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Takamichi Nakamoto
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2020 – today
- 2024
- [j15]Hiroya Hachiyama, Takamichi Nakamoto:
Optimization of Multi-Component Olfactory Display Using Inkjet Devices. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 107(8): 1338-1344 (2024) - [c40]Nilava Debabhuti, Dani Prasetyawan, Takamichi Nakamoto:
Droplet formation analysis for multi-component olfactory display using inkjet devices. ISOEN 2024: 1-3 - [c39]Toshiki Kawamoto, Masaki Tashiro, Takamichi Nakamoto, Manabu Okumura:
Creating Linguistic Embedding Space for Odors. ISOEN 2024: 1-4 - [c38]Dani Prasetyawan, Hanqing Zhao, Takamichi Nakamoto:
Interference Separation Using Improved Nonnegative Matrix Factorization for Odor Reproduction Analysis in Mass Spectrum Space. ISOEN 2024: 1-4 - [c37]Masafumi Uda, Takamichi Nakamoto:
The evaluation of real-time CFD in olfactory VR. SIGGRAPH Asia Emerging Technologies 2024: 15:1-15:2 - [c36]Masafumi Uda, Takamichi Nakamoto:
Influence of User's Body in Olfactory Virtual Environment Generated by Real-Time CFD. VR 2024: 951-959 - 2023
- [j14]Dani Prasetyawan, Yusuke Kashiwagi, Takamichi Nakamoto:
Sensory Evaluation of Interference Suppression in Odor Reproduction Using Mass Spectrometry. IEEE Access 11: 24103-24111 (2023) - [j13]Anifatul Faricha, Shohei Yoshida, Parthojit Chakraborty, Keisuke Okamoto, Tso-Fu Mark Chang, Masato Sone, Takamichi Nakamoto:
Array of Miniaturized Amperometric Gas Sensors Using Atomic Gold Decorated Pt/PANI Electrodes in Room Temperature Ionic Liquid Films. Sensors 23(8): 4132 (2023) - 2022
- [c35]Saya Onai, Nathan Cohen, Takamichi Nakamoto:
Demo of an Olfactory Game Using Paired Odors to Increase the Odor Range, Enabling Immersive Olfactory Experience in VR Environments. ICAT-EGVE (Posters and Demos) 2022: 31-32 - [c34]Hiroto Hayashi, Dani Prasetyawan, Masaaki Iseki, Takamichi Nakamoto:
Demo of Odor Reproduction Using 20-component Olfactory Display. ICAT-EGVE (Posters and Demos) 2022: 45-46 - [c33]Nanxin Gong, Manuel Aleixandre, Takamichi Nakamoto:
Odor Recorder Based on an Array of QCM Sensors Using Frequency Shifts and Resistance Changes of Multiple Harmonics. IEEE SENSORS 2022: 1-4 - [c32]Dani Prasetyawan, Takamichi Nakamoto:
Separation of Pure Perfume Mass Spectrum from Interferences Using ICA. ISOEN 2022: 1-3 - 2021
- [j12]Dani Prasetyawan, Takamichi Nakamoto:
Suppression of Interference of Fixative With Odorant Samples in Mass Spectrum Using ICA. IEEE Access 9: 134402-134412 (2021) - [j11]Masaaki Iseki, Takamichi Nakamoto:
Evaluation of Temporal Characteristics of Olfactory Displays with Different Structures. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 104-A(4): 744-750 (2021) - [c31]Parthojit Chakraborty, Hiroki Kawakami, Anifatul Faricha, Tso-Fu Mark Chang, Masato Sone, Takamichi Nakamoto:
Polyaniline-atomic Au modified platinum electrode with ionic liquid as configuration for enhanced electrochemical sensing. IEEE SENSORS 2021: 1-4 - [c30]Daisuke Hasebe, Takamichi Nakamoto:
A Model to Predict Mass Spectrum from Odor Impression using Deep Neural Network. IEEE SENSORS 2021: 1-4 - [c29]Saya Onai, Nathan Cohen, Takamichi Nakamoto:
The Aromatic Garden: Exploring new ways to interactively interpret narratives combining olfaction and vision including temporal change of scents using olfactory display. SIGGRAPH ASIA Emerging Technologies 2021: 17:1-17:3 - 2020
- [j10]Parthojit Chakraborty, Yu-An Chien, Tso-Fu Mark Chang, Masato Sone, Takamichi Nakamoto:
Indirect Sensing of Lower Aliphatic Ester Using Atomic Gold Decorated Polyaniline Electrode. Sensors 20(13): 3640 (2020) - [j9]Manuel Aleixandre, Takamichi Nakamoto:
Study of Room Temperature Ionic Liquids as Gas Sensing Materials in Quartz Crystal Microbalances. Sensors 20(14): 4026 (2020) - [c28]Keisuke Ito, Takamichi Nakamoto:
Improvement of Odor Impression Predictive model using Machine Learning. IEEE SENSORS 2020: 1-4 - [c27]Takamichi Nakamoto, Tatsuya Hirasawa, Yukiko Hanyu:
Virtual environment with smell using wearable olfactory display and computational fluid dynamics simulation. VR 2020: 713-720
2010 – 2019
- 2019
- [j8]Yasufumi Yokoshiki, Takamichi Nakamoto:
Ternary Gas Mixture Quantification Using Field Asymmetric Ion Mobility Spectrometry (FAIMS). Sensors 19(13): 3007 (2019) - [j7]Manuel Aleixandre, Kaoru Nakazawa, Takamichi Nakamoto:
Optimization of Modulation Methods for Solenoid Valves to Realize an Odor Generation System. Sensors 19(18): 4009 (2019) - [j6]Yasufumi Yokoshiki, Takamichi Nakamoto:
On-Line Mixture Quantification to Track Temporal Change of Composition Using FAIMS. Sensors 19(24): 5442 (2019) - [c26]Parthojit Chakraborty, Yu-An Chien, Wan-Ting Chiu, Tso-Fu Mark Chang, Masato Sone, Takamichi Nakamoto:
Atomic gold decorated polyaniline sensor for gaseous detection. ISOEN 2019: 1-3 - [c25]Tanoy Debnath, Dani Prasetyawan, Takamichi Nakamoto:
Prediction of Odor Descriptor Group of Essential Oils from Mass Spectra using Machine Learning. ISOEN 2019: 1-3 - [c24]Shingo Kato, Takamichi Nakamoto:
Wearable Olfactory Display with Less Residual Odor. ISOEN 2019: 1-3 - [c23]Kaoru Nakazawa, Manuel Aleixandre, Takamichi Nakamoto:
Room Temperature Ionic Liquids as Sensing Coatings of QCM Gas Sensors to Detect Different Organic Gases. ISOEN 2019: 1-3 - [c22]Dani Prasetyawan, Takamichi Nakamoto:
Comparison of NMF with Kullback-Leibler Divergence and Itakura-Saito Divergence for Odor Approximation. ISOEN 2019: 1-3 - 2018
- [c21]Parthojit Chakraborty, Yu-An Chien, Wan-Ting Chiu, Masato Sone, Takamichi Nakamoto:
Design and Development of Fuel Cell Type Gas Sensor with Atomic Au decorated PANI/Pt Composite. IEEE SENSORS 2018: 1-4 - [c20]Yasufumi Yokoshiki, Takamichi Nakamoto:
Characterization of Field Asymmetric Ion Mobility Spectrometry Response to Binary Gas Mixture. IEEE SENSORS 2018: 1-4 - [c19]Shiori Itou, Masaaki Iseki, Shingo Kato, Takamichi Nakamoto:
Olfactory and Visual Presentation Using Olfactory Display Using SAW Atomizer and Solenoid Valves. IUI Companion 2018: 23:1-23:2 - [c18]Shingo Kato, Takamichi Nakamoto:
Demo of olfactory display with less residual odor. SIGGRAPH ASIA Emerging Technologies 2018: 1:1-1:2 - [c17]Shingo Kato, Takamichi Nakamoto:
Olfactory Display Based on Sniffing Action. VR 2018: 597-598 - [c16]Shingo Kato, Masaaki Iseki, Takamichi Nakamoto:
Demonstration of Olfactory Display Based on Sniffing Action. VR 2018: 761-762 - 2017
- [c15]Yuji Sukekawa, Totok Mujiono, Takamichi Nakamoto:
Two-Dimensional Digital Lock-In Circuit for Fluorescent Imaging of Odor Biosensor System. NGCAS 2017: 241-244 - 2016
- [c14]Kazuki Hashimoto, Takamichi Nakamoto:
Olfactory display using surface acoustic wave device and micropumps for wearable applications. VR 2016: 179-180 - 2015
- [c13]Totok Mujiono, Yuji Sukekawa, Takamichi Nakamoto, H. Mitsuno, Ryohei Kanzaki, N. Misawa:
Odor sensing method using olfactory receptors and fluorescent instrumentation. ASCC 2015: 1-6 - [c12]Yuji Nozaki, Takamichi Nakamoto:
Nonlinear dimensionality reduction of mass spectrometry data for odor sensing. MFI 2015: 190-195 - [c11]Takamichi Nakamoto, Takayoshi Inuma:
Odor preconcentrator using SAW device and QCM in liquid phase for odor measurement. MFI 2015: 196-201 - 2013
- [c10]Yossiri Ariyakul, Tomoyuki Aizawa, Takamichi Nakamoto:
Visual-olfactory presentation system using a miniaturized olfactory display based on SAW streaming and electroosmotic pumps. VR 2013: 155-156 - 2011
- [c9]Yossiri Ariyakul, Takamichi Nakamoto:
Olfactory display using a miniaturized pump and a SAW atomizer for presenting low-volatile scents. VR 2011: 193-194
2000 – 2009
- 2009
- [c8]Takamichi Nakamoto, Keisuke Murakami:
Selection Method of Odor Components for Olfactory Display Using Mass Spectrum Database. VR 2009: 159-162 - [c7]Haruka Matsukura, Hitoshi Yoshida, Hiroshi Ishida, Takamichi Nakamoto:
Interactive Odor Playback Based on Fluid Dynamics Simulation. VR 2009: 255-256 - [c6]Haruka Matsukura, Hitoshi Yoshida, Hiroshi Ishida, Atsushi Saitoh, Takamichi Nakamoto:
Odor Presentation with a Vivid Sense of Reality: Incorporating Fluid Dynamics Simulation into Olfactory Display. VR 2009: 295-296 - [c5]Takamichi Nakamoto, Masashi Kinoshita, Keisuke Murakami, Yossiri Ariyakul:
Demonstration of Improved Olfactory Display using Rapidly-Switching Solenoid Valves. VR 2009: 301-302 - 2008
- [j5]Takamichi Nakamoto, Shigeki Otaguro, Masashi Kinoshita, Masahiko Nagahama, Keita Ohinishi, Taro Ishida:
Cooking Up an Interactive Olfactory Game Display. IEEE Computer Graphics and Applications 28(1): 75-78 (2008) - [c4]N. Choh, B. Wyszynsky, H. Takushima, N. Nitikarn, Masashi Kinoshita, Takamichi Nakamoto:
Demonstration of interactive teleolfaction with movie. Advances in Computer Entertainment Technology 2008: 395 - 2007
- [j4]Takao Yamanaka, Nitikarn Nimsuk, Takamichi Nakamoto:
Concurrent Recording and Regeneration of Visual and Olfactory Information Using Odor Sensor. Presence Teleoperators Virtual Environ. 16(3): 307-317 (2007) - [c3]Takamichi Nakamoto, Hai Pham Dinh Minh:
Improvement of olfactory display using solenoid valves. VR 2007: 179-186 - 2006
- [j3]Takamichi Nakamoto, Kenjiro Yoshikawa:
Movie with Scents Generated by Olfactory Display Using Solenoid Valves. IEICE Trans. Fundam. Electron. Commun. Comput. Sci. 89-A(11): 3327-3332 (2006) - [c2]Takamichi Nakamoto, Kenjiro Yoshikawa:
Movie with Scents Generated by Olfactory Display Using Solenoid Valves. VR 2006: 291-292
1990 – 1999
- 1999
- [j2]Hiroshi Ishida, Akito Kobayashi, Takamichi Nakamoto, Toyosaka Moriizumi:
Three-dimensional odor compass. IEEE Trans. Robotics Autom. 15(2): 251-257 (1999) - [c1]Takamichi Nakamoto, S. Kawamura, Toyosaka Moriizumi:
Study of digital learning circuit for odor sensing system using 1-bit data stream signal processing circuit. IJCNN 1999: 2425-2428 - 1991
- [j1]Yuichi Sakuraba, Takamichi Nakamoto, Toyosaka Moriizumi:
New method of learning vector quantization using fuzzy theory. Syst. Comput. Jpn. 22(13): 93-103 (1991)
Coauthor Index
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last updated on 2024-12-02 21:30 CET by the dblp team
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