Takahiro Osada
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Associate Professor
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About
Dr. Takahiro Osada is an Associate Professor at Juntendo University in Japan. His research focuses on the interplay between brain structure and function, with recent articles exploring areas such as brain volume changes, noninvasive stimulation techniques, and neuropsychological evaluations. He is actively involved in investigating neural circuitry related to various cognitive and clinical conditions.
Recent Grants
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JSPS KAKENHI
Open Date: 2021-04-01
Close Date:
Grant: Close
JSPS KAKENHI
Open Date: 2018-04-01
Close Date: 2021-03-01
Grant: Close
JSPS KAKENHI
Open Date: 2016-04-01
Close Date: 2019-03-01
Grant: Close
JSPS Research Fellowship for Young Scientists (DC2)
Open Date: 2005-04-01
Close Date: 2007-03-01
Articles (19)
Noninvasive intervention by transcranial ultrasound stimulation: Modulation of neural circuits and its clinical perspectives
Low‐intensity focused transcranial ultrasound stimulation (TUS) is an emerging noninvasive technique capable of stimulating both the cerebral cortex and deep brain structures with high spatial precision. This method is recognized for its potential to comprehensively perturb various brain regions, enabling the modulation of neural circuits, in a manner not achievable through conventional magnetic or electrical brain stimulation techniques. The underlying mechanisms of neuromodulation are based on a phenomenon where mechanical waves of ultrasound kinetically interact with neurons, specifically affecting neuronal membranes and mechanosensitive channels. This interaction induces alterations in the excitability of neurons within the stimulated region. In this review, we briefly present the fundamental principles of ultrasound physics and the physiological mechanisms of TUS neuromodulation. We explain the experimental apparatus and procedures for TUS in humans. Due to the focality, the integration of various methods, including magnetic resonance imaging and magnetic resonance–guided neuronavigation systems, is important to perform TUS experiments for precise targeting. We then review the current state of the literature on TUS neuromodulation, with a particular focus on human subjects, targeting both the cerebral cortex and deep subcortical structures. Finally, we outline future perspectives of TUS in clinical applications in psychiatric and neurological fields.
Year:
2024
Collaborators (4)
Seiki Konishi
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Mitsutoshi Nakada
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Akitoshi Ogawa
Associate Professor
Juntendo University
TOSHIKI INABA
Assistant Professor
Juntendo University Graduate School of Medicine

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