| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, CAGI6 Splicing VUS subset (Drost et al. Data S1) Dataset: CAGI6 Splicing VUS variants as scored by Drost et al. | 0.8 f1-score fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 56 CAGI6 Splicing VUS variants rna-splicing-20261009-protocol-drost2025-cagi6 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'CAGI6 dataset', cell F28; row AtLeast4, column F1 |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, CAGI6 Splicing VUS subset (Drost et al. Data S1) Dataset: CAGI6 Splicing VUS variants as scored by Drost et al. | 0.607 negative-predictive-value fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 56 CAGI6 Splicing VUS variants rna-splicing-20261009-protocol-drost2025-cagi6 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'CAGI6 dataset', cell H28; row AtLeast4, column Neg Pred Value |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, CAGI6 Splicing VUS subset (Drost et al. Data S1) Dataset: CAGI6 Splicing VUS variants as scored by Drost et al. | 0.929 precision fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 56 CAGI6 Splicing VUS variants rna-splicing-20261009-protocol-drost2025-cagi6 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'CAGI6 dataset', cell G28; row AtLeast4, column Pos Pred Value |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, CAGI6 Splicing VUS subset (Drost et al. Data S1) Dataset: CAGI6 Splicing VUS variants as scored by Drost et al. | 0.929 precision fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 56 CAGI6 Splicing VUS variants rna-splicing-20261009-protocol-drost2025-cagi6 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'CAGI6 dataset', cell E28; row AtLeast4, column Precision |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, CAGI6 Splicing VUS subset (Drost et al. Data S1) Dataset: CAGI6 Splicing VUS variants as scored by Drost et al. | 0.703 recall fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 56 CAGI6 Splicing VUS variants rna-splicing-20261009-protocol-drost2025-cagi6 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'CAGI6 dataset', cell C28; row AtLeast4, column Sensitivity (Recall) |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, CAGI6 Splicing VUS subset (Drost et al. Data S1) Dataset: CAGI6 Splicing VUS variants as scored by Drost et al. | 0.895 specificity fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 56 CAGI6 Splicing VUS variants rna-splicing-20261009-protocol-drost2025-cagi6 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'CAGI6 dataset', cell D28; row AtLeast4, column Specificity |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, in-house diagnostic cohort (Drost et al. Data S1) Dataset: Drost et al. in-house RNA-tested diagnostic variants, scorable subset | 0.76 f1-score fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on in-house scorable variants (count not printed) rna-splicing-20261009-protocol-drost2025-inhouse Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'In House dataset', cell F41; row AtLeast4, column F1 |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, in-house diagnostic cohort (Drost et al. Data S1) Dataset: Drost et al. in-house RNA-tested diagnostic variants, scorable subset | 0.6 negative-predictive-value fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on in-house scorable variants (count not printed) rna-splicing-20261009-protocol-drost2025-inhouse Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'In House dataset', cell H41; row AtLeast4, column Neg Pred Value |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, in-house diagnostic cohort (Drost et al. Data S1) Dataset: Drost et al. in-house RNA-tested diagnostic variants, scorable subset | 0.927 precision fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on in-house scorable variants (count not printed) rna-splicing-20261009-protocol-drost2025-inhouse Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'In House dataset', cell G41; row AtLeast4, column Pos Pred Value |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, in-house diagnostic cohort (Drost et al. Data S1) Dataset: Drost et al. in-house RNA-tested diagnostic variants, scorable subset | 0.927 precision fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on in-house scorable variants (count not printed) rna-splicing-20261009-protocol-drost2025-inhouse Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'In House dataset', cell E41; row AtLeast4, column Precision |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, in-house diagnostic cohort (Drost et al. Data S1) Dataset: Drost et al. in-house RNA-tested diagnostic variants, scorable subset | 0.644 recall fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on in-house scorable variants (count not printed) rna-splicing-20261009-protocol-drost2025-inhouse Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'In House dataset', cell C41; row AtLeast4, column Sensitivity (Recall) |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, in-house diagnostic cohort (Drost et al. Data S1) Dataset: Drost et al. in-house RNA-tested diagnostic variants, scorable subset | 0.913 specificity fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on in-house scorable variants (count not printed) rna-splicing-20261009-protocol-drost2025-inhouse Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'In House dataset', cell D41; row AtLeast4, column Specificity |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, all 243 scorable variants (Drost et al. Data S1) Dataset: Drost et al. RNA-tested clinical variants plus CAGI6 Splicing VUS, 243 scorable | 0.77 f1-score fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 243 scorable variants (in-house plus CAGI6) rna-splicing-20261009-protocol-drost2025-merged-243 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'Entire Dataset', cell F15; row AtLeast4, column F1 |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, all 243 scorable variants (Drost et al. Data S1) Dataset: Drost et al. RNA-tested clinical variants plus CAGI6 Splicing VUS, 243 scorable | 0.602 negative-predictive-value fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 243 scorable variants (in-house plus CAGI6) rna-splicing-20261009-protocol-drost2025-merged-243 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'Entire Dataset', cell H15; row AtLeast4, column Neg Pred Value |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, all 243 scorable variants (Drost et al. Data S1) Dataset: Drost et al. RNA-tested clinical variants plus CAGI6 Splicing VUS, 243 scorable | 0.927 precision fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 243 scorable variants (in-house plus CAGI6) rna-splicing-20261009-protocol-drost2025-merged-243 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'Entire Dataset', cell G15; row AtLeast4, column Pos Pred Value |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, all 243 scorable variants (Drost et al. Data S1) Dataset: Drost et al. RNA-tested clinical variants plus CAGI6 Splicing VUS, 243 scorable | 0.927 precision fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 243 scorable variants (in-house plus CAGI6) rna-splicing-20261009-protocol-drost2025-merged-243 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'Entire Dataset', cell E15; row AtLeast4, column Precision |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, all 243 scorable variants (Drost et al. Data S1) Dataset: Drost et al. RNA-tested clinical variants plus CAGI6 Splicing VUS, 243 scorable | 0.658 recall fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 243 scorable variants (in-house plus CAGI6) rna-splicing-20261009-protocol-drost2025-merged-243 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'Entire Dataset', cell C15; row AtLeast4, column Sensitivity (Recall) |
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| Configuration: At least 4 of 4 splice predictors (Drost et al.) | Protocol: Splice-effect prediction against patient-RNA or exon-trapping results, all 243 scorable variants (Drost et al. Data S1) Dataset: Drost et al. RNA-tested clinical variants plus CAGI6 Splicing VUS, 243 scorable | 0.909 specificity fraction · higher Uncertainty: Not reported by the source Coverage: Not reported scored / Not reported eligible | Author-reported evaluation · Source checkedMethods, coverage and sourceAt least 4 of 4 splice predictors on 243 scorable variants (in-house plus CAGI6) rna-splicing-20261009-protocol-drost2025-merged-243 Aggregation: Not reported Routine RNA-based analysis of potential splicing variants facilitates genomic diagnostics and reveals limitations of in silico prediction tools; Drost et al. 2025, Data S1 (Tables S1-S6) · Data S1 Table S4 'Entire Dataset', cell D15; row AtLeast4, column Specificity |
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