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Prenatal diagnosis of bone dysplasias. | LitMetric

AI Article Synopsis

  • * There are over 400 genetic skeletal disorders, but clinical practice usually encounters only a few; non-invasive prenatal genetic testing has improved prenatal diagnosis but imaging remains essential for accurate diagnoses.
  • * Limb shortening often raises suspicion for bone dysplasias during screening ultrasounds, prompting further assessments with advanced imaging techniques like ultrasound, MRI, and CT to aid in decision-making.

Article Abstract

Bone dysplasias are individually rare but collectively common. The prenatal diagnosis of bone dysplasias, especially perinatally lethal dysplasias, is of major interest to obstetric services. The current nosology of genetic skeletal disorders addresses over 400 disorders. However, in clinical practice, we encounter only a limited number of disorders, such as . The recent development of non-invasive prenatal genetic testing using cell-free fetal DNA in maternal blood samples has had a major impact on the prenatal diagnosis of genetic diseases. However, imaging examinations remain critical for the final diagnosis of bone dysplasias because molecular testing only shows genetic variants, and not their pathogenicity - most variants are clinically insignificant. Bone dysplasias are typically suspected when limb shortening is identified by screening ultrasound. Further assessment can be followed by more detailed ultrasound, magnetic resonance imaging (MRI), and CT. Based on these data, rational decision-making is feasible, even when the definitive prenatal diagnosis is not feasible. Here, we highlight key images of common bone dysplasias obtained by currently available modalities.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10321247PMC
http://dx.doi.org/10.1259/bjr.20221025DOI Listing

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