1)Barker AT, Jalinous R, Freeston IL: Non-invasive magnetic stimulation of human motor cortex. Lancet 1: 1106-1107, 1985
2)Pascual-Leone A, Valls-Solé J, Brasil-Neto JP, Cammarota A, Grafman J, et al: Akinesia in Parkinson's disease. II. Effects of subthreshold repetitive transcranial motor cortex stimulation. Neurology 44: 892-898, 1994
3)Lomarev MP, Kanchana S, Bara-Jimenez W, Iyer M, Wassermann EM, et al: Placebo-controlled study of rTMS for the treatment of Parkinson's disease. Mov Disord 21: 325-331, 2006
4)Maruo T, Hosomi K, Shimokawa T, Kishima H, Oshino S, et al: High-frequency repetitive transcranial magnetic stimulation over the primary foot motor area in Parkinson's disease. Brain Stimul 6: 884-891, 2013
5)Ueno S, Tashiro T, Harada K: Localized stimulation of neural tissues in the brain by means of a paired configuration of time-varying magnetic fields. J Appl Phys 64: 5862-5864, 1988
6)Ueno S, Matsuda T, Fujiki M: Functional mapping of the human motor cortex obtained by focal and vectorial magnetic stimulation of the brain. IEEE Trans Magn 26: 1539-1544, 1990
7)Grandori F, Ravazzani P: Magnetic stimulation of the motor cortex—theoretical considerations. IEEE Trans Biomed Eng 38: 180-191, 1991
8)Lin VW, Hsiao IN, Dhaka V: Magnetic coil design considerations for functional magnetic stimulation. IEEE Trans Biomed Eng 47: 600-610, 2000
9)Hsu KH, Durand DM: A 3-D differential coil design for localized magnetic stimulation. IEEE Trans Biomed Eng 48: 1162-1168, 2001
10)Zangen A, Roth Y, Voller B, Hallett M: Transcranial magnetic stimulation of deep brain regions: evidence for efficacy of the H-coil. Clin Neurophysiol 116: 775-779, 2005
11)Roth Y, Amir A, Levkovitz Y, Zangen A: Three-dimensional distribution of the electric field induced in the brain by transcranial magnetic stimulation using figure-8 and deep H-coils. J Clin Neurophysiol 24: 31-38, 2007
12)Roth Y, Levkovitz Y, Pell GS, Ankry M, Zangen A: Safety and characterization of a novel multi-channel TMS stimulator. Brain Stimul 7: 194-205, 2014
13)Ruohonen J, Ilmoniemi RJ: Focusing and targeting of magnetic brain stimulation using multiple coils. Med Biol Eng Comput 36: 297-301, 1998
14)Fadini T, Matthäus L, Rothkegel H, Sommer M, Tergau F, et al: H-coil: induced electric field properties and input/output curves on healthy volunteers, comparison with a standard figure-of-eight coil. Clin Neurophysiol 120: 1174-1182, 2009
15)Arai N, Okabe S, Furubayashi T, Terao Y, Yuasa K, et al: Comparison between short train, monophasic and biphasic repetitive transcranial magnetic stimulation (rTMS) of the human motor cortex. Clin Neurophysiol 116: 605-613, 2005
16)Peterchev AV, Jalinous R, Lisanby SH: A transcranial magnetic stimulator inducing near-rectangular pulses with controllable pulses width (cTMS). IEEE Trans Biomed Eng 55: 257-266, 2008
17)Peterchev AV, Goetz SM, Westin GG, Luber B, Lisanby SH: Pulse width dependence of motor threshold and input-output curve characterized with controllable pulse parameter transcranial magnetic stimulation. Clin Neurophysiol 124: 1364-1372, 2013
18)関野正樹, 上野照剛, 大崎博之: 経頭蓋的磁気刺激における渦電流分布の数値解析. 日本生体電気刺激研究会誌20: 1-4, 2006
19)Nagaoka T, Watanabe S, Sakurai K, Kunieda E, Watanabe S, et al: Development of realistic high-resolution whole-body voxel models of Japanese adult males and females of average height and weight, and application of models to radio-frequency electromagnetic-field dosimetry. Phys Med Biol 49: 1-15, 2004
20)Gabriel S, Lau RW, Gabriel C: The dielectric properties of biological tissues: II. Measurements in the frequency range 10 Hz to 20 GHz. Phys Med Biol 41: 2251-2269, 1996
21)瀧山善弘, 陶山桃子, 山本啓太, キムドンミン, 圓尾知之, 他: 個人差を反映させた脳モデルの作成とスカラーポテンシャル有限差分法による系図が飯食刺激の渦電流解析. 日本AEM学会誌23: 374-379, 2015
22)Hirayama A, Saitoh Y, Kishima H, Shimokawa T, Oshino S, et al: Reduction of intractable deafferentation pain by navigation-guided repetitive transcranial magnetic stimulation of the primary motor cortex. Pain 122: 22-27, 2006
23)Saitoh Y, Hirayama A, Kishima H, Shimokawa T, Oshino S, et al: Reduction of intractable deafferentation pain due to spinal cord or peripheral lesion by high-frequency repetitive transcranial magnetic stimulation of the primary motor cortex. J Neurosurg 107: 555-559, 2007
24)Bischoff C, Machetanz J, Meyer BU, Conrad B: Repetitive magnetic nerve stimulation: technical considerations and clinical use in the assessment of neuromuscular transmission. Electroencephalogr Clin Neurophysiol 93: 15-20, 1994
25)Weyh T, Wendicke K, Mentschel C, Zantow H, Siebner HR: Marked differences in the thermal characteristics of figure-of-eight shaped coils used for repetitive transcranial magnetic stimulation. Clin Neurophysiol 116: 1477-1486, 2005
26)Kato T, Sekino M, Matsuzaki T, Nishikawa A, Saitoh Y, et al: Electromagnetic characteristics of eccentric figure-eight coils for transcranial magnetic stimulation: A numerical study. Journal of Applied Physics 111: 07B322, 2012[DOI: 10.1063/1.3676426]
27)Sekino M, Ohsaki H, Takiyama Y, Yamamoto K, Matsuzaki T, et al: Eccentric figure-eight coils for transcranial magnetic stimulation. Bioelectromagnetics 36: 55-65, 2015
28)Okada A, Nishikawa A, Fukushima T, Taniguchi K, Miyazaki F, et al: Magnetic navigation system for home use of repetitive transcranial magnetic stimulation (rTMS). Proceedings of the ICME International Conference on Complex Medical Engineering, 1-4 July 2012, pp112-118[DOI: 10.1109/ICCME.2012.6275591]
29)Yasumuro Y, Hosomi K, Saitoh Y, Matsuzaki T: Uncertainty assessment of target localization for rTMS treatment. Proceedings of the ICME International Conference on Complex Medical Engineering, 1-4 July 2012, pp784-787[DOI: 10.1109/ICCME.2012.6275590]
30)Sekino M, Suyama M, Kim D, Saitoh Y: A magnetic stimulator coil with high robustness to positioning error. Proceedings of the URSI General Assembly and Scientific Symposium, 16-23 Aug, 2014, pp1-3[DOI: 10.1109/URSIGASS.2014.6930094]
31)Yamamoto K, Suyama M, Takiyama Y, Kim D, Saitoh Y, et al: Characteristics of bowl-shaped coils for transcranial magnetic stimulation. J Appl Phys 117: 17A318, 2015[DOI: 10.1063/1.4914876]