Acknowledgement
본 연구는 교육부의 재원으로 한국연구재단의 지원을 받아 수행된 지자체-대학 협력기반지역혁신 사업(과제관리번호: 2021RIS-003)과 보건복지부 및 과학기술정보통신부의 재원으로 한국보건산업진흥원의 보건의료기술연구개발사업(과제관리번호: HU21C0081) 지원을 받아 수행하였음.
References
- Mueller J, Legon W, Opitz A, Sato TF, Tyler WJ. Transcranial focused ultrasound modulates intrinsic and evoked EEG dynamics. Brain stimulation. 2014;7(6):900-8. https://doi.org/10.1016/j.brs.2014.08.008
- Legon W, Ai L, Bansal P, Mueller JK. Neuromodulation with single-element transcranial focused ultrasound in human thalamus. Human brain mapping. 2018;39(5):1995-2006. https://doi.org/10.1002/hbm.23981
- Lee W, Kim H, Jung Y, Song I-U, Chung YA, Yoo S-S. Image-guided transcranial focused ultrasound stimulates human primary somatosensory cortex. Scientific reports. 2015;5(1):1-10. https://doi.org/10.9734/JSRR/2015/14076
- Samoudi MA, Van Renterghem T, Botteldooren D. Computational modeling of a single-element transcranial focused ultrasound transducer for subthalamic nucleus stimulation. Journal of neural engineering. 2019;16(2):026015.
- Mueller JK, Ai L, Bansal P, Legon W. Computational exploration of wave propagation and heating from transcranial focused ultrasound for neuromodulation. Journal of neural engineering. 2016;13(5):056002.
- Park TY, Pahk KJ, Kim H. Method to optimize the placement of a single-element transducer for transcranial focused ultrasound. Computer methods and programs in biomedicine. 2019;179:104982.
- Huiskamp G, Vroeijenstijn M, van Dijk R, Wieneke G, van Huffelen AC. The need for correct realistic geometry in the inverse EEG problem. IEEE Transactions on Biomedical Engineering. 1999;46(11):1281-7.
- Montes-Restrepo V, van Mierlo P, Strobbe G, Staelens S, Vandenberghe S, Hallez H. Influence of skull modeling approaches on EEG source localization. Brain topography. 2014;27(1):95-111. https://doi.org/10.1007/s10548-013-0313-y
- Robertson J, Martin E, Cox B, Treeby BE. Sensitivity of simulated transcranial ultrasound fields to acoustic medium property maps. Physics in Medicine & Biology. 2017;62(7):2559.
- Clement G, Hynynen K. Correlation of ultrasound phase with physical skull properties. Ultrasound in medicine & biology. 2002;28(5):617-24. https://doi.org/10.1016/S0301-5629(02)00503-3
- Jones RM, Hynynen K. Comparison of analytical and numerical approaches for CT-based aberration correction in transcranial passive acoustic imaging. Physics in Medicine & Biology. 2015;61(1):23.
- Deffieux T, Konofagou EE. Numerical study of a simple transcranial focused ultrasound system applied to blood-brain barrier opening. IEEE transactions on ultrasonics, ferroelectrics, and frequency control. 2010;57(12):2637-53. https://doi.org/10.1109/TUFFC.2010.1738
- Seo H, Huh H, Lee E-H, Park J. Numerical Evaluation of the Effects of Transducer Displacement on Transcranial Focused Ultrasound in the Rat Brain. Brain sciences. 2022;12(2):216.
- Constans C, Mateo P, Tanter M, Aubry J-F. Potential impact of thermal effects during ultrasonic neurostimulation: retrospective numerical estimation of temperature elevation in seven rodent setups. Physics in Medicine & Biology. 2018;63(2):025003.
- De Angelis A, Leonetti M, Apollonio F, Liberti M, Aglioti S, Ruocco G. Computational optimization of transcranial focused ultrasound stimulation: Toward noninvasive, selective stimulation of deep brain structures. Applied Physics Letters. 2021;118(23):233702.
- Salahshoor H, Shapiro MG, Ortiz M. Transcranial focused ultrasound generates skull-conducted shear waves: Computational model and implications for neuromodulation. Applied Physics Letters. 2020;117(3):033702.
- Spitzer VM, Whitlock DG. The Visible Human Dataset: the anatomical platform for human simulation. The Anatomical Record: An Official Publication of the American Association of Anatomists. 1998;253(2):49-57.
- https://www.sci.utah.edu/cibc-software/seg3d.html. Acessed on 10 May 2022.
- Cox BT, Kara S, Arridge SR, Beard PC. k-space propagation models for acoustically heterogeneous media: Application to biomedical photoacoustics. The Journal of the Acoustical Society of America. 2007;121(6):3453-64. https://doi.org/10.1121/1.2717409
- Mueller JK, Ai L, Bansal P, Legon W. Numerical evaluation of the skull for human neuromodulation with transcranial focused ultrasound. Journal of neural engineering. 2017;14(6):066012.
- Legon W, Bansal P, Tyshynsky R, Ai L, Mueller JK. Transcranial focused ultrasound neuromodulation of the human primary motor cortex. Scientific reports. 2018;8(1):1-14.
- Koh H, Park TY, Chung YA, Lee J-H, Kim H. Acoustic simulation for transcranial focused ultrasound using GAN-based synthetic CT. IEEE Journal of Biomedical and Health Informatics. 2021;26(1):161-71.
- Farcito S, Puonti O, Montanaro H, Saturnino GB, Nielsen JD, Madsen CG, et al. Accurate anatomical head segmentations: a data set for biomedical simulations. 41st Annual International Conference of the IEEE Engineering in Medicine and Biology Society. 2019; 6118-23.