Brian Hsueh

Brian Hsueh

Stanford University

H-index: 23

North America-United States

About Brian Hsueh

Brian Hsueh, With an exceptional h-index of 23 and a recent h-index of 23 (since 2020), a distinguished researcher at Stanford University,

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

pGpG-signaling regulates virulence and global transcriptomic targets in Erwinia amylovora

Activation of a Vibrio cholerae CBASS anti-phage system by quorum sensing and folate depletion

Replication cycle timing determines phage sensitivity to a cytidine deaminase toxin/antitoxin bacterial defense system

Method and System for Imaging and Analysis of a Biological Specimen

Development of a 3’3’‐Cyclic GMP‐AMP Enzyme Linked Immunoassay Reveals Phage Infection Reduces DncV Activity

Cardiogenic control of affective behavioural state

Time to lysis determines phage sensitivity to a cytidine deaminase toxin/antitoxin bacterial defense system

Phage defence by deaminase-mediated depletion of deoxynucleotides in bacteria

Brian Hsueh Information

University

Position

MD/PhD Student

Citations(all)

4551

Citations(since 2020)

2671

Cited By

2947

hIndex(all)

23

hIndex(since 2020)

23

i10Index(all)

32

i10Index(since 2020)

32

Email

University Profile Page

Google Scholar

Top articles of Brian Hsueh

pGpG-signaling regulates virulence and global transcriptomic targets in Erwinia amylovora

bioRxiv

2024

Activation of a Vibrio cholerae CBASS anti-phage system by quorum sensing and folate depletion

Mbio

2023/10/31

Replication cycle timing determines phage sensitivity to a cytidine deaminase toxin/antitoxin bacterial defense system

PLoS Pathogens

2023/9/8

Method and System for Imaging and Analysis of a Biological Specimen

2023/4/11

Development of a 3’3’‐Cyclic GMP‐AMP Enzyme Linked Immunoassay Reveals Phage Infection Reduces DncV Activity

Israel Journal of Chemistry

2023/6

Time to lysis determines phage sensitivity to a cytidine deaminase toxin/antitoxin bacterial defense system

bioRxiv

2023/2/10

Phage defence by deaminase-mediated depletion of deoxynucleotides in bacteria

Nature microbiology

2022/8

Quorum-sensing master regulator VfmE is a c-di-GMP effector that controls pectate lyase production in the phytopathogen Dickeya dadantii

Microbiology Spectrum

2022/4/27

Method and system for regulating core body temperature

2022/3/24

NrnA is a linear dinucleotide phosphodiesterase with limited function in cyclic dinucleotide metabolism in Listeria monocytogenes

Journal of Bacteriology

2022/1/18

Characterization of Broadly Conserved AvcID Toxin-Antitoxin System and Its Mechanism to Inhibit Phage by Disrupting Nucleotide Metabolism

2022

The Campylobacter jejuni Response Regulator and Cyclic-Di-GMP Binding CbrR Is a Novel Regulator of Flagellar Motility

Microorganisms

2021/12/31

CloudReg: automatic terabyte-scale cross-modal brain volume registration

Nature Methods

2021/8

Dendritic calcium signals in rhesus macaque motor cortex drive an optical brain-computer interface

Nature communications

2021/6/17

A broadly conserved deoxycytidine deaminase protects bacteria from phage infection

Biorxiv

2021/3/31

A system for regulating core body temperature

2021/3/3

Comparison of diffusion MRI and CLARITY fiber orientation estimates in both gray and white matter regions of human and primate brain

Neuroimage

2021/3/1

Deep brain optogenetics without intracranial surgery

Nature biotechnology

2021/2

Tools for Dissecting Neural Circuits of Interoception and Autonomic Regulation

2021

Brian Hsueh
Brian Hsueh

H-Index: 16

See List of Professors in Brian Hsueh University(Stanford University)