Junsu Kang

Junsu Kang

University of Wisconsin-Madison

H-index: 12

North America-United States

About Junsu Kang

Junsu Kang, With an exceptional h-index of 12 and a recent h-index of 12 (since 2020), a distinguished researcher at University of Wisconsin-Madison, specializes in the field of Regeneration.

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

The translation initiation factor homolog eif4e1c regulates cardiomyocyte metabolism and proliferation during heart regeneration

A robust knock-in approach using a minimal promoter and a minicircle

An enhancer-based gene-therapy strategy for spatiotemporal control of cargoes during tissue repair

leptin b and its regeneration enhancer illustrate the regenerative features of zebrafish hearts

Regeneration and developmental enhancers are differentially compatible with minimal promoters

Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins

Decoding an organ regeneration switch by dissecting cardiac regeneration enhancers

Induction of Wnt signaling antagonists and P21-activated kinase enhances cardiomyocyte proliferation during zebrafish heart regeneration

Junsu Kang Information

University

Position

Cell and Regenerative Biology Department

Citations(all)

625

Citations(since 2020)

442

Cited By

329

hIndex(all)

12

hIndex(since 2020)

12

i10Index(all)

13

i10Index(since 2020)

12

Email

University Profile Page

Google Scholar

Junsu Kang Skills & Research Interests

Regeneration

Top articles of Junsu Kang

The translation initiation factor homolog eif4e1c regulates cardiomyocyte metabolism and proliferation during heart regeneration

Development

2023/10/15

A robust knock-in approach using a minimal promoter and a minicircle

Developmental Biology

2023/10/14

Junsu Kang
Junsu Kang

H-Index: 6

An enhancer-based gene-therapy strategy for spatiotemporal control of cargoes during tissue repair

Cell stem cell

2023/1/5

leptin b and its regeneration enhancer illustrate the regenerative features of zebrafish hearts

Developmental Dynamics

2022/12/10

Jingli Cao
Jingli Cao

H-Index: 11

Junsu Kang
Junsu Kang

H-Index: 6

Regeneration and developmental enhancers are differentially compatible with minimal promoters

Developmental Biology

2022/12/1

Junsu Kang
Junsu Kang

H-Index: 6

Voltage-gated sodium channel scn8a is required for innervation and regeneration of amputated adult zebrafish fins

Proceedings of the National Academy of Sciences

2022/7/12

Andrew Miller
Andrew Miller

H-Index: 33

Junsu Kang
Junsu Kang

H-Index: 6

Decoding an organ regeneration switch by dissecting cardiac regeneration enhancers

Development

2020/12/15

Junsu Kang
Junsu Kang

H-Index: 6

Induction of Wnt signaling antagonists and P21-activated kinase enhances cardiomyocyte proliferation during zebrafish heart regeneration

Journal of Molecular Cell Biology

2020/9/16

Identification and requirements of enhancers that direct gene expression during zebrafish fin regeneration

Development

2020/7/15

Citrullination regulates wound responses and tissue regeneration in zebrafish

Journal of Cell Biology

2020/4/6

Junsu Kang
Junsu Kang

H-Index: 6

See List of Professors in Junsu Kang University(University of Wisconsin-Madison)