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Integrating deep phenotyping with genetic analysis: a comprehensive workflow for diagnosis and management of rare bone diseases. | LitMetric

AI Article Synopsis

  • Phenotypes are crucial in medical genetics as they represent how genetic information manifests outwardly, and deep phenotyping allows for detailed assessments that enhance understanding of diseases.
  • *The study presents a specialized workflow for deep phenotyping in rare bone diseases at a specific medical clinic, incorporating thorough evaluations using established standards and patient consultations.
  • *This approach aims to improve patient care and research by creating standardized protocols that ensure personalized treatments and ongoing assessment of patients’ evolving needs.

Article Abstract

Phenotypes play a fundamental role in medical genetics, serving as external manifestations of underlying genotypes. Deep phenotyping, a cornerstone of precision medicine, involves precise multi-system phenotype assessments, facilitating disease subtyping and genetic understanding. Despite their significance, the field lacks standardized protocols for accurate phenotype evaluation, hindering clinical comprehension and research comparability. We present a comprehensive workflow of deep phenotyping for rare bone diseases from the Genetics Clinic of Skeletal Deformity at Peking Union Medical College Hospital. Our workflow integrates referral, informed consent, and detailed phenotype evaluation through HPO standards, capturing nuanced phenotypic characteristics using clinical examinations, questionnaires, and multimedia documentation. Genetic testing and counseling follow, based on deep phenotyping results, ensuring personalized interventions. Multidisciplinary team consultations facilitate comprehensive patient care and clinical guideline development. Regular follow-up visits emphasize dynamic phenotype reassessment, ensuring treatment strategies remain responsive to evolving patient needs. In conclusion, this study highlights the importance of deep phenotyping in rare bone diseases, offering a standardized framework for phenotype evaluation, genetic analysis, and multidisciplinary intervention. By enhancing clinical care and research outcomes, this approach contributes to the advancement of precision medicine in the field of medical genetics.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11462960PMC
http://dx.doi.org/10.1186/s13023-024-03367-8DOI Listing

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