensic, and scientific areas for future research to prevent early life sudden deaths.
Abstract:
In March 2015, the Eunice Kennedy Shriver National Institute of Child Health and Human Development held a workshop entitled "Sudden Unexpected Death in Fetal Life Through Early Childhood: New Opportunities." Its objective was to advance efforts to understand and ultimately prevent sudden deaths in early life, by considering their pathogenesis as a potential continuum with some commonalities in biological origins or pathways. A second objective of this meeting was to highlight current issues surrounding the classification of sudden infant death syndrome (SIDS), and the implications of variations in the use of the term "SIDS" in forensic practice, and pediatric care and research. The proceedings reflected the most current knowledge and understanding of the origins and biology of vulnerability to sudden unexpected death, and its environmental triggers. Participants were encouraged to consider the application of new technologies and "omics" approaches to accelerate research. The major advances in delineating the intrinsic vulnerabilities to sudden death in early life have come from epidemiologic, neural, cardiac, metabolic, genetic, and physiologic research, with some commonalities among cases of unexplained stillbirth, SIDS, and sudden unexplained death in childhood observed. It was emphasized that investigations of sudden unexpected death are inconsistent, varying by jurisdiction, as are the education, certification practices, and experience of death certifiers. In addition, there is no practical consensus on the use of "SIDS" as a determination in cause of death. Major clinical, forensic, and scientific areas are identified for future research.
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