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Hyunham Kim

Pohang University of Science and Technology · 工学

研究室紹介

Professor Hyunham Kim's research lab specializes in advancing biomedical imaging and ultrasound technologies with a focus on developing innovative, non-invasive, and cost-effective diagnostic tools. The lab pioneers cutting-edge photoacoustic and ultrasound imaging systems—such as handheld photoacoustic finders, endoscopic dual-mode imaging probes, and high-frequency single-element ultrasound systems—aimed at improving cancer detection and treatment monitoring. A key emphasis is placed on integrating optical and acoustic modalities for enhanced imaging performance while minimizing radiation exposure and hardware complexity. The lab also explores energy-efficient solutions for critical infrastructure, including renewable energy integration in cellular base stations, reflecting a broader commitment to sustainable technology development.

photoacoustic imagingultrasound transducerscancer diagnosticsrenewable energy integrationbiomedical imaging

Research Overview

Papers
134
Total Citations
2,774
Papers (5y)
40
Primary Field
工学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
40total
2022
2023
2024
2025
2026
Citations per year (5y)
583total
20222023202420252026

Selected Papers

15
1
Article|67 citations·2021
A photoacoustic finder fully integrated with a solid-state dye laser and transparent ultrasound transducer
Byullee Park, Moongyu Han, Jeongwoo Park, Taejeong Kim, Hanyoung Ryu, Youngseok Seo, Won Jong Kim, Hyung Ham Kim, Chulhong Kim
SJR Q1PhotoacousticsOA

The standard-of-care for evaluating lymph node status in breast cancers and melanoma metastasis is sentinel lymph node (SLN) assessment performed with a handheld gamma probe and radioisotopes. However, this method inevitably exposes patients and physicians to radiation, and the special facilities required limit its accessibility. Here, we demonstrate a non-ionizing, cost-effective, handheld photoacoustic finder (PAF) fully integrated with a solid-state dye laser and transparent ultrasound transd

Biomedical EngineeringEngineering
2
Article|63 citations·2024
Enhanced dual-mode imaging: Superior photoacoustic and ultrasound endoscopy in live pigs using a transparent ultrasound transducer
Jaewoo Kim, Dasom Heo, Seonghee Cho, Mingyu Ha, Jeongwoo Park, Joongho Ahn, Minsu Kim, Donggyu Kim, Da Hyun Jung, Hyung Ham Kim, Hee Man Kim, Chulhong Kim
SJR Q1Science AdvancesOA

Dual-mode photoacoustic/ultrasound endoscopy (ePAUS) is a promising tool for preclinical and clinical interventions. To be clinically useful, ePAUS must deliver high-performance ultrasound imaging comparable to commercial systems and maintain high photoacoustic imaging performance at long working distances. This requires a transducer with an intact physical aperture and coaxial alignment of acoustic and optical beams within the probe, a challenging integration task. We present a high-performance

Biomedical EngineeringEngineering
3
Article|44 citations·2020
Investigation of cell mechanics using single-beam acoustic tweezers as a versatile tool for the diagnosis and treatment of highly invasive breast cancer cell lines: an in vitro study
Hae Gyun Lim, Hsiao‐Chuan Liu, Chi Woo Yoon, Hayong Jung, Min Gon Kim, Changhan Yoon, Hyung Ham Kim, K. Kirk Shung
SJR Q1Microsystems & NanoengineeringOA

Advancements in diagnostic systems for metastatic cancer over the last few decades have played a significant role in providing patients with effective treatment by evaluating the characteristics of cancer cells. Despite the progress made in cancer prognosis, we still rely on the visual analysis of tissues or cells from histopathologists, where the subjectivity of traditional manual interpretation persists. This paper presents the development of a dual diagnosis and treatment tool using an in vit

Biomedical EngineeringEngineering
4
Article|41 citations·2015
Angled-focused 45MHz PMN-PT single element transducer for intravascular ultrasound imaging
Sangpil Yoon, Jay A. Williams, Bong Jin Kang, Changhan Yoon, Nestor E. Cabrera-Munoz, Jong Seob Jeong, Sang Goo Lee, K. Kirk Shung, Hyung Ham Kim
SJR Q1Sensors and Actuators A Physical
Radiology, Nuclear Medicine and ImagingMedicine
5
Article|35 citations·2008
20 MHz/40 MHz dual element transducers for high frequency harmonic imaging
Hyung Ham Kim, Jorge B. Cannata‐Andía, R. Liu, Jin Ho Chang, Ronald H. Silverman, K. Kirk Shung
SJR Q1IEEE Transactions on Ultrasonics Ferroelectrics and Frequency ControlOA

Concentric annular type dual element transducers for second harmonic imaging at 20 MHz / 40 MHz were designed and fabricated to improve spatial resolution and depth of penetration for ophthalmic imaging applications. The outer ring element was designed to transmit the 20 MHz signal and the inner circular element was designed to receive the 40 MHz second harmonic signal. Lithium niobate (LiNbO(3)), with its low dielectric constant, was used as the piezoelectric material to achieve good electrical

Radiology, Nuclear Medicine and ImagingMedicine
6
Article|32 citations·2020
Versatile Single-Element Ultrasound Imaging Platform using a Water-Proofed MEMS Scanner for Animals and Humans
Seongwook Choi, Jin Young Kim, Hae Gyun Lim, Jin Woo Baik, Hyung Ham Kim, Chulhong Kim
SJR Q1Scientific ReportsOA

Single-element transducer based ultrasound (US) imaging offers a compact and affordable solution for high-frequency preclinical and clinical imaging because of its low cost, low complexity, and high spatial resolution compared to array-based US imaging. To achieve B-mode imaging, conventional approaches adapt mechanical linear or sector scanning methods. However, due to its low scanning speed, mechanical linear scanning cannot achieve acceptable temporal resolution for real-time imaging, and the

Biomedical EngineeringEngineering
7
Article|30 citations·2018
Renewable Energy Assisted Traffic Aware Cellular Base Station Energy Cooperation
Faran Ahmed, Muhammad Naeem, Waleed Ejaz, Muhammad Iqbal, Alagan Anpalagan, Hyung Ham Kim
SJR Q1EnergiesOA

With global concern for climate change, and for cutting down the energy cost, especially in off grid areas, use of renewable energy has been gaining widespread attention in many areas including cellular communication. The base station (BS) has emerged as a strong candidate for the integration of renewable energy sources (RES), particularly solar and wind. The incorporation of renewable energy opens many possibilities for energy conservation through strategies such as energy cooperation between B

Electrical and Electronic EngineeringEngineering
8
Article|29 citations·2020
Classification of Breast Cancer Cells Using the Integration of High-Frequency Single-Beam Acoustic Tweezers and Convolutional Neural Networks
Hae Gyun Lim, O‐Joun Lee, K. Kirk Shung, Jin Taek Kim, Hyung Ham Kim
SJR Q1CancersOA

Single-beam acoustic tweezers (SBAT) is a widely used trapping technique to manipulate microscopic particles or cells. Recently, the characterization of a single cancer cell using high-frequency (>30 MHz) SBAT has been reported to determine its invasiveness and metastatic potential. Investigation of cell elasticity and invasiveness is based on the deformability of cells under SBAT's radiation forces, and in general, more physically deformed cells exhibit higher levels of invasiveness and therefo

Biomedical EngineeringEngineering
9
Article|17 citations·2017
Power Consumption Efficiency Evaluation of Multi-User Full-Duplex Visible Light Communication Systems for Smart Home Technologies
Muhammad Tabish Niaz, Fatima Imdad, Hyung Ham Kim
SJR Q1EnergiesOA

Visible light communication (VLC) has recently gained significant academic and industrial attention. VLC has great potential to supplement the functioning of the upcoming radio-frequency (RF)-based 5G networks. It is best suited for home, office, and commercial indoor environments as it provides a high bandwidth and high data rate, and the visible light spectrum is free to use. This paper proposes a multi-user full-duplex VLC system using red-green-blue (RGB), and white emitting diodes (LEDs) fo

Electrical and Electronic EngineeringEngineering
10
Article|17 citations·2025
Clinical ultrasound, photoacoustic, and fluorescence image-guided lymphovenous anastomosis microsurgery via a transparent ultrasound transducer array
Jeongwoo Park, Donghyeon Oh, Jinhee Yoo, Honghyeon Ha, Dong-Gyu Kim, Hyung Ham Kim, Yujin Myung, Chulhong Kim
SJR Q1Nature CommunicationsOA

Multimodal optical and ultrasound imaging (USI) provides complementary diagnostic insights. However, because conventional USI uses opaque ultrasound (US) transducers, integrating these two modalities results in a bulky and complicated handheld probe in which neither modality performs efficiently. Although transparent ultrasound transducers (TUTs) solve these issues by acting as optical windows, enabling the seamless combination of light and US beams, single-element TUTs are not common in clinica

Biomedical EngineeringEngineering
11
Article|16 citations·2021
Thermal Ablation and High-Resolution Imaging Using a Back-to-Back (BTB) Dual-Mode Ultrasonic Transducer: In Vivo Results
Hae Gyun Lim, Hyunhee Kim, Hyunhee Kim, Kyungmin Kim, Jeongwoo Park, Yeonggeun Kim, Jinhee Yoo, Dasom Heo, Jinhwan Baik, Sung‐Min Park, Hyung Ham Kim, Hyung Ham Kim
SJR Q1SensorsOA

We present a back-to-back (BTB) structured, dual-mode ultrasonic device that incorporates a single-element 5.3 MHz transducer for high-intensity focused ultrasound (HIFU) treatment and a single-element 20.0 MHz transducer for high-resolution ultrasound imaging. Ultrasound image-guided surgical systems have been developed for lesion monitoring to ensure that ultrasonic treatment is correctly administered at the right locations. In this study, we developed a dual-element transducer composed of two

Biomedical EngineeringEngineering
12
Article|16 citations·2013
Optimal Entropy-Based Cooperative Spectrum Sensing for Maritime Cognitive Radio Networks
Waleed Ejaz, Ghalib A. Shah, Najam Ul Hasan, Hyung Ham Kim
SJR Q2EntropyOA

Maritime cognitive radio networks (MCRNs) have recently been proposed for opportunistic utilization of the licensed band. Spectrum sensing is one of the key issues for the successful deployment of the MCRNs. The maritime environment is unique in terms of radio wave propagation over water, surface reflection and wave occlusions. In order to deal with the challenging maritime environment, we proposed an optimal entropy-based cooperative spectrum sensing. As the results of spectrum sensing are sens

Computer Networks and CommunicationsComputer Science
13
Article|14 citations·2022
Performance comparison of high-speed photoacoustic microscopy: opto-ultrasound combiner versus ring-shaped ultrasound transducer
Hyo-Jin Kim, Jin Young Kim, Seonghee Cho, Joongho Ahn, Yeonggeun Kim, Hyungham Kim, Chulhong Kim, Hyungham Kim, Chulhong Kim
SJR Q2Biomedical Engineering LettersOA
Biomedical EngineeringEngineering
14
Article|13 citations·2021
Collapse pressure measurement of single hollow glass microsphere using single-beam acoustic tweezer
Jinhee Yoo, Hyunhee Kim, Hyunhee Kim, Yeonggeun Kim, Hae Gyun Lim, Hyung Ham Kim, Hyung Ham Kim
SJR Q1Ultrasonics SonochemistryOA

Microbubbles are widely used in medical ultrasound imaging and drug delivery. Many studies have attempted to quantify the collapse pressure of microbubbles using methods that vary depending on the type and population of bubbles and the frequency band of the ultrasound. However, accurate measurement of collapse pressure is difficult as a result of non-acoustic pressure factors generated by physical and chemical reactions such as dissolution, cavitation, and interaction between bubbles. In this st

Biomedical EngineeringEngineering
15
Article|12 citations·2007
2F-3 Design of 20 MHz Convex Array Transducers for High Frequency Ophthalmic Imaging
Hyung Ham Kim, Jin Ho Chang, Jonathan M. Cannata, K. Kirk Shung
Proceedings/Proceedings - IEEE Ultrasonics Symposium

20 MHz 192 element convex array transducers are proposed for high frequency ophthalmic imaging. A convex array can cover the whole eye within a single image, achieve higher frame rate, create multiple focal zones with dynamic aperture and implement Doppler or color flow mapping whereas other types of arrays are limited to implement those features. A 1.5 wavelength pitch, 24 mm radius of curvature and 52deg maximum view angle were chosen to provide adequate spatial sampling and resolution along w

Biomedical EngineeringEngineering

Research Areas

Biomedical EngineeringRadiology, Nuclear Medicine and ImagingElectrical and Electronic EngineeringMolecular BiologyMechanics of MaterialsAerospace Engineering

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