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2018

91. Park J, Jeong S, Lee DH, Zheng H, Kang HW, Bak J, and Choi J. Feasibility study of cylindrically diffusing 532 nm wavelength for treatment of

     pancreatic cancer. Journal of the Korean Physical Society 2018: 73: 1619-1624.

90. Shanmugapriya K, Kim H, Saravana PS, Chun B, and Kang HW. Astaxanthin-alpha tocopherol nanoemulsion formulation by emulsification

     methods: Investigation on anticancer, wound healing, and antibacterial effects. Colloids and Surfaces B: Biointerfaces 2018; 172: 170-179

89. Tran VN, Dasarandhi C, Truong VG, Kim Y, and Kang HW. Antibacterial activity on Staphylococcus aureau biofilm under combined

      exposure of glutaraldehyde, near-infrared light, and 405-nm laser. PloS One 2018; 13: e0202821

88. Kim HJ, Kim SW, Seok KH, Hwang CW, Jung MJ, and Kang HW. Hypericin-assisted photodynamic therapy on anaplastic thyroid cancer. Photodiagnosis

     and Photodynamic Therapy 2018; 25: 15-21

87. K Shanmugapriya, Kim H, Saravana PS, Chun B, and Kang HW. Fabrication of multifunctional nanocomposite film with rapid healing and antibacterial

     effect for wound management. International Journal of Biological Macromolecules 2018; 118: 1713-1725

86. Truong VG, Tran VN, Hwang J, and Kang HW. Effect of spatial light distribution on thermal response of vascular tissue. Biomedical Optics Express

      2018; 9: 3037-3048

85. Tran VN, Truong VG, Jeong S, and Kang HW. Computational analysis of linear energy modulation for laser thermal coagulation. Biomedical Optics

      Express 2018; 9: 2575-2587

84. Pham NT, Song W, Kim H, Jung JH, Park S, and Kang HW. Feasibility of LED-assisted CMOS camera: contrast estimation for laser tattoo treatment.

     Applied Sciences 2018; 8: 661

83. Kim MH, Yun C, Chalisserry EP, Lee YW, Kang HW, Park S, Jung W, O J, and Nam SY. Quantitative analysis of the role of nanohydroxyapatite (nHA) on

     3D-printed PCL/nHA composite scaffolds. Materials Letters 2018; 220: 112-115

82. Bui NQ, Cho S, Moorthy MS, Park SM, Piao Z, Nam SY, Kang HW, Kim C, and O J. In vivo photoacoustic monitoring using 700-nm region Raman source

     for targeting Prussian blue nanoparticles in mouse tumor model. Scientific Reports 2018; 8: 2000

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