Alan R Sanders

Alan R Sanders

University of Chicago

H-index: 75

North America-United States

About Alan R Sanders

Alan R Sanders, With an exceptional h-index of 75 and a recent h-index of 52 (since 2020), a distinguished researcher at University of Chicago, specializes in the field of psychiatric genetics.

His recent articles reflect a diverse array of research interests and contributions to the field:

Scaled and Efficient Derivation of Loss of Function Alleles in Risk Genes for Neurodevelopmental and Psychiatric Disorders in Human iPSC

Schizophrenia-associated somatic copy-number variants from 12,834 cases reveal recurrent NRXN1 and ABCB11 disruptions

Excitatory dysfunction drives network and calcium handling deficits in 16p11. 2 duplication schizophrenia induced pluripotent stem cell–derived neurons

64. CHROMATIN ACCESSIBILITY MAPPING IN HIPSC IMPLICATES FUNCTIONAL GWAS RISK VARIANTS AND TARGET GENES FOR NEUROPSYCHIATRIC DISORDERS AND ALZHEIMER'S DISEASE

F82. CONTEXT-SPECIFIC SINGLE-CELL TRANSCRIPTOMIC ANALYSIS IN HIPSC-DERIVED NEURONS INFORMS NOVEL GENE REGULATORY MECHANISM IN SCHIZOPHRENIA

Using brain cell-type-specific protein interactomes to interpret neurodevelopmental genetic signals in schizophrenia

19. Excitatory Dysfunction Drives Synchrony Deficits in a Schizophrenia 16p11. 2 Duplication iPSC Derived Neuron Model

Brain Lipids and Lipid Droplet Dysregulation in Alzheimer’s Disease and Neuropsychiatric Disorders

Alan R Sanders Information

University

Position

Clinical Associate Professor

Citations(all)

45401

Citations(since 2020)

20981

Cited By

29053

hIndex(all)

75

hIndex(since 2020)

52

i10Index(all)

118

i10Index(since 2020)

91

Email

University Profile Page

Google Scholar

Alan R Sanders Skills & Research Interests

psychiatric genetics

Top articles of Alan R Sanders

Scaled and Efficient Derivation of Loss of Function Alleles in Risk Genes for Neurodevelopmental and Psychiatric Disorders in Human iPSC

bioRxiv

2024

Excitatory dysfunction drives network and calcium handling deficits in 16p11. 2 duplication schizophrenia induced pluripotent stem cell–derived neurons

Biological psychiatry

2023/7/15

64. CHROMATIN ACCESSIBILITY MAPPING IN HIPSC IMPLICATES FUNCTIONAL GWAS RISK VARIANTS AND TARGET GENES FOR NEUROPSYCHIATRIC DISORDERS AND ALZHEIMER'S DISEASE

European Neuropsychopharmacology

2023/10/1

F82. CONTEXT-SPECIFIC SINGLE-CELL TRANSCRIPTOMIC ANALYSIS IN HIPSC-DERIVED NEURONS INFORMS NOVEL GENE REGULATORY MECHANISM IN SCHIZOPHRENIA

European Neuropsychopharmacology

2023/10/1

19. Excitatory Dysfunction Drives Synchrony Deficits in a Schizophrenia 16p11. 2 Duplication iPSC Derived Neuron Model

Biological Psychiatry

2023/5/1

Brain Lipids and Lipid Droplet Dysregulation in Alzheimer’s Disease and Neuropsychiatric Disorders

2023/1/18

Multiple genes in a single GWAS risk locus synergistically mediate aberrant synaptic development and function in human neurons

Cell genomics

2023/9/13

Modeling PTSD neuronal stress responses in a dish

Nature neuroscience

2022/11

CELLULAR CONTEXT-SPECIFIC GENE REGULATION OF NEUROPSYCHIATRIC DISORDERS IN SINGLE HUMAN NEURONS

European Neuropsychopharmacology

2022/10/1

An Overview of Cancer in the First 315,000 All of Us Participants

2022/9/1

Loss of function of OTUD7A in the schizophrenia-associated 15q13. 3 deletion impairs synapse development and function in human neurons

The American Journal of Human Genetics

2022/8/4

See List of Professors in Alan R Sanders University(University of Chicago)