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◆ bioRxiv : the preprint server for biology2026-08-07· bioengineering

Blood-Mediated Opto-Acoustic Stimulation of Brain Cortex at Sub-millimeter Precision.

Guo Chen, Mingsheng Li, Martin Thunemann, Kivilcim Kilic, Xinrui Gong, Carolyn Marar, Nan Zheng, Dingcheng Sun, Yueming Li, Fukai Chen, Hongru Zeng, Ji-Xin Cheng, Chen Yang

原始摘要(英文原文)· Original abstract
Direct modulation of neural activity with high spatiotemporal precision is a cornerstone in experimental neuroscience. Here, we present a blood-mediated optoacoustic stimulation (BOAS) approach that utilizes blood as an endogenous transducer for brain stimulation. By delivering 532-nm nanosecond pulsed laser to the cortex, we demonstrate that the absorption of hemoglobin generates sufficient acoustic pressure to trigger neuronal activity. By integrating BOAS with calcium imaging in GCaMP6f -expressing mice, localized neuronal responses were observed. Quantitative analysis reveals that BOAS produces responses comparable to natural visual stimulation and is significantly more efficient than the photothermal stimulation. Furthermore, we show that the response is dose-dependent. At high energy doses, BOAS induces cortical spreading depression. Histological evaluation confirmed that the brain maintains tissue integrity even under these stimulation parameters. Together, this work establishes a versatile method for precise brain stimulation as an alternative method for stimulating neuron at cortex.
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Blood-Mediated Opto-Acoustic Stimulation of Brain Cortex at Sub-millimeter Precision. — 科研速览 Science Skim