Enhancement of skin tumor laser hyperthermia with Ytterbium nanoparticles: numerical simulation

被引:1
|
作者
Othman, Zamrood A. [1 ]
Hassan, Yousif M. [1 ]
Karim, Abdulkarim Y. [2 ]
机构
[1] Salahaddin Univ Erbil, Coll Sci, Dept Phys, Erbil, Kurdistan, Iraq
[2] Salahaddin Univ Erbil, Coll Sci, Dept Biol, Erbil, Kurdistan, Iraq
关键词
beam shapes of laser; cylindrical bioheat equation; laser hyperthermia; finite difference method; YbNPs; TEMPERATURE; DELIVERY; THERAPY;
D O I
10.1088/1748-605X/ad3535
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Laser hyperthermia therapy (HT) has emerged as a well-established method for treating cancer, yet it poses unique challenges in comprehending heat transfer dynamics within both healthy and cancerous tissues due to their intricate nature. This study investigates laser HT therapy as a promising avenue for addressing skin cancer. Employing two distinct near-infrared (NIR) laser beams at 980 nm, we analyze temperature variations within tumors, employing Pennes' bioheat transfer equation as our fundamental investigative framework. Furthermore, our study delves into the influence of Ytterbium nanoparticles (YbNPs) on predicting temperature distributions in healthy and cancerous skin tissues. Our findings reveal that the application of YbNPs using a Gaussian beam shape results in a notable maximum temperature increase of 5 degrees C within the tumor compared to nanoparticle-free heating. Similarly, utilizing a flat top beam alongside YbNPs induces a temperature rise of 3 degrees C. While this research provides valuable insights into utilizing YbNPs with a Gaussian laser beam configuration for skin cancer treatment, a more thorough understanding could be attained through additional details on experimental parameters such as setup, exposure duration, and specific implications for skin cancer therapy.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Numerical Simulation of Enhancement of Superficial Tumor Laser Hyperthermia with Silicon Nanoparticles
    Sokolovskaya, Olga I.
    Sergeeva, Ekaterina A.
    Golovan, Leonid A.
    Kashkarov, Pavel K.
    Khilov, Aleksandr V.
    Kurakina, Daria A.
    Orlinskaya, Natalia Y.
    Zabotnov, Stanislav V.
    Kirillin, Mikhail Y.
    PHOTONICS, 2021, 8 (12)
  • [2] OPTIMIZATION OF THE HYPERTHERMIA TREATMENT OF A SKIN TUMOR CONTAINING NANOPARTICLES
    Larreur, Marion
    Lamien, Bernard
    Orlande, Helcio R. B.
    VIII INTERNATIONAL CONFERENCE ON COMPUTATIONAL METHODS FOR COUPLED PROBLEMS IN SCIENCE AND ENGINEERING (COUPLED PROBLEMS 2019), 2019, : 79 - 90
  • [3] NUMERICAL HYPERTHERMIA SIMULATION FOR A 3-D TRIPLE-LAYERED SKIN STRUCTURE WITH EMBEDDED VASCULAR COUNTERCURRENT NETWORK AND NANOPARTICLES
    Orndorff, Casey
    Dai, Weizhong
    INTERNATIONAL JOURNAL OF HEAT AND TECHNOLOGY, 2016, 34 : S179 - S184
  • [4] Numerical simulation of the skin tissue subjected to hyperthermia treatment using a nonlinear DPL model
    Chaudhary, Rajneesh Kumar
    Kumar, Dinesh
    Rai, Kabindra Nath
    Singh, Jitendra
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2023, 34
  • [5] Interstitial laser skin tightening: Numerical simulation and clinical results
    Mordon, Serge
    Wassmer, Benjamin
    Schoofs, Michel
    Zemmouri, Jaouad
    LASERS IN SURGERY AND MEDICINE, 2008, : 60 - 60
  • [6] Laser fractional photothermolysis of the skin: Numerical simulation of microthermal zones
    Marqa, Mohamad Feras
    Mordon, Serge
    JOURNAL OF COSMETIC AND LASER THERAPY, 2014, 16 (02) : 57 - 65
  • [7] BIOMECHANICS OF SUPERPARAMAGNETIC NANOPARTICLES FOR LASER HYPERTHERMIA
    Fatima, Maryam
    Sohail, Ayesha
    Akram, Khush Bakhat
    Sherin, Lubna
    Butt, Saad Ihsan
    Abid, M.
    Beg, O. Anwar
    BIOMEDICAL ENGINEERING-APPLICATIONS BASIS COMMUNICATIONS, 2020, 32 (01):
  • [8] A Parallel 2D Numerical Simulation of Tumor Cells Necrosis by Local Hyperthermia
    Reis, R. F.
    Loureiro, F. S.
    Lobosco, M.
    2ND INTERNATIONAL CONFERENCE ON MATHEMATICAL MODELING IN PHYSICAL SCIENCES 2013 (IC-MSQUARE 2013), 2014, 490
  • [9] Picosecond lasing in ytterbium fibre laser with nonlinear optical loop mirror: experiment and numerical simulation
    Borodkin, A. A.
    Khudyakov, D. V.
    Vartapetov, S. K.
    QUANTUM ELECTRONICS, 2015, 45 (02) : 98 - 101
  • [10] OCT-guided laser hyperthermia with passively tumor-targeted gold nanoparticles
    Sirotkina, Marina A.
    Elagin, Vadim V.
    Shirmanova, Marina V.
    Bugrova, Marina L.
    Snopova, Ludmila B.
    Kamensky, Vladislav A.
    Nadtochenko, Victor A.
    Denisov, Nikolay N.
    Zagaynova, Elena V.
    JOURNAL OF BIOPHOTONICS, 2010, 3 (10-11) : 718 - 727