經同儕審查的國際期刊論文
- Printed all-organic transparent microelectrodes using PEDOT:PSS and PEDOT:PSS/PEGDA hydrogel for neural stimulation and recording, Tatsuya Murakami, Shotaro Yoshida, Mechanical Engineering Journal, (2026) accepted.
- Highly flexible, thin, and stable battery integrating organohydrogel electrolytes and carbon fabric electrodes for soft electronics, Takuto Nakabayashi, Tatsuya Murakami, Arata Okoshi, Shotaro Yoshida, Mechanical Engineering Journal, (2026) accepted.
- Totally organic and self-powered glucose sensor based on energy-harvesting enzymatic biofuel cells, Hitomi Yahagi, Shotaro Yoshida, Shun Okada, Kan Shoji and Yuya Morimoto, Mechanical Engineering Journal, (2026) accepted.
- Low-cost fabrication of graphene-based microelectrodes via SU-8 latent-pattern lift-off for organic microdevices, Arata Okoshi, Tatsuya Murakami, Toshiya Aoki, Shotaro Yoshida, Journal of Micromechanics and Microengineering, 36, 045013, (2026). [Link] [日語簡明介紹]
- Microstructured chitosan mesh scaffold for efficient production of cell-cultured meat, Jiacheng Xu, Takeshi Hori, Kennedy Omondi Okeyo, Buntaro Tsurumi, Shotaro Yoshida, Yuji Nashimoto, Hirokazu Kaji, Scientific Reports, (2026).
- Carbon Nanotube-based Printed All-organic Microelectrode Arrays for Neural Stimulation and Recording, Tatsuya Murakami, Naoki Yada, Shotaro Yoshida Micromachines, 15(5), 650 (2024). [Link] [日語簡明介紹]
- Enzyme electrode for glucose oxidation using low‐solubility 4‐aminodiphenylamine derivatives as electron mediator Yosuke Masakari, Naoya Totsuka, Yasutomo Shinohara, Shotaro Yoshida, Hiroya Abe, Kotaro Ito, Matsuhiko Nishizawa Electrochemical Science Advances, 2, e2100036 (2022).
- Porous Microneedle-Based Wearable Device for Monitoring of Transepidermal Potential Yuina Abe, Ryohei Takizawa, Natsumi Kimura, Hajime Konno, Shotaro Yoshida, Matsuhiko Nishizawa, Biomedical Engineering Advances, 1, 10004 (2021)
- Transdermal electroosmotic flow generated by a porous microneedle array patch Shinya Kusama, Kaito Sato, Yuuya Matsui, Natsumi Kimura, Hiroya Abe, Shotaro Yoshida, Matsuhiko Nishizawa, Nature Communications, 12, 658 (2021).
- Totally organic electrical skin patch powered by flexible biobattery Shotaro Yoshida, Hiroya Abe, Yuina Abe, Shinya Kusama, Kenichi Tsukada, Ryo Komatsubara, Matsuhiko Nishizawa, Journal of Physics: Energy, 2(4), 044004 (2020).
- Hydrogel-based sealed microchamber arrays for rapid medium exchange and drug testing of cell spheroids Shotaro Yoshida, Kensuke Sumomozawa, Kuniaki Nagamine, Matsuhiko Nishizawa, Biomedical Microdevices, 22(3), 49 (2020).
- Totally Transparent Hydrogel-Based Subdural Electrode with Patterned Salt Bridge Ayaka Nishimura, Ryota Suwabe, Yuka Ogihara, Shotaro Yoshida, Hiroya Abe, Shin-ichiro Osawa, Atsuhiro Nakagawa, Teiji Tominaga, Matsuhiko Nishizawa, Biomedical Microdevices, 22, 57 (2020).
- Series-Connected Flexible Biobatteries for Higher-Voltage Electrical Skin Patches Shotaro Yoshida, Takaya Mizuno, Shinya Kusama, Kaito Sato, Bibek Raut, Matsuhiko Nishizawa, ACS Applied Electronic Materials, 2(1), 170 – 176 (2019).
- Self-Moisturizing Smart Contact Lens Employing Electroosmosis Shinya Kusama, Kaito Sato, Shotaro Yoshida, Matsuhiko Nishizawa, Advanced Materials Technologies, 5(1), 1900889 (2019).
- Hydrogel-Based Organic Subdural Electrode with High Conformability to Brain Surface. Shuntaro Oribe*, Shotaro Yoshida*(*equal contribution), Shinya Kusama, Shin-Ichiro Osawa, Atsuhiro Nakagawa, Masaki Iwasaki, Teiji Tominaga, Matsuhiko Nishizawa, Scientific Reports, 9(1), 13379 (2019).
- Red Light-Promoted Skin Barrier Recovery: Spatiotemporal Evaluation by Transepidermal Potential Yuina Abe, Hajime Konno, Shotaro Yoshida, Takeshi Yamauchi, Kenshi Yamasaki, Mitsuhiro Denda, Matsuhiko Nishizawa, PLoS ONE, 14(7), e0219198 (2019)
- Transepidermal Potential of the Stretched Skin Yuina Abe, Hajime Konno, Shotaro Yoshida, Matsuhiko Nishizawa, Journal of Biomechanical Engineering, 141(8), 084503 (2019).
- Hydrogel Microchambers Integrated with Organic Electrodes for Efficient Electrical Stimulation of Human iPSC-derived Cardiomyocytes Shotaro Yoshida, Kensuke Sumomozawa, Kuniaki Nagamine, Matsuhiko Nishizawa, Macromolecular Bioscience, 19(6) 1900060 (2019).
- 3D arrays of microcages by two-photon lithography for spatial organization of living cells. Florian Larramendy, Shotaro Yoshida, Daniela Maier, Zoltan Fekete, Shoji Takeuchi, Oliver Paul, Lab on a chip, 19(5), 875 – 884 (2019).
- Organic Electrochromic Timer for Enzymatic Skin Patches Hiroyuki Kai, Wataru Suda, Shotaro Yoshida, Matsuhiko Nishizawa, Biosensors and Bioelectronics, 123(1) 108 – 113 (2019).
- Multipoint Bending and Shape Retention of a Pneumatic Bending Actuator by a Variable Stiffness Endoskeleton Yoshida, Shotaro, Morimoto, Yuya, Zheng, Lanying, Onoe, Hiroaki, Takeuchi, Shoji, Soft Robotics, 5(6), 718 – 725 (2018).
- Assembly and Connection of Micropatterned Single Neurons for Neuronal Network Formation Yoshida, Shotaro, Kato-Negishi, Midori, Takeuchi, Shoji, Micromachines, 9(5), 235 (2018).
- Photolithographic patterned surface forms size-controlled lipid vesicles. M Gertrude Gutierrez, Shotaro Yoshida, Noah Malmstadt, Shoji Takeuchi, APL bioengineering, 2(1), 016104 (2018).
- Surface modification for patterned cell growth on substrates with pronounced topographies using sacrificial photoresist and parylene-C peel-off Larramendy, F., Yoshida, S., Jalabert, L., Takeuchi, S., Paul, O., Journal of Micromechanics and Microengineering, 26(9), 095017 (2016).
- Mobile Microplates for Morphological Control and Assembly of Individual Neural Cells Yoshida, S., Teshima, T., Kuribayashi-Shigetomi, K., Takeuchi, S., Advanced Healthcare Materials, 5(4), 415 – 420 (2016).
- Vertical Flow Lithography for Fabrication of 3D Anisotropic Particles Shohei Habasaki, Won Chul Lee, Shotaro Yoshida, Shoji Takeuchi, Small, 11(48), 6391 – 6396 (2015).
- Liquid-filled tunable lenticular lens Yoshinobu Iimura, Hiroaki Onoe, Tetsuhiko Teshima, Yun Jung Heo, Shotaro Yoshida, Yuya Morimoto, Shoji Takeuchi, Journal of Micromechanics and Microengineering, 25(3), 035030 (2015).
- Three-Dimensional Microassembly of Cell-Laden Microplates by in situ Gluing with Photocurable Hydrogels. Shotaro Yoshida, Koji Sato, Shoji Takeuchi, International Journal of Automation Technology, 8(1), 95 – 101 (2014).
- Relationship between phase and amplitude generalization errors in complex- and real-valued feedforward neural networks Akira Hirose, Shotaro Yoshida, Neural Computing & Applications, 22(7-8), 1357 – 1366 (2013).
- Generalization Characteristics of Complex-Valued Feedforward Neural Networks in Relation to Signal Coherence Akira Hirose, Shotaro Yoshida, IEEE Transactions on Neural Networks and Learning Systems, 23(4), 541 – 551 (2012).
獲獎
- 2025年11月 新領域開拓表彰:利用有機與生物電子元件及生物MEMS開拓軟性微奈米工程新領域,日本機械學會 微奈米工程部門 吉田 昭太郎
- 2021年3月 青年優秀獎:基於有機材料的生物相容性穿戴式/植入式電子元件開發,化學與微奈米系統學會 吉田 昭太郎
- 2019年12月 第25屆青葉工學研究獎勵獎, 利用濕態電子技術開發高效生物電刺激與量測系統,青葉工學振興會 吉田 昭太郎
- 2016年10月 獎勵獎,日本電氣學會 感測器與微機械部門,第33屆「感測器、微機械及應用系統」研討會:用於原代培養神經細胞形態控制與迴路組裝的單神經細胞微板 吉田 昭太郎
- 2013年10月 優秀海報獎,日本電氣學會 感測器與微機械部門,第30屆「感測器、微機械及應用系統」研討會:用於神經細胞分離培養、形態控制與三維操作的微板 吉田 昭太郎
透過競爭型科研經費與研究補助執行的課題
- 2026–2029年度「融合有機電子電路與培養腦迴路的電子腦組織創建」,日本科學技術振興機構 PRESTO(さきがけ)「透過理解與控制多細胞動態創建超生物組織」(計畫主持人)
- 2025–2026年度「面向生物電腦迴路構建的培養神經元自由輸送與動態布線技術開發」,日本文部科學省 學術變革領域研究(A)公開徵集研究(計畫主持人)
- 2024–2025年度「面向環境友善型機器人的全有機材料電動軟體機器人致動器開發」,第42屆卡西歐科學振興財團研究補助 (計畫主持人)
- 2024–2026年度「面向環境探測軟體機器人的具有力覺感測功能的變色龍皮膚顯示器開發」,日揮・實吉獎學會研究補助(計畫主持人)
- 2024–2026年度「可自主驅動的生物混合機器人創建」,日本學術振興會 科研費・基盤研究(B)(共同研究者)
- 2023–2027年度「透過有機離子電子學開拓神經元—膠質細胞迴路的單細胞級仿生系統」,日本學術振興會 科研費・基盤研究(B) (計畫主持人)
- 2023年度「利用新型凝膠基板開發軟性全有機電子電路印刷技術」,鷹野學術振興財團2023年度研究補助 (計畫主持人)
- 2023年度「面向穿戴式人體通電元件的小型生物燃料電池高功率與高耐久性技術開發」,Power Academy研究補助 (計畫主持人)
- 2021–2023年度「可再現老化時運動功能下降的腦—骨骼肌模型創建」,日本學術振興會 科研費・基盤研究(B)(共同研究者)
- 2020–2022年度「生物發電微針貼片開發」,日本科學技術振興機構 A-STEP產學共同研究(培育型)(共同研究者)
- 2020–2021年度「透過表皮電位微創量測開拓皮膚離子醫學工程」,日本學術振興會 科研費・挑戰性研究(萌芽)(共同研究者)
- 2020–2022年度「利用單細胞級神經迴路構建技術創建生物人工智慧」,日本學術振興會 科研費・基盤研究(B) (計畫主持人)
- 2020年度「融合有機電子電路與水凝膠的生物量測用軟性電子元件開發」,立石科學技術振興財團2020年度補助 (計畫主持人)
- 2017–2019年度「利用神經微板技術構建單細胞級神經迴路」,日本學術振興會 科研費・青年研究(B) (計畫主持人)
- 2016–2017年度「用於構建單細胞級神經迴路的單神經細胞微板」,日本學術振興會 科研費・研究活動啟動支持 (計畫主持人)
- 2013–2015年度「構建具有單細胞級設計神經迴路的三維人工腦組織」,日本學術振興會 科研費・特別研究員獎勵費 (計畫主持人)
其他
經同儕審查的國際會議論文、學術報告等,請參閱Researchmap。
