Abstract The rapid advancement of next-generation sequencing (NGS) technology and the decrease in costs for whole-exome sequencing (WES) and whole-genome sequening (WGS), has prompted its clinical application in several fields of medicine. Currently, there are no specific guidelines for the use of NGS in the field of neonatal medicine and in the diagnosis of genetic diseases in critically ill newborn infants. As a consequence, NGS may be underused with reduced diagnostic success rate, or overused, with increased costs for the healthcare system. Most genetic diseases may be already expressed during the neonatal age, but their identification may be complicated by nonspecific presentation, especially in the setting of critical clinical conditi...
Diagnosing acutely unwell infants with a potential genetic diagnosis can be challenging for healthca...
In newborn intensive care units (NICUs), the science and art of prognostication often have life and ...
Newborn screening (NBS) dramatically improves outcomes in severe childhood disorders by treatment be...
none50noThe rapid advancement of next-generation sequencing (NGS) technology and the decrease in cos...
The rapid advancement of next-generation sequencing (NGS) technology and the decrease in costs for w...
Purpose: Several studies have reported diagnostic yields up to 57% for rapid exome or genome sequenc...
Diagnostic genome-wide sequencing (exome or genome sequencing and data analysis for high-penetrance ...
The advent and refinement of sequencing technologies has resulted in a decrease in both the cost and...
AIM: To investigate the diagnostic and service impact of chromosomal microarray and whole exome sequ...
Rapid genome sequencing in critically ill infants is increasingly identified as a crucial test for p...
Purpose With growing evidence that rare single gene disorders present in the neonatal period, there ...
Diagnosing acutely unwell infants with a potential genetic diagnosis can be challenging for healthca...
In newborn intensive care units (NICUs), the science and art of prognostication often have life and ...
Newborn screening (NBS) dramatically improves outcomes in severe childhood disorders by treatment be...
none50noThe rapid advancement of next-generation sequencing (NGS) technology and the decrease in cos...
The rapid advancement of next-generation sequencing (NGS) technology and the decrease in costs for w...
Purpose: Several studies have reported diagnostic yields up to 57% for rapid exome or genome sequenc...
Diagnostic genome-wide sequencing (exome or genome sequencing and data analysis for high-penetrance ...
The advent and refinement of sequencing technologies has resulted in a decrease in both the cost and...
AIM: To investigate the diagnostic and service impact of chromosomal microarray and whole exome sequ...
Rapid genome sequencing in critically ill infants is increasingly identified as a crucial test for p...
Purpose With growing evidence that rare single gene disorders present in the neonatal period, there ...
Diagnosing acutely unwell infants with a potential genetic diagnosis can be challenging for healthca...
In newborn intensive care units (NICUs), the science and art of prognostication often have life and ...
Newborn screening (NBS) dramatically improves outcomes in severe childhood disorders by treatment be...