Qian-Qian Kong
Biographic Data
| ID | 6937363 |
|---|---|
| NAME | Qian-Qian Kong |
| GIVEN NAMES | Qian-Qian |
| FAMILY NAME | Kong |
| SIGNATURE | KONG Q |
| AFFILIATIONS | Institute of Forensic Science |
| VERIFIED | No |
| TOTAL WORKS | 2 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 2 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2023 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Systematic analysis of full sibling identification by adding genetic markers and reference relatives
Full-sibling (FS) identification is a crucial aspect of kinship analysis. However, current FS identification methods need to be more accurate and effective for routine FS identification. In this study, the optimal cut-off values for FS identification by incorporating both the identical by state (IBS) and likelihood ratio (LR) methods under four different levels of error rates were assessed. The corresponding sensitivity, specificity, accuracy, an…
Internal validation of an improved system for forensic application
A novel multiplex comprising 41 Y-STR and 3 Y-InDel was developed for forensic application.The multiplex included rapidly mutating Y-STRs and low-medium mutating Y-STRs, which is compatible with many commonly used Y-STR kits.The multiplex is a powerful tool for distinguishing related males, familial searching, and constructing DNA databases
No prominent works on this page.
Internal validation of an improved system for forensic application
A novel multiplex comprising 41 Y-STR and 3 Y-InDel was developed for forensic application.The multiplex included rapidly mutating Y-STRs and low-medium mutating Y-STRs, which is compatible with many commonly used Y-STR kits.The multiplex is a powerful tool for distinguishing related males, familial searching, and constructing DNA databases
Systematic analysis of full sibling identification by adding genetic markers and reference relatives
Full-sibling (FS) identification is a crucial aspect of kinship analysis. However, current FS identification methods need to be more accurate and effective for routine FS identification. In this study, the optimal cut-off values for FS identification by incorporating both the identical by state (IBS) and likelihood ratio (LR) methods under four different levels of error rates were assessed. The corresponding sensitivity, specificity, accuracy, an…
Biology (2 works) · Forensic and Genetic Research (2 works) · Amplicon (1 works) · Botany (1 works) · Computational biology (1 works) · Concordance (1 works) · Developmental psychology (1 works) · Gene (1 works) · Genetic diversity and population structure (1 works) · Genetics (1 works)