AI-based diagnosis and phenotype – Genotype correlations in syndromic craniosynostoses
Apert (AS), Crouzon (CS), Muenke (MS), Pfeiffer (PS), and Saethre Chotzen (SCS) are among the most frequently diagnosed syndromic craniosynostoses. The aims of this study were (1) to train an innovative model using artificial intelligence (AI)–based methods on two-dimensional facial frontal, lateral...
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| Published in: | Journal of cranio-maxillo-facial surgery Vol. 52; no. 10; pp. 1172 - 1187 |
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| Main Authors: | , , , , , , , , , , , , , , , , , , , |
| Format: | Journal Article |
| Language: | English |
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01.10.2024
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| ISSN: | 1010-5182, 1878-4119, 1878-4119 |
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| Abstract | Apert (AS), Crouzon (CS), Muenke (MS), Pfeiffer (PS), and Saethre Chotzen (SCS) are among the most frequently diagnosed syndromic craniosynostoses. The aims of this study were (1) to train an innovative model using artificial intelligence (AI)–based methods on two-dimensional facial frontal, lateral, and external ear photographs to assist diagnosis for syndromic craniosynostoses vs controls, and (2) to screen for genotype/phenotype correlations in AS, CS, and PS. We included retrospectively and prospectively, from 1979 to 2023, all frontal and lateral pictures of patients genetically diagnosed with AS, CS, MS, PS and SCS syndromes. After a deep learning–based preprocessing, we extracted geometric and textural features and used XGboost (eXtreme Gradient Boosting) to classify patients. The model was tested on an independent international validation set of genetically confirmed patients and non-syndromic controls. Between 1979 and 2023, we included 2228 frontal and lateral facial photographs corresponding to 541 patients. In all, 70.2% [0.593–0.797] (p < 0.001) of patients in the validation set were correctly diagnosed. Genotypes linked to a splice donor site of FGFR2 in Crouzon-Pfeiffer syndrome (CPS) caused a milder phenotype in CPS. Here we report a new method for the automatic detection of syndromic craniosynostoses using AI. |
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| AbstractList | Apert (AS), Crouzon (CS), Muenke (MS), Pfeiffer (PS), and Saethre Chotzen (SCS) are among the most frequently diagnosed syndromic craniosynostoses. The aims of this study were (1) to train an innovative model using artificial intelligence (AI)-based methods on two-dimensional facial frontal, lateral, and external ear photographs to assist diagnosis for syndromic craniosynostoses vs controls, and (2) to screen for genotype/phenotype correlations in AS, CS, and PS. We included retrospectively and prospectively, from 1979 to 2023, all frontal and lateral pictures of patients genetically diagnosed with AS, CS, MS, PS and SCS syndromes. After a deep learning-based preprocessing, we extracted geometric and textural features and used XGboost (eXtreme Gradient Boosting) to classify patients. The model was tested on an independent international validation set of genetically confirmed patients and non-syndromic controls. Between 1979 and 2023, we included 2228 frontal and lateral facial photographs corresponding to 541 patients. In all, 70.2% [0.593-0.797] (p < 0.001) of patients in the validation set were correctly diagnosed. Genotypes linked to a splice donor site of FGFR2 in Crouzon-Pfeiffer syndrome (CPS) caused a milder phenotype in CPS. Here we report a new method for the automatic detection of syndromic craniosynostoses using AI. Apert (AS), Crouzon (CS), Muenke (MS), Pfeiffer (PS), and Saethre Chotzen (SCS) are among the most frequently diagnosed syndromic craniosynostoses. The aims of this study were (1) to train an innovative model using artificial intelligence (AI)-based methods on two-dimensional facial frontal, lateral, and external ear photographs to assist diagnosis for syndromic craniosynostoses vs controls, and (2) to screen for genotype/phenotype correlations in AS, CS, and PS. We included retrospectively and prospectively, from 1979 to 2023, all frontal and lateral pictures of patients genetically diagnosed with AS, CS, MS, PS and SCS syndromes. After a deep learning-based preprocessing, we extracted geometric and textural features and used XGboost (eXtreme Gradient Boosting) to classify patients. The model was tested on an independent international validation set of genetically confirmed patients and non-syndromic controls. Between 1979 and 2023, we included 2228 frontal and lateral facial photographs corresponding to 541 patients. In all, 70.2% [0.593-0.797] (p < 0.001) of patients in the validation set were correctly diagnosed. Genotypes linked to a splice donor site of FGFR2 in Crouzon-Pfeiffer syndrome (CPS) caused a milder phenotype in CPS. Here we report a new method for the automatic detection of syndromic craniosynostoses using AI.Apert (AS), Crouzon (CS), Muenke (MS), Pfeiffer (PS), and Saethre Chotzen (SCS) are among the most frequently diagnosed syndromic craniosynostoses. The aims of this study were (1) to train an innovative model using artificial intelligence (AI)-based methods on two-dimensional facial frontal, lateral, and external ear photographs to assist diagnosis for syndromic craniosynostoses vs controls, and (2) to screen for genotype/phenotype correlations in AS, CS, and PS. We included retrospectively and prospectively, from 1979 to 2023, all frontal and lateral pictures of patients genetically diagnosed with AS, CS, MS, PS and SCS syndromes. After a deep learning-based preprocessing, we extracted geometric and textural features and used XGboost (eXtreme Gradient Boosting) to classify patients. The model was tested on an independent international validation set of genetically confirmed patients and non-syndromic controls. Between 1979 and 2023, we included 2228 frontal and lateral facial photographs corresponding to 541 patients. In all, 70.2% [0.593-0.797] (p < 0.001) of patients in the validation set were correctly diagnosed. Genotypes linked to a splice donor site of FGFR2 in Crouzon-Pfeiffer syndrome (CPS) caused a milder phenotype in CPS. Here we report a new method for the automatic detection of syndromic craniosynostoses using AI. |
| Author | Cormier-Daire, Valérie Lyonnet, Stanislas Bouygues, Thomas Hennocq, Quentin Picard, Arnaud Schievano, Silvia Garcelon, Nicolas Douillet, Maxime Collet, Corinne Arnaud, Eric Rickart, Alexander J. Rio, Marlène Ong, Juling Paternoster, Giovanna Dunaway, David J. Amiel, Jeanne van de Lande, Lara S. Jeelani, Nu Owase Bongibault, Thomas Khonsari, Roman H. |
| Author_xml | – sequence: 1 givenname: Quentin surname: Hennocq fullname: Hennocq, Quentin email: quentin.hennocq@aphp.fr organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 2 givenname: Giovanna surname: Paternoster fullname: Paternoster, Giovanna organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 3 givenname: Corinne surname: Collet fullname: Collet, Corinne organization: Département de génétique moléculaire, Hôpital Robert Debré, Université de Paris Cité, Paris, France – sequence: 4 givenname: Jeanne surname: Amiel fullname: Amiel, Jeanne organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 5 givenname: Thomas surname: Bongibault fullname: Bongibault, Thomas organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 6 givenname: Thomas surname: Bouygues fullname: Bouygues, Thomas organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 7 givenname: Valérie surname: Cormier-Daire fullname: Cormier-Daire, Valérie organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 8 givenname: Maxime surname: Douillet fullname: Douillet, Maxime organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 9 givenname: David J. surname: Dunaway fullname: Dunaway, David J. organization: UCL Great Ormond Street Institute of Child Health and Craniofacial Unit, Great Ormond Street Hospital for Children, London, UK – sequence: 10 givenname: Nu Owase orcidid: 0000-0002-3240-681X surname: Jeelani fullname: Jeelani, Nu Owase organization: UCL Great Ormond Street Institute of Child Health and Craniofacial Unit, Great Ormond Street Hospital for Children, London, UK – sequence: 11 givenname: Lara S. orcidid: 0000-0003-2482-199X surname: van de Lande fullname: van de Lande, Lara S. organization: UCL Great Ormond Street Institute of Child Health and Craniofacial Unit, Great Ormond Street Hospital for Children, London, UK – sequence: 12 givenname: Stanislas surname: Lyonnet fullname: Lyonnet, Stanislas organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 13 givenname: Juling surname: Ong fullname: Ong, Juling organization: UCL Great Ormond Street Institute of Child Health and Craniofacial Unit, Great Ormond Street Hospital for Children, London, UK – sequence: 14 givenname: Arnaud surname: Picard fullname: Picard, Arnaud organization: Département de chirurgie maxillo-faciale et chirurgie plastique, Hôpital Necker – Enfants Malades, Assistance Publique – Hôpitaux de Paris, Centre de Référence des Malformations Rares de la Face et de la Cavité Buccale MAFACE, Filière Maladies Rares TeteCou, Faculté de Médecine, Université de Paris Cité, 75015, Paris, France – sequence: 15 givenname: Alexander J. surname: Rickart fullname: Rickart, Alexander J. organization: UCL Great Ormond Street Institute of Child Health and Craniofacial Unit, Great Ormond Street Hospital for Children, London, UK – sequence: 16 givenname: Marlène surname: Rio fullname: Rio, Marlène organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 17 givenname: Silvia surname: Schievano fullname: Schievano, Silvia organization: UCL Great Ormond Street Institute of Child Health and Craniofacial Unit, Great Ormond Street Hospital for Children, London, UK – sequence: 18 givenname: Eric surname: Arnaud fullname: Arnaud, Eric organization: Département de neurochirurgie, Hôpital Necker – Enfants Malades, Assistance Publique – Hôpitaux de Paris, Centre de Référence des Malformations Rares de la Face et de la Cavité Buccale MAFACE, Filière Maladies Rares TeteCou, Faculté de Médecine, Université de Paris Cité, 75015, Paris, France – sequence: 19 givenname: Nicolas surname: Garcelon fullname: Garcelon, Nicolas organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France – sequence: 20 givenname: Roman H. surname: Khonsari fullname: Khonsari, Roman H. organization: Imagine Institute, INSERM UMR1163, 75015, Paris, France |
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| Keywords | Dysmorphology Syndromic craniosynostosis Artificial intelligence Machine learning |
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