Noo Li Jeon

Noo Li Jeon

Seoul National University

H-index: 80

Asia-South Korea

About Noo Li Jeon

Noo Li Jeon, With an exceptional h-index of 80 and a recent h-index of 51 (since 2020), a distinguished researcher at Seoul National University,

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

Revealing the clinical potential of high-resolution organoids

Angiogenesis-on-a-chip coupled with single-cell RNA sequencing reveals spatially differential activations of autophagy along angiogenic sprouts

Vascularized tissue on mesh-assisted platform (VT-MAP): a novel approach for diverse organoid size culture and tailored cancer drug response analysis

Abstract LB387: Microphysiological modeling of gastric cancer vasculature using iPSC-derived endothelial cells

Angio-Net: deep learning-based label-free detection and morphometric analysis of in vitro angiogenesis

Microfluidic high-throughput 3D cell culture

Patient-derived tumor spheroid-induced angiogenesis preclinical platform for exploring therapeutic vulnerabilities in cancer

Microfluidic device having partially enclosed microfluidic channel and use thereof

Noo Li Jeon Information

University

Position

___

Citations(all)

25746

Citations(since 2020)

9650

Cited By

19956

hIndex(all)

80

hIndex(since 2020)

51

i10Index(all)

198

i10Index(since 2020)

166

Email

University Profile Page

Seoul National University

Google Scholar

View Google Scholar Profile

Top articles of Noo Li Jeon

Title

Journal

Author(s)

Publication Date

Revealing the clinical potential of high-resolution organoids

Jihoon Ko

Sujin Hyung

Sunghun Cheong

Yoojin Chung

Noo Li Jeon

2024/2/8

Angiogenesis-on-a-chip coupled with single-cell RNA sequencing reveals spatially differential activations of autophagy along angiogenic sprouts

Nature communications

Somin Lee

Hyunkyung Kim

Bum Suk Kim

Sehyun Chae

Sangmin Jung

...

2024/1/3

Vascularized tissue on mesh-assisted platform (VT-MAP): a novel approach for diverse organoid size culture and tailored cancer drug response analysis

Lab on a Chip

Jungseub Lee

Sangmin Jung

Hye Kyoung Hong

Hyeonsu Jo

Stephen Rhee

...

2024

Abstract LB387: Microphysiological modeling of gastric cancer vasculature using iPSC-derived endothelial cells

Cancer Research

Jihoon Ko

Noo Li Jeon

Young Sun Oh

2024/4/5

Angio-Net: deep learning-based label-free detection and morphometric analysis of in vitro angiogenesis

Lab on a Chip

Suryong Kim

Jungseub Lee

Jihoon Ko

Seonghyuk Park

Seung-Ryeol Lee

...

2024

Microfluidic high-throughput 3D cell culture

Jihoon Ko

Dohyun Park

Jungseub Lee

Sangmin Jung

Kyusuk Baek

...

2024/4/4

Patient-derived tumor spheroid-induced angiogenesis preclinical platform for exploring therapeutic vulnerabilities in cancer

Biomaterials

Jihoon Ko

Sujin Hyung

You Jeong Heo

Sangmin Jung

Seung Tae Kim

...

2024/2/12

Microfluidic device having partially enclosed microfluidic channel and use thereof

2023/7/4

1410 Uncovering therapeutic vulnerabilities in gastric cancer with patient-specific microphysiological tumor spheroid systems

Jihoon Ko

Sujin Hyung

Young Sun Oh

Noo Li Jeon

Jeeyun Lee

2023/11/1

Liquid patterning device and method

2023/6/6

Engineering choroid plexus-on-a-chip with oscillatory flow for modeling brain metastasis

Materials Today Bio

Jungeun Lim

Stephen Rhee

Hyeri Choi

Jungseub Lee

Shruthy Kuttappan

...

2023/10/1

Assessing the effects of anti-angiogenic drugs on angiogenesis phenotype using a high-throughput microfluidic platform

대한기계학회 춘추학술대회

Sangmin Jung

Sunghun Choeng

Noo Li Jeon

2023/4

Machine Learning-Aided Three-Dimensional Morphological Quantification of Angiogenic Vasculature in the Multiculture Microfluidic Platform

BioChip Journal

Wonjun Lee

Byoungkwon Yoon

Jungseub Lee

Sangmin Jung

Young Sun Oh

...

2023/9

One-step achievement of tumor spheroid-induced angiogenesis in a high-throughput microfluidic platform: one-step tumor angiogenesis platform

Organoid

Seonghyuk Park

Youngtaek Kim

Jihoon Ko

Jiyoung Song

Jeeyun Lee

...

2023/2/25

3D microengineered vascularized tumor spheroids for drug delivery and efficacy testing

Acta biomaterialia

Jungho Ahn

Da-Hyun Kim

Dong-Jun Koo

Jungeun Lim

Tae-Eun Park

...

2023/7/15

High-throughput Microfluidic 3D Outer Blood-Retinal Barrier Model in a 96-Well Format: Analysis of Cellular Interactions and Barrier Function in Retinal Health and Disease

bioRxiv

Jiho Kim

Youngsook Song

Amber L Jolly

Taeseon Hwang

Suryong Kim

...

2023/12/1

Tumor spheroid-based and microtumor-based vascularized models for replicating the vascularized tumor microenvironment

Organoid

Jiyoung Song

Jihoon Ko

Nakwon Choi

Noo Li Jeon

Hong Nam Kim

2023

Characterizing On‐Chip Angiogenesis Induction in a Microphysiological System as a Functional Measure of Mesenchymal Stromal Cell Bioactivity

Advanced Biology

Johnny Lam

James Yu

Byungjun Lee

Courtney Campagna

Sanghee Yoo

...

2023/7/6

Design and validation of a high-throughput in vitro model of the outer Blood-Retinal Barrier (oBRB) using the Curiochips Microphysiological System

J Kim

Y Song

A Jolly

T Hwang

S Kim

...

2023/12/1

3D Microphysiological System‐Inspired Scalable Vascularized Tissue Constructs for Regenerative Medicine (Adv. Funct. Mater. 1/2022).

Advanced Functional Materials

Seokyoung Bang

Dongha Tahk

Young Hwan Choi

Somin Lee

Jungeun Lim

...

2022/1

See List of Professors in Noo Li Jeon University(Seoul National University)

Co-Authors

H-index: 190
Carl Cotman

Carl Cotman

University of California, Irvine

H-index: 116
Ralph Nuzzo

Ralph Nuzzo

University of Illinois at Urbana-Champaign

H-index: 77
Abraham Lee

Abraham Lee

University of California, Irvine

H-index: 65
David H. Cribbs

David H. Cribbs

University of California, Irvine

H-index: 45
Ho-Young Kim

Ho-Young Kim

Seoul National University

H-index: 43
Edwin S. Monuki

Edwin S. Monuki

University of California, Irvine

academic-engine