{"id":106,"date":"2018-06-13T11:17:04","date_gmt":"2018-06-13T02:17:04","guid":{"rendered":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/?page_id=106"},"modified":"2024-06-28T14:22:27","modified_gmt":"2024-06-28T05:22:27","slug":"en-publication","status":"publish","type":"page","link":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/en-publication\/","title":{"rendered":"Achievements"},"content":{"rendered":"<h3>Publication lists<\/h3>\n<ol>\n<li>Fukuma R,\u00a0<u>Yanagisawa T<\/u>, Nishimoto S, Sugano H &amp; Tamura K, Voluntary control 1 of semantic neural representations by imagery with conflicting visual stimulation, Communications biology, (2022) 5:214 | <a href=\"https:\/\/doi.org\/10.1038\/s42003-022-03137-x\">https:\/\/doi.org\/10.1038\/s42003-022-03137-x<\/a> | www.nature.com\/commsbio.<br \/>\n\u6211\u3005\u306e\u7814\u7a76\u304c\u65e5\u520a\u5de5\u696d\u65b0\u805e2022\/6\/29\u7248\u306e\u30c8\u30c3\u30d7\u30cb\u30e5\u30fc\u30b9\u3068\u3057\u3066\u63b2\u8f09\u3055\u308c\u307e\u3057\u305f\u3002<br \/>\n<a href=\"https:\/\/www.nikkan.co.jp\/articles\/view\/00640973\">\u65e5\u520a\u5de5\u696d\u65b0\u805e \u96fb\u5b50\u7248 (nikkan.co.jp)<\/a><\/li>\n<li>Fujita Y, <u>Yanagisawa T<\/u>, Fukuma R, Ura N, Oshino S &amp; Kishima H, Abnormal phase\u2013amplitude coupling characterizes the interictal state in epilepsy, Journal of Neural Engineering, 19:2, Doi:10.1088\/17 41-2552\/ac64c4, 2022\/4\/29.<br \/>\n<a href=\"https:\/\/iopscience.iop.org\/article\/10.1088\/1741-2552\/ac64c4\">Abnormal phase\u2013amplitude coupling characterizes the interictal state in epilepsy &#8211; IOPscience<\/a><br \/>\n\u30d7\u30ec\u30b9\u30ea\u30ea\u30fc\u30b9\uff1a<a href=\"http:\/\/www.qlifepro.com\/news\/20220608\/epilepsy-4.html\">http:\/\/www.qlifepro.com\/news\/20220608\/epilepsy-4.html<\/a><\/li>\n<li>Yamamoto S, <u>Yanagisawa T<\/u>, Fukuma R, Oshino S, Tani N, Khoo HM, Edakawa K, Kobayashi M, Tanaka M, Fujita Y, Kishima H. Data-driven electrophysiological feature based on deep learning to detect epileptic seizures, Journal of Neural Engineering, 2021 Sep 3. doi: 10.1088\/1741-2552\/ac23bf. Online ahead of print<\/li>\n<li>Hashimoto H, Takahashi K, Kameda S, Yoshida F, Maezawa H, Oshino S, Tani N, Khoo HM, <u>Yanagisawa T<\/u>, Yoshimine T, Kishima H, Hirata M, Motor and sensory cortical processing of neural oscillatory activities revealed by human swallowing using intracranial electrodes. 2021 Jun 25; 24(7):102786. Doi: 10.1016\/j.isci.2021.102786.<\/li>\n<li>Hashimoto H, Takahashi K, Kameda S, Yoshida F, Maezawa H, Oshino S, Tani N, Khoo HM, <u>Yanagisawa T<\/u>, Yoshimine T, Kishima H, Hirata M., Swallowing-related neural oscillation: an intracranial EEG study., <strong>Ann Clin Transl Neurol. <\/strong>2021 Jun;8(6):1224-1238. doi: 10.1002\/acn3.51344. Epub 2021 May 5.<\/li>\n<li>Hashimoto H, Khoo HM, <u>Yanagisawa T<\/u>, Tani N, Oshino S, Kishima H, Hirata M., Phase-amplitude coupling of ripple activities during seizure evolution with theta phase. <strong>Clin Neurophysiol.<\/strong> 2021 Jun;132(6):1243-1253. doi: 10.1016\/j.clinph.2021.03.007. Epub 2021 Mar 26.<\/li>\n<li>Hashimoto H, Kameda S, Maezawa H, Oshino S, Tani N, Khoo HM, <u>Yanagisawa T<\/u>, Yoshimine T, Kishima H, Hirata M., A swallowing decoder based on deep transfer learning: AlexNet classification of the intracranial electrocorticogram.,<strong> Int J Neural Syst.<\/strong> 2020 Sep 16:2050056. doi: 10.1142\/S0129065720500562. Online ahead of print.<\/li>\n<li>Hashimoto H, Khoo HM, <u>Yanagisawa T<\/u>, Tani N, Oshino S, Kishima H, Hirata M., Coupling between infraslow activities and high-frequency oscillations precedes sizure onset.,<strong> Epilepsia Open.<\/strong>, 2020 Aug 8;5(3): 501-506. doi: 10.1002\/epi4.12425. eCollection 2020 Sep.<\/li>\n<li>Zhang S, Yoshida W, Mano H,<u>Yanagisawa T<\/u>, Mancini F, Shibata K, Kawato M, Seymour B., Pain Control by Co-adaptive Learning in a Brain-Machine Interface., <strong>Current Biology.<\/strong> 2020 Aug 6:S0960-9822(20)31091-5. doi: 10.1016\/j.cub.2020.07.066. Online ahead of print. PMID:\u00a032795441<\/li>\n<li><u>Takufumi Yanagisawa<\/u><strong><u>*<\/u><\/strong>, Ryohei Fukuma, Ben Seymour, Masataka Tanaka, Koichi Hosomi, Okito Yamashita, Haruhiko Kishima, Yukiyasu Kamitani, and Youichi Saitoh, BCI training to move a virtual hand reduces phantom limb pain, <strong>Neurology<\/strong>, 95(4):e417-e426, 2020., doi: 10.1212\/WNL.00000000009858<\/li>\n<li>Shiraishi\u00a0Y, Kawahara Y, Yamashita O, Fukuma R, Yamamoto S, Saitoh Y, Kishima H,\u00a0<u>Yanagisawa\u00a0T<\/u>.<strong> *<\/strong>, Neural decoding of electrocorticographic signals using dynamic mode decomposition., <strong>J Neural Eng<\/strong><strong>.<\/strong> 2020 Jun 2; 17(3):036009. doi: 10.1088\/1741-2552\/ab8910.<\/li>\n<li>Yanagisawa T, Fukuma R, B Seymouret al. BCI training to move a virtual hand reduces phantom limb pain: A randomized crossover trial, <a href=\"https:\/\/n.neurology.org\/content\/95\/4\/e417.long\">NEUROLOGY<\/a>, Published Ahead of Print on July 16, 2020 as 10.1212\/WNL.0000000000009858\u00a0 <time datetime=\"2019-03-25\"><a href=\"https:\/\/www.asahi.com\/articles\/ASN7J6J39N7HPLBJ005.html\">media1<\/a><\/time> <time datetime=\"2019-03-25\"><a href=\"https:\/\/mainichi.jp\/articles\/20200716\/k00\/00m\/040\/281000c\">media2<\/a>\u00a0 <a href=\"https:\/\/www.amed.go.jp\/news\/release_20200717.html\">media3<\/a><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><\/time><a href=\"https:\/\/www.theravive.com\/today\/post\/is-it-possible-to-decrease-phantom-limb-pain-by-training-the-brain-0004608.aspx\"><time datetime=\"2019-03-25\">media4<\/time><\/a><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/healthcare-in-europe.com\/en\/news\/virtual-hand-training-reduces-phantom-limb-pain.html\">media5<\/a><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.medindia.net\/news\/braincomputer-interface-can-reduce-phantom-limb-pain-196146-1.htm\">media6<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.technologynetworks.com\/tn\/news\/brain-training-protocol-aims-to-reduce-phantom-limb-pain-337544\">media7<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.miragenews.com\/phantom-limb-pain-reduced-through-brain-power\/\">media8<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/topscoretestprep.com\/health-news\/phantom-limb-pain-reduced-through-brain-power\/\">media9<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/tectales.com\/bio-tech-it\/bci-training-reduces-phantom-limb-pain.html\">media10<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/opedge.com\/Articles\/ViewArticle\/2020-07-17\/bci-training-to-move-a-virtual-hand-reduces-phantom-limb-pain\">media11<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.theravive.com\/today\/post\/is-it-possible-to-decrease-phantom-limb-pain-by-training-the-brain-0004608.aspx\">media12<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.laopinioncoruna.es\/tendencias21\/2020\/07\/23\/cerebro-manipular-reducir-dolor-miembro\/1520411.html\">media13<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.lne.es\/tendencias21\/2020\/07\/23\/cerebro-manipular-reducir-dolor-miembro\/2662532.html\">media14<\/a><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.farodevigo.es\/tendencias21\/2020\/07\/23\/cerebro-manipular-reducir-dolor-miembro\/2317665.html?utm_source=rss\">media15<\/a><\/time><\/time><\/time><\/time><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\"><time datetime=\"2019-03-25\">\u00a0 <\/time><a href=\"https:\/\/www.eoswetenschap.eu\/psyche-brein\/fantoompijn-bestrijden-met-een-computer-kan-dat\">media16<\/a><\/time><\/time><\/time><\/time><\/time><\/time><\/li>\n<li><span class=\"nowrap\">Yoshiyuki Shiraishi<sup>1<\/sup><\/span>, <span class=\"nowrap\">Yoshinobu Kawahara<sup>2<\/sup><\/span>, <span class=\"nowrap\">Okito Yamashita<sup>3<\/sup><\/span>, <span class=\"nowrap\">Ryohei Fukuma<sup>4<\/sup><\/span>, <span class=\"nowrap\">Shota Yamamoto<sup>5<\/sup><\/span>, <span class=\"nowrap\">Youichi Saitoh<sup>6<\/sup><\/span>, <span class=\"nowrap\">Haruhiko Kishima<sup>7<\/sup><\/span> and <span class=\"nowrap\">Takufumi Yanagisawa<sup>8<\/sup><\/span>,Neural decoding of electrocorticographic signals using dynamic mode decomposition,<a href=\"https:\/\/iopscience.iop.org\/journal\/1741-2552\">Journal of Neural Engineering<\/a> ,<span class=\"wd-jnl-art-pub-date\">Accepted Manuscript online 14 April 2020<\/span>,https:\/\/doi.org\/10.1088\/1741-2552\/ab8910, <a href=\"https:\/\/iopscience.iop.org\/article\/10.1088\/1741-2552\/ab8910\">media<\/a><\/li>\n<li><span lang=\"EN-US\">Fukuma, R., Yanagisawa, T., Kinoshita, M. et al. Prediction of IDH and TERT promoter mutations in low-grade glioma from magnetic resonance images using a convolutional neural network. Sci Rep 9, 20311 (2019) doi:10.1038\/s41598-019-56767-3, <\/span><span style=\"display: inline !important; float: none; background-color: #ffffff; color: #000000; font-family: '\ufffdq\ufffd\ufffd\ufffdM\ufffdm\ufffdp\ufffdS Pro W3','Hiragino Kaku Gothic Pro','\ufffd\ufffd\ufffdC\ufffd\ufffd\ufffdI',Meiryo,'\ufffdl\ufffdr \ufffdo\ufffdS\ufffdV\ufffdb\ufffdN',sans-serif; font-size: 13px; font-style: normal; font-variant: normal; font-weight: 400; letter-spacing: normal; orphans: 2; text-align: left; text-decoration: none; text-indent: 0px; text-transform: none; -webkit-text-stroke-width: 0px; white-space: normal; word-spacing: 0px;\">Published <\/span><time datetime=\"2019-03-25\">30 Dec 2019\u3000<a href=\"https:\/\/www.nature.com\/articles\/s41598-019-56767-3\" target=\"_blank\" rel=\"noopener noreferrer\">media<\/a><\/time><\/li>\n<li>John SE, Grayden DB, Yanagisawa T., The future potential of the Stentrode., Expert Rev med Devices, 2019 Sep 30, 1745-2422, doi: 10.1080\/17434440.2019.1674139. [Epub ahead of print]<\/li>\n<li>St. Clair Kirin, Takufumi Yanagisawa<strong>*<\/strong>, Satoru Oshino, Kohtaroh Edakawa, Masataka Tanaka, Haruhiko Kishima, Yukio Nishimura<strong>*<\/strong>, Somatosensation Evoked by Cortical Surface Stimulation of the Human Primary Somatosensory Cortex, frontiers in Neuroscience, 24 Sep 2019<a href=\"https:\/\/www.frontiersin.org\/articles\/10.3389\/fnins.2019.01019\/full\">https:\/\/www.frontiersin.org\/articles\/10.3389\/fnins.2019.01019\/full<\/a><\/li>\n<li><a class=\"js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-1\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\">Jo Aoe<\/a>,\u00a0<a class=\"js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-2\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\">Ryohei Fukuma<\/a>,\u00a0<a class=\"icon icon-right-top icon-mail-12x9-blue pr15 js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-3\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\" data-corresp-id=\"c1\">Takufumi Yanagisawa<\/a>,\u00a0<a class=\"icon icon-right-top icon-mail-12x9-blue pr15 js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-4\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\" data-corresp-id=\"c2\">Tatsuya Harada<\/a>,<a class=\"js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-5\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\"> Masataka Tanaka<\/a>,<a class=\"js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-6\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\"> Maki Kobayashi<\/a>,<a class=\"js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-7\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\"> You Inoue<\/a>,<a class=\"js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-8\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\"> Shota Yamamoto<\/a>,<a class=\"js-no-scroll\" href=\"https:\/\/www.nature.com\/articles\/s41598-019-41500-x?utm_source=feedburner&amp;utm_medium=feed&amp;utm_campaign=Feed%3A+srep%2Frss%2Fcurrent+%28Scientific+Reports%29#auth-9\" data-track=\"click\" data-track-action=\"open author\" data-track-category=\"article body\" data-track-label=\"link\" data-test=\"author-name\"> Yuichiro Ohnishi<\/a> &amp;Haruhiko Kishima, <span lang=\"EN-US\"><span lang=\"EN-US\">Automatic diagnosis of neurological diseases using MEG signals with a deep neural network,\u00a0Scientific Reports volume<b data-test=\"journal-volume\">\u00a09<\/b>, https:\/\/doi.org\/10.1038\/s41598-019-41500-xArticle\u00a0number:\u00a0<span data-test=\"article-number\">5057<\/span> (<span data-test=\"article-publication-year\">2019<\/span>) <\/span><\/span>Published <time datetime=\"2019-03-25\">25 March 2019<\/time><\/li>\n<li>Ryohei Fukuma, Takufumi Yanagisawa, Masataka Tanaka, Fumiaki Yoshida, Koichi Hosomi, Satoru Oshino, Naoki Tani and Haruhiko Kishima, Real-Time Neurofeedback to Modulate \u03b2-Band Power in the Subthalamic Nucleus in Parkinson\u2019s Disease Patients,eNeuro 17 December 2018, 5 (6) ENEURO.0246-18.2018; DOI: https:\/\/doi.org\/10.1523\/ENEURO.0246-18.2018<\/li>\n<li>Takufumi YANAGISAWA, Ryohei FUKUMA, Ben SEYMOUR, Koichi HOSOMI, Haruhiko KISHIMA, Takeshi SHIMIZU, Hiroshi YOKOI, Masayuki HIRATA, Toshiki YOSHIMINE, Yukiyasu KAMITANI, Youichi SAITOH., MEG\u2013BMI to Control Phantom Limb Pain, Neurologia medico-chirurgica, Article ID st.2018-0099, [Advance publication] Released July 12, 2018, Online ISSN 1349-8029, Print ISSN 0470-8105<\/li>\n<li>Fukuma R, Yanagisawa T, Yokoi H, Hirata M, Yoshimine T, Saitoh Y, Kamitani Y and Kishima H (2018) Training in Use of Brain\u2013Machine Interface-Controlled Robotic Hand Improves Accuracy Decoding Two Types of Hand Movements. Front. Neurosci. 12:478. doi: 10.3389\/fnins.2018.00478<\/li>\n<li>Hashimoto H, Hirata M, Takahashi K, Kameda S, Katsuta Y, Yoshida F, Hattori N, Yanagisawa T, Palmer J, Oshino S, Yoshimine T, Kishima H., Non-invasive quantification of human swallowing using a simple motion tracking system. Sci Rep. 2018 Mar 23;8(1):5095. doi: 10.1038\/s41598-018-23486-0.PMID:29572522<\/li>\n<li>Toshihiko Araki#, Mai Onishi#, Takufumi Yanagisawa*, Masayuki Hirata, Yoshiyuki Watanabe, Soshiro Ogata, Kazu Honda, Mikio Watanabe, Yoshinori Iwatani, Shiro Yorifuji, Frequency-specific genetic influence on inferior parietal lobule activation commonly observed during action observation and execution, Scientific Reports 7(1), 17660, 2017, Dec 15; #Contributed equally to this work, *Corresponding to this work<\/li>\n<li>Hashimoto H, Hasegawa Y, Araki T, Sugata H, Yanagisawa T, Yorifuji S, Hirata M., Non-invasive detection of language-related prefrontal high gamma band activity with beamforming MEG., Scientific Reports., 2017; 7(1):14262. Doi:10.1038\/s41598-017-14452-3. PMID:29079768<\/li>\n<li>Izutsu N, Kinoshita M, Yanagisawa T, Nakanishi K, Sakai M, Kishima H., Preservation of Motor Function After Resection of Lower-Grade Glioma at the Precentral Gyrus and Prediction by Presurgical Functional Magnetic Resonance Imaging and Magnetoencephalography., World Neurosurg. 2017 Aug 4. pii: S1878-8750(17)31252-4. doi: 10.1016\/j.wneu.2017.07.152.<\/li>\n<li>Nakanishi Y*, <u>Yanagisawa T*<\/u>, Shin D, Kambara H, Yoshimura N, Tanaka M, Fukuma R, Kishima H, Hirata M, Koike Y, Mapping ECoG channel contributions to trajectory and muscle activity prediction in human sensorimotor cortex., Sci Rep. 2017 Mar 31; 7: 45486, DOI:10.1038\/srep45486, *Contributed equally to this work<\/li>\n<li>Kishima H, Kato A, Oshino S, Tani N, Maruo T, Khoo HM, <u>Yanagisawa T<\/u>, Edakawa K, Kobayashi M, Tanaka M, Hosomi K, Hirata M, Yoshimine T., Navigation-assisted trans-inferotemporal cortex selective amygdalohippocampectomy for mesial temporal lobe epilepsy; preserving the temporal stem., Neurol Res. 2017 Mar;39(3):223-230. doi: 10.1080\/01616412.2016.1275458. Epub 2017 Jan 9. PMID:28067149<\/li>\n<li><u>T. Yanagisawa<\/u>, R. Fukuma, B. Seymour, K. Hosomi, H. Kishima, T. Shimizu, H. Yokoi, M. Hirata, T. Yoshimine, Y. Kamitani, Y. Saitoh, Induced sensorimotor brain plasticity controls pain in phantom limb patients, Nature Communications, 7, 13209 (2016) DOI;10.1038\/NCOMMS13209<\/li>\n<li>Araki T, Hirata M, Yanagisawa T, Sugata H, Onishi M, Watanabe Y, Ogata S, Honda C, Hayakawa K, Yorifuji S., Language-related cerebral oscillatory changes are influenced equally by genetic and environmental factors., Neuroimage. 2016 May 27. pii: S1053-8119(16)30186-0. doi: 10.1016\/j.neuroimage.2016.05.066. PMID: 27241483<\/li>\n<li>Edakawa K*, <u>Yanagisawa T<\/u>*, Kishima H, Fukuma R, Oshino S, Khoo HM, Kobayashi M, Tanaka M, Yoshimine T., Detection of Epileptic Seizures Using Phase-Amplitude Coupling in Intracranial Electroencephalography., Sci Rep. 2016 May 5;6:25422. doi: 10.1038\/srep25422., PMID:27147119, *Contributed equally to this work<\/li>\n<li>Fukuma R, <u>Yanagisawa T<\/u>*, Saitoh Y, Hosomi K, Kishima H, Shimizu T, Sugata H, Yokoi H, Hirata M, Kamitani Y, Yoshimine T, Real-Time Control of a Neuroprosthetic Hand by Magnetoencephalographic Signals from Paralysed Patients, Scientific Reports, 2016 Feb 24;6:21781. doi: 10.1038\/srep21781.PMID:26904967 *Corresponding to this work<\/li>\n<li>Kishima H, <u>Yanagisawa T<\/u>, Goto Y, Oshino S, Maruo T, Tani N, Khoo HM, Hosomi K, Hirata M, Yoshimine T., Respiratory Function Under Intrathecal Baclofen Therapy in Patients With Spastic Tetraplegia., Neuromodulation. 2016 Aug;19(6):650-4. doi: 10.1111\/ner.12394. PMID:26833715, Epub 2016 Feb 2.<\/li>\n<li>Tani N, Kishima H, Khoo HM, <u>Yanagisawa T<\/u>, Oshino S, Maruo T, Hosomi K, Hirata M, Kazui H, Nomura KT, Aly MM, Kato A, Yoshimine T., Electrical stimulation of the parahippocampal gyrus for prediction of posthippocampectomy verbal memory decline., J Neurosurg., 15:1-8, 2016<\/li>\n<li>Misaki Nakamura, <u>Takufumi Yanagisawa<\/u>*, Yumiko Okamura, Ryohei Fukuma, Masayuki Hirata, Toshihiko Araki, Yukiyasu Kamitani, Shiro Yorifuji, Categorical discrimination of human body parts by magnetoencephalography, Front. Hum. Neurosci., 04 Nov 2015 9:609. doi: 10.3389\/fnhum.2015.00609. eCollection 2015.<\/li>\n<li>Khoo HM, Kishima H, Tani N, Oshino S, Maruo T, Hosomi K, <u>Yanagisawa T<\/u>, Kazui H, Watanabe Y, Shimokawa T, Aso T, Kawaguchi A, Yamashita F, Saitoh Y, Yoshimine T., Default mode network connectivity in patients with idiopathic normal pressure hydrocephalus., J Neurosurg., 21:1-9, 2015, doi: 10.3171\/2015.1.JNS141633. Epub 2015 Aug 21<\/li>\n<li>Ryohei Fukuma, <u>Takufumi Yanagisawa<\/u>*, Shiro Yorifuji, Ryu Kato, Hiroshi Yokoi, Youichi Saitoh, Haruhiko Kishima, Masayuki Hirata, Yukiyasu Kamitani, Toshiki Yoshimine, Closed-Loop Control of a Neuroprosthetic Hand by Magnetoencephalographic Signals, PLoS One, 2015 Jul 2;10(7):e0131547. doi: 10.1371\/journal.pone.0131547.<\/li>\n<li>Proceedings of the Seventh International Workshop on Advances in Electrocorticography, Anthony Ritaccio, Riki Matsumoto, Martha Morrel, Kyousuke Kamada, Mohamad Koubeissi, David Poeppel, Jean-Philippe Lachaux, Takufumi Yanagisawa, Masayuki Hirata, Chirstoph Guger, Gerwin Schalk, Epilepsy and Behavior 51 (2015) 312-320<\/li>\n<li>Morris S, Hirata M, Sugata H, Goto T, Matsushita K, <u>Yanagisawa T<\/u>, Saitoh Y, Kishima H, Yoshimine T., Patient Specific Cortical Electrodes for Sulcal and Gyral Implantation., IEEE Trans Biomed Eng. Vol.62, No.4, April, 1034-1041 2015<\/li>\n<li>Shinshi M, <u>Yanagisawa T**<\/u>, Hirata M, Goto T, Sugata H, Araki T, Okamura Y, Hasegawa Y, S. Ihara A, Yorifuji S, Temporospatial Identification of Language-Related Cortical Function by a Combination of Transcranial Magnetic Stimulation and Magnetoencephalography, Brain and behavior, 2015 Mar;5(3):e00317. doi: 10.1002\/brb3.317. Epub 2015 Jan 27. **Corresponding to this work, PMID 25642395<\/li>\n<li>Kageyama Y, Hirata M, <u>Yanagisawa T<\/u>, Shimokawa T, Sawada J, Morris S, Mizushima N, Kishima H, Sakura O, Yoshimine T., Severely affected ALS patients have broad and high expectations for brain-machine interfaces., Amyotroph Lateral Scler Frontotemporal Degener. 2014 Dec;15(7-8):513-9. doi: 10.3109\/21678421.2014.951943. Epub 2014 Sep 10<\/li>\n<li>Sugata H, Hirata M, <u>Yanagisawa T<\/u>, Shayne M, Matsushita K, Goto T, Yorifuji S, Yoshimine T., Alpha band functional connectivity correlates with the performance of brain-machine interfaces to decode real and imagined movements., Front Hum Neurosci. 2014 Aug 8;8:620. doi: 10.3389\/fnhum.2014.00620. eCollection 2014.<\/li>\n<li>Nakanishi Y*, <u>Yanagisawa T<\/u>*, Shin D, Chen C, Kambara H, Yoshimura N, Fukuma R, Kishima H, Hirata M, Koike Y., Decoding fingertip trajectory from electrocorticographic signals in humans., Neurosci Res. 2014 Aug;85:20-7. doi: 10.1016\/j.neures.2014.05.005. Epub 2014 May 29. *Contributed equally to this work<\/li>\n<li>Araki T, Hirata M, Sugata H, <u>Yanagisawa T<\/u>, Onishi M, Watanabe Y, Omura K, Honda C, Hayakawa K, Yorifuji S., Genetic and environmental influences on motor function: a magnetoencephalographic study of twins., Front Hum Neurosci. 2014 Jun 19;8:455. doi: 10.3389\/fnhum.2014.00455. eCollection 2014.<\/li>\n<li>Kishima H, Oshino S, Tani N, Maruo Y, Morris S, Ming Khoo H, <u>Yanagisawa T<\/u>, Shimono K, Okinaga T, Hirata M, Kato A, Yoshimine T., Which is the Most Appropriate Disconnection Surgery for Refractory Epilepsy In Childhood?, Neurol Med Chir (Tokyo). 2013: 53(11):814-20<\/li>\n<li>Hosokawa S, Hirata M, Goto T,<u> Yanagisawa T,<\/u> Sugata H, Araki T, Okamura Y, Hasegawa Y, Shinshi M, Yorifuji S., Cerebellar-related long latency motor response in upper limb musculature by transcranial magnetic stimulationof the cerebellum, Neuroreport. 2014: Apr 16:25(6):353-7. Doi: 10.1097\/WNR.0b013e32836377a6.<\/li>\n<li>Nakanishi Y*, <u>Yanagisawa T<\/u>*, Shin D, Fukuma R, Chen C, Kambara H, Hirata M, Yoshimine T, Koike Y., Prediction of Three-Dimensional Arm Trajectories Based on ECoG Signals Recorded from Human Sensorimotor cortex, PLoS One. 2013 Aug 21; 8(8):e72085, *Contributed equally to this work<\/li>\n<li><u>Yanagisawa T<\/u>, Yamashita O, Hirata M, Kishima H, Saitoh Y, Goto T, Yoshimine T, Kamitani Y., Regulation of motor representation by phase-amplitude coupling in the sensorimotor cortex., J Neurosci. 2012 Oct 31; 32(44): 15467-75. Doi:10.1523\/JNEUROSCI.2929-12.2012. PMID 23115184<\/li>\n<li>Sugata H, Goto T, Hirata M, <u>Yanagisawa T,<\/u> Shayne M, Matsushita K, Yoshimine T, Yorifuji S. ,Neural decoding of unilateral upper limb movements using single trial MEG signals., Brain Res. 2012 Aug 15; 1468: 29-37. Epub 2012 Jun 8<\/li>\n<li>Sugata H, Goto T, Hirata M, <u>Yanagisawa T<\/u>, Shayne M, Matsushita K, Yoshimine T, Yorifuji S., Movement-related neuromagnetic fields and performances of single trial classifications. Neuroreport 2012 Jan 4; 23(1):16-20<\/li>\n<li><u>Yanagisawa T<\/u>, Hirata M, Saitoh Y, Kishima H, Matsushita K, Goto T, Fukuma R, Yokoi H, Kamitani Y, Yoshimine T, Electrocorticographic control of a prosthetic arm in paralyzed patients, Annals of Neurology, 2012, Mar:71 (3):353-61 Aug 19doi: 10.1002\/ana.22613. Epub 2011 Nov 2.<\/li>\n<li>Maruo T, Saitoh Y, Hosomi K, Kishima H, Shimokawa T, Hirata M, Goto T, Morris S, Harada Y, <u>Yanagisawa T<\/u>, Aly MM, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/21316148\">Deep brain stimulation of the subthalamic nucleus improves temperature sensation in patients with Parkinson&#8217;s disease.<\/a>, Pain., 152(4):860-5., 2011<\/li>\n<li><u>Yanagisawa T<\/u>, Hirata M, Saitoh Y, Goto T, Kishima H, Fukuma R, Yokoi H, Kamitani Y, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/21314273\">Real-time control of a prosthetic hand using human electrocorticography signals.<\/a>, J Neurosurg. 2011, 114(6):1715-22<\/li>\n<li>Tani N, Hirata M, Motoki Y, Saitoh Y, <u>Yanagisawa T<\/u>, Goto T, Hosomi K, Kozu A, Kishima H, Yorifuji S, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/21255752\">Quantitative analysis of phosphenes induced by navigation-guided repetitive transcranial magnetic stimulation.<\/a>, Brain Stimul., 4(1):28-37. 2011<\/li>\n<li>Hirata M., Matsushita K., Suzuki T., Yoshida T., Sato F., Morris S., Yanagisawa T., Goto T. Kawato M., Yoshimine T., A fully-implantable wireless system for human brain-machine interfaces using brain surface electrodes: W-HERBS, IEICE Transactions on Communications, vol E94-B(9), pp.2448-2453, 2011<\/li>\n<li>Goto T, Hirata M, Umekawa Y, <u>Yanagisawa T<\/u>, Shayne M, Saitoh Y, Kishima H, Yorifuji S, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/20728551\">Frequency-dependent spatiotemporal distribution of cerebral oscillatory changes during silent reading: a magnetoencephalograhic group analysis.<\/a>, Neuroimage. 54(1):560-7. 2011<\/li>\n<li>Kishima H, Saitoh Y, Oshino S, Hosomi K, Ali M, Maruo T, Hirata M, Goto T, <u>Yanagisawa T,<\/u> Sumitani M, Osaki Y, Hatazawa J, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/19874903\">Modulation of neuronal activity after spinal cord stimulation for neuropathic pain; H(2)15O PET study.<\/a>, Neuroimage. 49(3):2564-9. 2010<\/li>\n<li>Hirata M, Goto T, Barnes G, Umekawa Y, <u>Yanagisawa T<\/u>, Kato A, Oshino S, Kishima H, Hashimoto N, Saitoh Y, Tani N, Yorifuji S, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/19681682\">Language dominance and mapping based on neuromagnetic oscillatory changes: comparison with invasive procedures.<\/a>, J Neurosurg.,112(3):528-38, 2010<\/li>\n<li><u>Yanagisawa T<\/u>, Hirata M, Kishima H, Goto T, Saitoh Y, Oshino S, Hosomi K, Kato A, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/19660914\">Movement induces suppression of interictal spikes in sensorimotor neocortical epilepsy.<\/a>, Epilepsy Res., 87(1):12-7, 2009<\/li>\n<li><u>Yanagisawa T,<\/u> Hirata M, Saitoh Y, Kato A, Shibuya D, Kamitani Y, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/19349227\">Neural decoding using gyral and intrasulcal electrocorticograms.<\/a>, Neuroimage., 45(4):1099-106, 2009<\/li>\n<li>Kinoshita M, Hashimoto N, Goto T,<u> Yanagisawa T<\/u>, Okita Y, Kagawa N, Kishima H, Tanaka H, Fujita N, Shimosegawa E, Hatazawa J, Yoshimine T., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/19111621\">Use of fractional anisotropy for determination of the cut-off value in 11C-methionine positron emission tomography for glioma.<\/a>, Neuroimage. 45(2):312-8, 2009<\/li>\n<li>Saitoh Y, <u>Yanagisawa T<\/u>, Oshino S, Hirata M, Goto T, Hosomi K, Tani N, Yoshimine T, Analysis of cortical reorganization (CR) of the patients with phantom-limb pain and the mechanism of motor cortex stimulation, Neuroscience Research Vol 58, Supplement 1, 2007, Pp.S29<\/li>\n<li><u>Yanagisawa T<\/u>, Tsumoto T, Kimura F., <a href=\"http:\/\/www.ncbi.nlm.nih.gov\/pubmed\/15579155\">Transiently higher release probability during critical period at thalamocortical synapses in the mouse barrel cortex: relevance to differential short-term plasticity of AMPA and NMDA EPSCs and possible involvement of silent synapses.<\/a>, Eur J Neurosci. , 20(11):3006-18., 2004<\/li>\n<\/ol>\n","protected":false},"excerpt":{"rendered":"<p>Publication lists Fukuma R,\u00a0Yanagisawa T, Nishimoto S, Sugano H &amp; Tamura K, Voluntary control 1 of semanti [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":1410,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":[],"_links":{"self":[{"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/pages\/106"}],"collection":[{"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/comments?post=106"}],"version-history":[{"count":25,"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/pages\/106\/revisions"}],"predecessor-version":[{"id":1497,"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/pages\/106\/revisions\/1497"}],"wp:featuredmedia":[{"embeddable":true,"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/media\/1410"}],"wp:attachment":[{"href":"https:\/\/www.med.osaka-u.ac.jp\/pub\/nsurg\/yanagisawa\/wp-json\/wp\/v2\/media?parent=106"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}