Title | Total cells | ||
1 | A cell atlas of human thymic development defines T cell repertoire formation Dataset 1: Figure 1 - A cell atlas of human thymic development defines T cell repertoire formation cell type: erythrocyte expressed genes: FAM117A | ||
2 | A human fetal lung cell atlas uncovers proximal-distal gradients of differentiation and key regulators of epithelial fates Dataset 1: All cells cell type: erythrocyte primitive red blood cell expressed genes: FAM117A | ||
3 | Blood and immune development in human fetal bone marrow and Down syndrome Dataset 1: Fetal Bone Marrow (10x) cell type: early erythroid late erythroid mid erythroid expressed genes: FAM117A Dataset 4: Human Fetal Bone Marrow (CITE-seq) cell type: early erythroid late erythroid mid erythroid expressed genes: FAM117A | ||
4 | Cross-tissue immune cell analysis reveals tissue-specific features in humans Dataset 1: Global cell type: Erythroid expressed genes: FAM117A | ||
5 | Identification of distinct tumor cell populations and key genetic mechanisms through single cell sequencing in hepatoblastoma Dataset 1: Modeling Hepatoblastoma: Identification of Distinct Tumor Cell Populations and Key Genetic Mechanisms through Single Cell Sequencing cell type: erythrocyte expressed genes: FAM117A | ||
6 | Immunophenotyping of COVID-19 and influenza highlights the role of type I interferons in development of severe COVID-19 Dataset 1: Immunophenotyping of COVID-19 and influenza highlights the role of type I interferons in development of severe COVID-19 cell type: RBC expressed genes: FAM117A | ||
7 | Integrated analysis of multimodal single-cell data Dataset 1: nygc multimodal pbmc cell type: Eryth expressed genes: FAM117A | ||
8 | Integrated scRNA-Seq Identifies Human Postnatal Thymus Seeding Progenitors and Regulatory Dynamics of Differentiating Immature Thymocytes Dataset 1: Single-Cell Transcriptome Profiling of Immature Human Thymocytes cell type: Erythroid expressed genes: FAM117A | ||
9 | Longitudinal profiling of respiratory and systemic immune responses reveals myeloid cell-driven lung inflammation in severe COVID-19 Dataset 1: 49 years old male - Fresh PBMCs (2 days post-intubation) cell type: RBC expressed genes: FAM117A Dataset 5: 66 years old female - Airway Wash (2 days post-intubation) cell type: RBC expressed genes: FAM117A Dataset 9: 74 years old female - Fresh PBMCs (4 days post-intubation) cell type: RBC expressed genes: FAM117A Dataset 15: 66 years old female - Airway Wash (7 days post-intubation) cell type: RBC expressed genes: FAM117A Dataset 17: 74 years old female - Airway Wash (4 days post-intubation) cell type: RBC expressed genes: FAM117A | ||
10 | Single-cell multi-omics analysis of the immune response in COVID-19 Dataset 1: Single-cell multi-omics analysis of the immune response in COVID-19 cell type: RBC expressed genes: FAM117A | ||
11 | Single-cell multiomic profiling of human lungs reveals cell-type-specific and age-dynamic control of SARS-CoV2 host genes Dataset 1: Single-cell multiomic profiling of human lungs across age groups cell type: enucleated erythrocytes expressed genes: FAM117A | ||
12 | Single-cell proteo-genomic reference maps of the hematopoietic system enable the purification and massive profiling of precisely defined cell states Dataset 1: 3 healthy young and 3 healthy old bone marrow donors (Reference sample) cell type: Aberrant erythroid expressed genes: FAM117A Dataset 2: 15 leukemic bone marrow donors cell type: Aberrant erythroid expressed genes: FAM117A Dataset 3: blood and bone marrow from a healthy young donor cell type: Aberrant erythroid expressed genes: FAM117A Dataset 4: healthy young bone marrow donor cell type: Aberrant erythroid expressed genes: FAM117A |