최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
NTIS 바로가기Advanced materials interfaces, v.8 no.24, 2021년, pp.2100856 -
Kim, Hyuncheol (School of Electrical Engineering Korea Advanced Institute of Science and Technology (KAIST) 291 Daehak‐) , Choi, Hye‐Ryung (ro Yuseong‐) , Park, Yongjin (gu Daejeon 34141 Republic of Korea) , Jeon, Yongmin (Department of Dermatology Seoul National University Bundang Hospital (SNUBH) 82, Gumi‐) , Lee, Ho Seung (ro 173beon‐) , Jeong, Eun Gyo (gil, Bundang‐) , Park, Kyoung‐Chan (gu Seongnam 13620 Republic of Korea) , Choi, Kyung Cheol (School of Electrical Engineering Korea Advanced Institute of Science and Technology (KAIST) 291 Daehak‐)
AbstractOrganic light‐emitting diodes (OLEDs) and polymer light‐emitting diodes (PLEDs) are considered promising devices in that they are not limited to conventional display devices and can provide versatile functions in photomedicine. Many attempts to replace rigid photomedicine devic...
Zeng, Wei, Shu, Lin, Li, Qiao, Chen, Song, Wang, Fei, Tao, Xiao‐Ming. Fiber‐Based Wearable Electronics: A Review of Materials, Fabrication, Devices, and Applications. Advanced materials, vol.26, no.31, 5310-5336.
White, Matthew S., Kaltenbrunner, Martin, Głowacki, Eric D., Gutnichenko, Kateryna, Kettlgruber, Gerald, Graz, Ingrid, Aazou, Safae, Ulbricht, Christoph, Egbe, Daniel A. M., Miron, Matei C., Major, Zoltan, Scharber, Markus C., Sekitani, Tsuyoshi, Someya, Takao, Bauer, Siegfried, Sariciftci, Niyazi Serdar. Ultrathin, highly flexible and stretchable PLEDs. Nature photonics, vol.7, no.10, 811-816.
Kwon, Seonil, Hwang, Yong Ha, Nam, Minwoo, Chae, Hyeonwook, Lee, Ho Seung, Jeon, Yongmin, Lee, Somin, Kim, Chan Young, Choi, Seungyeop, Jeong, Eun Gyo, Choi, Kyung Cheol. Recent Progress of Fiber Shaped Lighting Devices for Smart Display Applications—A Fibertronic Perspective. Advanced materials, vol.32, no.5, 1903488-.
Lee, Geon-Hui, Moon, Hanul, Kim, Hyemin, Lee, Gae Hwang, Kwon, Woosung, Yoo, Seunghyup, Myung, David, Yun, Seok Hyun, Bao, Zhenan, Hahn, Sei Kwang. Multifunctional materials for implantable and wearable photonic healthcare devices. Nature reviews. Materials, vol.5, no.2, 149-165.
JeongThese authors contributed equally., Eun Gyo, Jeon, Yongmin, Cho, Seok Ho, Choi, Kyung Cheol. Textile-based washable polymer solar cells for optoelectronic modules: toward self-powered smart clothing. Energy & environmental science, vol.12, no.6, 1878-1889.
Yokota, Tomoyuki, Zalar, Peter, Kaltenbrunner, Martin, Jinno, Hiroaki, Matsuhisa, Naoji, Kitanosako, Hiroki, Tachibana, Yutaro, Yukita, Wakako, Koizumi, Mari, Someya, Takao. Ultraflexible organic photonic skin. Science advances, vol.2, no.4, e1501856-.
Lee, Yongsu, Lee, Hyeonwoo, Jang, Jaeeun, Lee, Jihee, Kim, Minseo, Lee, Jaehyuk, Kim, Hyunki, Yoo, Seunghyup, Yoo, Hoi-Jun. Sticker-Type Hybrid Photoplethysmogram Monitoring System Integrating CMOS IC With Organic Optical Sensors. IEEE journal on emerging and selected topics in circuits and systems, vol.7, no.1, 50-59.
Lee, Hyeonwoo, Kim, Eunhye, Lee, Yongsu, Kim, Hoyeon, Lee, Jaeho, Kim, Mincheol, Yoo, Hoi-Jun, Yoo, Seunghyup. Toward all-day wearable health monitoring: An ultralow-power, reflective organic pulse oximetry sensing patch. Science advances, vol.4, no.11, eaas9530-.
Lee, Seungwon, Seong, Hyejeong, Im, Sung Gap, Moon, Hanul, Yoo, Seunghyup. Organic flash memory on various flexible substrates for foldable and disposable electronics. Nature communications, vol.8, no.1, 725-.
Choi, Seungyeop, Kwon, Seonil, Kim, Hyuncheol, Kim, Woohyun, Kwon, Jung Hyun, Lim, Myung Sub, Lee, Ho Seung, Choi, Kyung Cheol. Highly Flexible and Efficient Fabric-Based Organic Light-Emitting Devices for Clothing-Shaped Wearable Displays. Scientific reports, vol.7, 6424-.
Song, Young Jin, Kim, Jae-Won, Cho, Ha-Eun, Son, Young Hyun, Lee, Min Ho, Lee, Jaegab, Choi, Kyung Cheol, Lee, Sung-Min. Fibertronic Organic Light-Emitting Diodes toward Fully Addressable, Environmentally Robust, Wearable Displays. ACS nano, vol.14, no.1, 1133-1140.
Zhang, Lijuan, Jiang, Xiaoxiao, Jiang, Wei, Li, Shuang, Chi, Yuxi, Liu, Hao, Zhang, Maoyi, Li, Juyao, Fang, Min, Pan, Bing, Chen, Yuli, Shen, Chuanan, Guo, Xu, Li, Rui, Guo, Liang, Su, Yewang. Infrared Skin‐Like Active Stretchable Electronics Based on Organic-Inorganic Composite Structures for Promotion of Cutaneous Wound Healing. Advanced materials technologies, vol.4, no.8, 1900150-.
Jeon, Yongmin, Choi, Hye‐Ryung, Lim, Myungsub, Choi, Seungyeop, Kim, Hyuncheol, Kwon, Jeong Hyun, Park, Kyoung‐Chan, Choi, Kyung Cheol. A Wearable Photobiomodulation Patch Using a Flexible Red‐Wavelength OLED and Its In Vitro Differential Cell Proliferation Effects. Advanced materials technologies, vol.3, no.5, 1700391-.
Jeon, Yongmin, Choi, Hye-Ryung, Kwon, Jeong Hyun, Choi, Seungyeop, Nam, Kyung Mi, Park, Kyoung-Chan, Choi, Kyung Cheol. Sandwich-structure transferable free-form OLEDs for wearable and disposable skin wound photomedicine. Light, science & applications, vol.8, no.1, 114-.
Chen, Hao, Yeh, Tzu‐Hung, He, Juan, Zhang, Caicai, Abbel, Robert, Hamblin, Michael R., Huang, Yingying, Lanzafame, Raymond J., Stadler, Istvan, Celli, Jonathan, Liu, Shun‐Wei, Wu, Shin‐Tson, Dong, Yajie. Flexible quantum dot light‐emitting devices for targeted photomedical applications. Journal of the Society for Information Display, vol.26, no.5, 296-303.
Sommer, Andrei P., Pinheiro, Antonio L. B., Mester, Adam R., Franke, Ralf-Peter, Whelan, Harry T.. Biostimulatory Windows in Low-Intensity Laser Activation: Lasers, Scanners, and NASA's Light-Emitting Diode Array System. Journal of clinical laser medicine & surgery, vol.19, no.1, 29-33.
Semin. Cutaneous Med. Surg. Avci P. 41 32 2013
Attili, S.K., Lesar, A., McNeill, A., Camacho-Lopez, M., Moseley, H., Ibbotson, S., Samuel, I.D.W., Ferguson, J.. An open pilot study of ambulatory photodynamic therapy using a wearable low-irradiance organic light-emitting diode light source in the treatment of nonmelanoma skin cancer. British journal of dermatology : BJD, vol.161, no.1, 170-173.
Guo, H.W., Lin, L.T., Chen, P.H., Ho, M.H., Huang, W.T., Lee, Y.J., Chiou, S.H., Hsieh, Y.S., Dong, C.Y., Wang, H.W.. Low-fluence rate, long duration photodynamic therapy in glioma mouse model using organic light emitting diode (OLED). Photodiagnosis and photodynamic therapy, vol.12, no.3, 504-510.
Weiss, Robert A., McDaniel, David H., Geronemus, Roy G., Weiss, Margaret A.. Clinical trial of a novel non-thermal LED array for reversal of photoaging: Clinical, histologic, and surface profilometric results. Lasers in surgery and medicine, vol.36, no.2, 85-91.
Weiss, Robert A., McDaniel, David H., Geronemus, Roy G., MARGARET, A. WEISS, KAREN, L. BEASLEY, Munavalli, Girish M., Bellew, Supriya G.. Clinical Experience with Light‐Emitting Diode (LED) Photomodulation. Dermatologic surgery : official publication for American Society for Dermatologic Surgery [et al.], vol.31, no.3, 1199-1205.
Huang, Pei-Jane, Huang, Yi-Chau, Su, Mei-Fang, Yang, Tzu-Yi, Huang, Jone-Ray, Jiang, Cho-Pei. In Vitro Observations on the Influence of Copper Peptide Aids for the LED Photoirradiation of Fibroblast Collagen Synthesis. Photomedicine and laser surgery, vol.25, no.3, 183-190.
Lee, S.Y., Park, K.H., Choi, J.W., Kwon, J.K., Lee, D.R., Shin, M.S., Lee, J.S., You, C.E., Park, M.Y.. A prospective, randomized, placebo-controlled, double-blinded, and split-face clinical study on LED phototherapy for skin rejuvenation: Clinical, profilometric, histologic, ultrastructural, and biochemical evaluations and comparison of three different treatment settings. Journal of photochemistry and photobiology. B, Biology, vol.88, no.1, 51-67.
Barolet, Daniel, Roberge, Charles J, Auger, François A, Boucher, Annie, Germain, Lucie. Regulation of Skin Collagen Metabolism In Vitro Using a Pulsed 660 nm LED Light Source: Clinical Correlation with a Single-Blinded Study. The Journal of investigative dermatology, vol.129, no.12, 2751-2759.
McDaniel, D.H., Weiss, R.A., Geronemus, R.G., Mazur, C., Wilson, S., Weiss, M.A.. Varying ratios of wavelengths in dual wavelength LED photomodulation alters gene expression profiles in human skin fibroblasts. Lasers in surgery and medicine, vol.42, no.6, 540-545.
The 7th 2014 Biomedical Engineering Int. Conf Viravaidya‐Pasuwat K. 1 2014
Chen, Hao, He, Juan, Lanzafame, Raymond, Stadler, Istvan, Hamidi, Hamid El, Liu, Hui, Celli, Jonathan, Hamblin, Michael R., Huang, Yingying, Oakley, Emily, Shafirstein, Gal, Chung, Ho‐Kyoon, Wu, Shin‐Tson, Dong, Yajie. Quantum dot light emitting devices for photomedical applications. Journal of the Society for Information Display, vol.25, no.3, 177-184.
Wu, Xingjia, Alberico, Stephanie, Saidu, Edward, Rahman Khan, Sazzadur, Zheng, Shijun, Romero, Rebecca, Sik Chae, Hyun, Li, Sheng, Mochizuki, Amane, Anders,, Juanita. Organic light emitting diode improves diabetic cutaneous wound healing in rats. Wound repair and regeneration : official publication of the Wound Healing Society [and] the European Tissue Repair Society, vol.23, no.1, 104-114.
Mignon, Charles, Botchkareva, Natalia V., Uzunbajakava, Natallia E., Tobin, Desmond J.. Photobiomodulation devices for hair regrowth and wound healing: a therapy full of promise but a literature full of confusion. Experimental dermatology, vol.25, no.10, 745-749.
Stokowski, Laura A.. Fundamentals of Phototherapy for Neonatal Jaundice. Advances in neonatal care : official journal of the National Association of Neonatal Nurses, vol.6, no.6, 303-312.
Arnolda, Gaston, Chien, Tran Dinh, Hayen, Andrew, Hoi, Nguyen Thi Xuan, Maningas, Katherine, Joe, Priscilla, Cavallin, Francesco, Trevisanuto, Daniele, Moccia, Luciano. A comparison of the effectiveness of three LED phototherapy machines, single- and double-sided, for treating neonatal jaundice in a low resource setting. PloS one, vol.13, no.10, e0205432-.
Lee, S.M., Choi, C.S., Choi, K.C., Lee, H.C.. Low resistive transparent and flexible ZnO/Ag/ZnO/Ag/WO3 electrode for organic light-emitting diodes. Organic electronics, vol.13, no.9, 1654-1659.
Han, Jun Hee, Kim, Do-hong, Jeong, Eun Gyo, Lee, Tae-Woo, Lee, Myung Keun, Park, Jeong Woo, Lee, Hoseung, Choi, Kyung Cheol. Highly Conductive Transparent and Flexible Electrodes Including Double-Stacked Thin Metal Films for Transparent Flexible Electronics. ACS applied materials & interfaces, vol.9, no.19, 16343-16350.
Han, Jun Hee, Kim, Dohong, Lee, Tae-Woo, Jeong, Eun Gyo, Lee, Ho Seung, Choi, Kyung Cheol. Ultra-High-Resolution Organic Light-Emitting Diodes with Color Conversion Electrode. ACS photonics, vol.5, no.5, 1891-1897.
Zhou, Yinhua, Fuentes-Hernandez, Canek, Shim, Jaewon, Meyer, Jens, Giordano, Anthony J., Li, Hong, Winget, Paul, Papadopoulos, Theodoros, Cheun, Hyeunseok, Kim, Jungbae, Fenoll, Mathieu, Dindar, Amir, Haske, Wojciech, Najafabadi, Ehsan, Khan, Talha M., Sojoudi, Hossein, Barlow, Stephen, Graham, Samuel, Brédas, Jean-Luc, Marder, Seth R., Kahn, Antoine, Kippelen, Bernard. A Universal Method to Produce Low-Work Function Electrodes for Organic Electronics. Science, vol.336, no.6079, 327-332.
Kim, Young‐Hoon, Han, Tae‐Hee, Cho, Himchan, Min, Sung‐Yong, Lee, Chang‐Lyoul, Lee, Tae‐Woo. Polyethylene Imine as an Ideal Interlayer for Highly Efficient Inverted Polymer Light‐Emitting Diodes. Advanced functional materials, vol.24, no.24, 3808-3814.
Höfle, Stefan, Schienle, Alexander, Bruns, Michael, Lemmer, Uli, Colsmann, Alexander. Enhanced Electron Injection into Inverted Polymer Light‐Emitting Diodes by Combined Solution‐Processed Zinc Oxide/Polyethylenimine Interlayers. Advanced materials, vol.26, no.17, 2750-2754.
Kim, Kyungmok, Suh, Minwon, Choi, Jihae, Lee, Dongchan, Kim, Youngsun, Cheong, Sang Hun, Kim, Donghyuk, Jeon, Duk Young. Conjugated Polyelectrolyte Hybridized ZnO Nanoparticles as a Cathode Interfacial Layer for Efficient Polymer Light‐Emitting Diodes. Advanced functional materials, vol.25, no.48, 7450-7456.
Cho, Hyunsu, Yun, Changhun, Yoo, Seunghyup. Multilayer transparent electrode for organic light-emitting diodes: tuning its optical characteristics. Optics express, vol.18, no.4, 3404-.
Thomschke, Michael, Nitsche, Robert, Furno, Mauro, Leo, Karl. Optimized efficiency and angular emission characteristics of white top-emitting organic electroluminescent diodes. Applied physics letters, vol.94, no.8, 083303-.
Jeong, Eun Gyo, Kwon, Seonil, Han, Jun Hee, Im, Hyeon-Gyun, Bae, Byeong-Soo, Choi, Kyung Cheol. A mechanically enhanced hybrid nano-stratified barrier with a defect suppression mechanism for highly reliable flexible OLEDs. Nanoscale, vol.9, no.19, 6370-6379.
Dewhirst, M. W., Viglianti, B. L., Lora-Michiels, M., Hanson, M., Hoopes, P. J.. Basic principles of thermal dosimetry and thermal thresholds for tissue damage from hyperthermia. International journal of hyperthermia : the official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group, vol.19, no.3, 267-294.
Greenhalgh, David G., Lawless, Mary Beth, Chew, Bradford B., Crone, Willem A., Fein, Michael E., Palmieri, Tina L.. Temperature Threshold for Burn Injury: An Oximeter Safety Study. The Journal of burn care & rehabilitation, vol.25, no.5, 411-415.
Martin, N.A., Falder, S.. A review of the evidence for threshold of burn injury. Burns : journal of the International Society for Burn Injuries, vol.43, no.8, 1624-1639.
ISO 10993 International Organization for Standardization 2009.
Chabert, R., Fouque, L., Pinacolo, S., Garcia‐Gimenez, N., Bonnans, M., Cucumel, K., Domloge, N.. Evaluation of light‐emitting diodes (LED) effect on skin biology (in vitro study). Skin research and technology : official journal of International Society for Bioengineering and the Skin (ISBS) [and] International Society for Digital Imaging of Skin (ISDIS) [and] International Soci, vol.21, no.4, 426-436.
Karu, T.I., Kolyakov, S.F.. Exact Action Spectra for Cellular Responses Relevant to Phototherapy. Photomedicine and laser surgery, vol.23, no.4, 355-361.
van Breugel, Hans H. F. I., Bär, P. R. Dop. Power density and exposure time of He‐Ne laser irradiation are more important than total energy dose in photo‐biomodulation of human fibroblasts in vitro. Lasers in surgery and medicine, vol.12, no.5, 528-537.
Di Lullo, Gloria A., Sweeney, Shawn M., Körkkö, Jarmo, Ala-Kokko, Leena, San Antonio, James D.. Mapping the Ligand-binding Sites and Disease-associated Mutations on the Most Abundant Protein in the Human, Type I Collagen. The Journal of biological chemistry, vol.277, no.6, 4223-4231.
Canty, Elizabeth G., Kadler, Karl E.. Procollagen trafficking, processing and fibrillogenesis. Journal of cell science, vol.118, no.7, 1341-1353.
Buehler, Markus J.. Nature designs tough collagen: Explaining the nanostructure of collagen fibrils. Proceedings of the National Academy of Sciences of the United States of America, vol.103, no.33, 12285-12290.
Kruger, Thomas E., Miller, Andrew H., Wang, Jinxi. Collagen Scaffolds in Bone Sialoprotein-Mediated Bone Regeneration. The Scientific World Journal, vol.2013, 812718-.
Nijhuis, W. H., Eastwood, D. M., Allgrove, J., Hvid, I., Weinans, H. H., Bank, R. A., Sakkers, R. J.. Current concepts in osteogenesis imperfecta: bone structure, biomechanics and medical management. Journal of children's orthopaedics, vol.13, no.1, 1-11.
Kim, S. K., You, H. R., Kim, S. H., Yun, S. J., Lee, S. C., Lee, J. B.. Skin photorejuvenation effects of light‐emitting diodes (LEDs): a comparative study of yellow and red LEDs in vitro and in vivo. Clinical and experimental dermatology, vol.41, no.7, 798-805.
Chaves, Maria Emília de Abreu, de Araújo, Angélica Rodrigues, Piancastelli, André Costa Cruz, Pinotti, Marcos. Effects of low-power light therapy on wound healing: LASER x LED *. Anais brasileiros de dermatología, vol.89, no.4, 616-623.
Rheinwatd, J.G., Green, H.. Seria cultivation of strains of human epidemal keratinocytes: the formation keratinizin colonies from single cell is. Cell, vol.6, no.3, 331-343.
해당 논문의 주제분야에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.
*원문 PDF 파일 및 링크정보가 존재하지 않을 경우 KISTI DDS 시스템에서 제공하는 원문복사서비스를 사용할 수 있습니다.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.