Skip to main content

Seung Ah Lee

Seoul National University · 工学

研究室紹介

Professor Seung Ah Lee's research lab specializes in the development of compact, low-cost, and portable imaging systems for biomedical and environmental applications. The lab focuses on integrating microfluidics, computational optics, and smartphone-based imaging to enable high-resolution, on-chip microscopy and 3D microfabrication. Key research directions include lensless and Fourier ptychographic microscopy, optofluidic lithography, and human-biology interaction platforms that merge microscopy with interactive technologies for education and diagnostics.

computational microscopyoptofluidicsportable diagnosticshuman-biology interactionchip-scale imaging

Research Overview

Papers
172
Total Citations
2,700
Papers (5y)
74
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
74total
2022
2023
2024
2025
2026
Citations per year (5y)
355total
20222023202420252026

Selected Papers

15
1
Article|160 citations·2014
A smartphone-based chip-scale microscope using ambient illumination
Seung Ah Lee, Changhuei Yang
SJR Q1Lab on a Chip

Portable chip-scale microscopy devices can potentially address various imaging needs in mobile healthcare and environmental monitoring. Here, we demonstrate the adaptation of a smartphone's camera to function as a compact lensless microscope. Unlike other chip-scale microscopy schemes, this method uses ambient illumination as its light source and does not require the incorporation of a dedicated light source. The method is based on the shadow imaging technique where the sample is placed on the s

Biomedical EngineeringEngineering
2
Article|98 citations·2009
Three-dimensional fabrication of heterogeneous microstructures using soft membrane deformation and optofluidic maskless lithography
Seung Ah Lee, Su Eun Chung, Wook Park, Sung Hoon Lee, Sunghoon Kwon
SJR Q1Lab on a Chip

We propose a method for high-throughput generation of 3D microstructures using a membrane-mounted microfluidic channel. Utilizing an optofluidic maskless lithography system, photopolymerized 3D microstructures are fabricated in a layer-by-layer fashion with the thickness of each layer controlled by the deformation of the membrane. The combination of low numerical aperture optical systems for photopolymerization and a soft membrane for height control allows large area projection lithography with

Biomedical EngineeringEngineering
3
Article|85 citations·2015
Trap it!
Seung Ah Lee, Engin Bumbacher, Alice M. Chung, Nate Cira, Byron Walker, Ji Young Park, Barry Starr, Paulo Blikstein, Ingmar H. Riedel‐Kruse
OA

We developed Trap it!, a human-biology interaction (HBI) medium encompassing a touchscreen interface, microscopy, and light projection. Users can interact with living cells by drawing on a touchscreen displaying the microscope view of the cells. These drawings are projected onto the microscopy field as light patterns, prompting observable movement in phototactic responses. The system design enables stable and robust HBI and a wide variety of programmed activities (art, games, and experiments). W

BiophysicsBiochemistry, Genetics and Molecular Biology
4
Article|73 citations·2011
Color Capable Sub-Pixel Resolving Optofluidic Microscope and Its Application to Blood Cell Imaging for Malaria Diagnosis
Seung Ah Lee, Ricardo Leitão, Guoan Zheng, Samuel Yang, Ana Rodrı́guez, Changhuei Yang
SJR Q1PLoS ONEOA

Miniaturization of imaging systems can significantly benefit clinical diagnosis in challenging environments, where access to physicians and good equipment can be limited. Sub-pixel resolving optofluidic microscope (SROFM) offers high-resolution imaging in the form of an on-chip device, with the combination of microfluidics and inexpensive CMOS image sensors. In this work, we report on the implementation of color SROFM prototypes with a demonstrated optical resolution of 0.66 µm at their highest

Media TechnologyEngineering
5
Article|71 citations·2010
Effects of a scapula-oriented shoulder exercise programme on upper limb dysfunction in breast cancer survivors: a randomized controlled pilot trial
Seung Ah Lee, Ji-Young Kang, Yong Duck Kim, Ah Ra An, Sung‐Won Kim, Yeon Soo Kim, Jae‐Young Lim
SJR Q1Clinical Rehabilitation

OBJECTIVE: To examine the effects of a scapula-oriented exercise on upper limb dysfunction in breast cancer survivors. STUDY DESIGN: A prospective randomized, controlled pilot trial with historical control. SETTING: Rehabilitation department at a university hospital. SUBJECTS: Thirty-two women with breast cancer were randomly assigned to scapula-oriented exercise group (n = 16) and general exercise group (n = 16). An historical control group (n = 18) without exercise was enrolled from breast can

SurgeryMedicine
6
Article|58 citations·2021
A Smartphone-Based Fourier Ptychographic Microscope Using the Display Screen for Illumination
Kyung Chul Lee, Kyungwon Lee, Jaewoo Jung, Se Hee Lee, Donghyun Kim, Seung Ah Lee
SJR Q1ACS Photonics

We propose a smartphone-mountable computational microscope that achieves wide-field and high-resolution imaging, based on the Fourier ptychographic (FP) microscopy technique. Our device uses the smartphone’s built-in camera for microscopy imaging, the display screen for programmable illumination, and the computational power of the smartphone processors for FP image reconstruction. With a compact and lightweight optics module and a custom-built application, we can transform a regular smartphone i

RadiationPhysics and Astronomy
7
Article|48 citations·2012
On-chip continuous monitoring of motile microorganisms on an ePetri platform
Seung Ah Lee, Guoan Zheng, Nandini Mukherjee, Changhuei Yang
SJR Q1Lab on a Chip

Self-imaging Petri dish platforms with microscopy resolution, which we term 'ePetri', can significantly streamline cell cultures and/or other longitudinal biological studies. In this paper, we demonstrate high-resolution imaging and long-term culture of motile microorganisms in a specialized ePetri platform by taking advantage of the inherent motion. By applying a super-resolution algorithm to a set of low-resolution images of the microorganisms as they move across the sensing area of a compleme

BiophysicsBiochemistry, Genetics and Molecular Biology
8
Article|40 citations·2014
Imaging and Identification of Waterborne Parasites Using a Chip-Scale Microscope
Seung Ah Lee, Jessey Erath, Guoan Zheng, Xiaoze Ou, P. A. Willems, Daniel Eichinger, Ana Rodrı́guez, Changhuei Yang
SJR Q1PLoS ONEOA

We demonstrate a compact portable imaging system for the detection of waterborne parasites in resource-limited settings. The previously demonstrated sub-pixel sweeping microscopy (SPSM) technique is a lens-less imaging scheme that can achieve high-resolution (<1 µm) bright-field imaging over a large field-of-view (5.7 mm×4.3 mm). A chip-scale microscope system, based on the SPSM technique, can be used for automated and high-throughput imaging of protozoan parasite cysts for the effective diagnos

ParasitologyImmunology and Microbiology
9
Article|32 citations·2022
Lensless polarization camera for single-shot full-Stokes imaging
Nakkyu Baek, Yujin Lee, Taeyoung Kim, Jaewoo Jung, Seung Ah Lee
SJR Q1APL PhotonicsOA

Lensless cameras have recently emerged as a compact imaging system based on computational imaging with various multiplexing capabilities. Here, we propose a compact, low-cost, lensless camera that enables snapshot full-Stokes polarization imaging. While polarization imaging provides additional contrast based on the birefringence and surface properties of the object, most polarization cameras require bulky hardware or are limited to measuring only the linear polarization information. Our device,

Acoustics and UltrasonicsPhysics and Astronomy
10
Article|31 citations·2013
Chip-scale fluorescence microscope based on a silo-filter complementary metal-oxide semiconductor image sensor
Seung Ah Lee, Xiaoze Ou, J. Eugene Lee, Changhuei Yang
SJR Q1Optics LettersOA

We demonstrate a silo-filter (SF) complementary metal-oxide semiconductor (CMOS) image sensor for a chip-scale fluorescence microscope. The extruded pixel design with metal walls between neighboring pixels guides fluorescence emission through the thick absorptive filter to the photodiode of a pixel. Our prototype device achieves 13 μm resolution over a wide field of view (4.8 mm × 4.4 mm). We demonstrate bright-field and fluorescence longitudinal imaging of living cells in a compact, low-cost co

BiophysicsBiochemistry, Genetics and Molecular Biology
11
Article|22 citations·2015
Tangible Interactive Microbiology for Informal Science Education
Seung Ah Lee, Alice M. Chung, Nate Cira, Ingmar H. Riedel‐Kruse

We present an interactive platform that enables human users to interface with microbiological living cells through a touch-screen, thereby generating a tangible interactive experience with the microscopic world that is hidden to most people. Euglena gracilis, single-celled phototactic microorganisms, are imaged and optically stimulated via a microscope setup equipped with a projector and a touch-screen display. Users can directly interact with these organisms by drawing patterns onto the screen,

Human-Computer InteractionComputer Science
12
Article|21 citations·2014
The molecular evidence of neural plasticity induced by cerebellar repetitive transcranial magnetic stimulation in the rat brain: A preliminary report
Seung Ah Lee, Byung‐Mo Oh, Sang Jeong Kim, Nam‐Jong Paik
SJR Q2Neuroscience Letters
NeurologyNeuroscience
13
Article|19 citations·2011
Effects of zoledronic acid on bone mineral density during aromatase inhibitor treatment of Korean postmenopausal breast cancer patients
Seung Ah Lee, Seung Hyun Hwang, Sung Gwe Ahn, Hak Min Lee, Joon Jeong, Hy-De Lee
SJR Q1Breast Cancer Research and TreatmentOA
OncologyMedicine
14
Article|18 citations·2023
Aperture-encoded snapshot hyperspectral imaging with a lensless camera
Taeyoung Kim, Kyung Chul Lee, Nakkyu Baek, Hyesuk Chae, Seung Ah Lee
SJR Q1APL PhotonicsOA

We present a lensless snapshot hyperspectral camera that is capable of hyperspectral imaging over a broad spectrum using a compact and low-cost hardware configuration. We leverage the multiplexing capability of a lensless camera, a novel type of computational imaging device that replaces the lens with a thin mask. Our device utilizes a linear variable filter and a phase mask to encode spectral information onto a monochromatic image sensor, enabling recovery of hyperspectral image stacks from a s

Acoustics and UltrasonicsPhysics and Astronomy
15
Article|10 citations·2019
Deep peroneal nerve palsy after opening wedge high tibial osteotomy
Jin Hwa Jeong, Moon Chong Chang, Seung Ah Lee
SJR Q3MedicineOA

RATIONALE: Peroneal nerve injury is one of the major complications that may occur after closing wedge high tibial osteotomy (CWHTO). In contrast, the reduced risk of the peroneal nerve injury has been considered as one of the advantages of opening wedge HTO (OWHTO). PATIENT CONCERNS: A 61-year-old male who underwent OWHTO showed a dropped big toe immediately after surgery. DIAGNOSIS: Injury of deep peroneal nerve was confirmed by electrodiagnostic study. It was probably caused by a posterolatera

SurgeryMedicine

Research Areas

Biomedical EngineeringRadiationBiophysicsAcoustics and UltrasonicsMechanical EngineeringAtomic and Molecular Physics, and Optics

Seung Ah Leeの研究をNubintでさらに深く

この研究室の論文をアプリで開き、AIと共に読み、要約し、引用しましょう。