Dohyun Park

About Dohyun Park

Dohyun Park, With an exceptional h-index of 10 and a recent h-index of 10 (since 2020), a distinguished researcher at Seoul National University, specializes in the field of Microfluidics, Bioprocessing, Organ on a Chip.

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

Microfluidic high-throughput 3D cell culture

U-IMPACT: a universal 3D microfluidic cell culture platform

Engineering organ-on-a-chip to accelerate translational research

A petri-dish with micromolded pattern as a coordinate indicator for live-cell time lapse microscopy

Aspiration-mediated hydrogel micropatterning using rail-based open microfluidic devices for high-throughput 3D cell culture

High-Throughput 3D In Vitro Tumor Vasculature Model for Real-Time Monitoring of Immune Cell Infiltration and Cytotoxicity

Anchor‐IMPACT: A standardized microfluidic platform for high‐throughput antiangiogenic drug screening

Modeling 3D human tumor lymphatic vessel network using high‐throughput platform

Dohyun Park Information

University

Position

___

Citations(all)

478

Citations(since 2020)

473

Cited By

129

hIndex(all)

10

hIndex(since 2020)

10

i10Index(all)

10

i10Index(since 2020)

10

Email

University Profile Page

Google Scholar

Dohyun Park Skills & Research Interests

Microfluidics

Bioprocessing

Organ on a Chip

Top articles of Dohyun Park

Microfluidic high-throughput 3D cell culture

2024/4/4

U-IMPACT: a universal 3D microfluidic cell culture platform

Microsystems & Nanoengineering

2022/12/5

Engineering organ-on-a-chip to accelerate translational research

2022/7/28

A petri-dish with micromolded pattern as a coordinate indicator for live-cell time lapse microscopy

BioChip Journal

2022/3

Aspiration-mediated hydrogel micropatterning using rail-based open microfluidic devices for high-throughput 3D cell culture

Scientific Reports

2021/10/7

High-Throughput 3D In Vitro Tumor Vasculature Model for Real-Time Monitoring of Immune Cell Infiltration and Cytotoxicity

Frontiers in Immunology

2021/9/24

Anchor‐IMPACT: A standardized microfluidic platform for high‐throughput antiangiogenic drug screening

Biotechnology and Bioengineering

2021/7

Modeling 3D human tumor lymphatic vessel network using high‐throughput platform

Advanced Biology

2021/2

Pneumatically actuated microfluidic platform for reconstituting 3d vascular tissue compression

Applied Sciences

2020/3/17

See List of Professors in Dohyun Park University(Seoul National University)

Co-Authors

academic-engine