Video recordings associated vith the pubblication: Focused ultrasound neuromodulation on MEA
收藏4TU.ResearchData2021-11-25 更新2026-04-23 收录
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https://data.4tu.nl/articles/_/17055329
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资源简介:
This dataset contains the video recording associated with the publication. In the first video, the multiwell MEA has been used to test the temperature variation during the period of US-ON. A thermocouple type K was placed at the bottom of the well and the ultrasound transducer immersed in the well. The input voltage was the same as the one used during the cell experiment and the MEA plate was placed on top of a hot plate to reproduce the experimental conditions. After 60 seconds of ultrasound the temperature increase was 0.8 °C.<br>In the second video, the heat profile generated by the ultrasound transducer used for the ultrasound neuromodulation experiment is observed using the Schlieren system. The trasnduecr is placed in the same Schlieren setup configuration used to validate the ultrasound field and a thermocouple is placed close to the tip of the transducer. The ultrasound is turned on for 60 seconds with a driving voltage 4.5 times higher than the one used during the cell experiment. It can be seen that the heat profile generated by the trasducer remains rather shallow the tip of the transducer and the water surface, suggesting that the heat does not reach the neuronal culture and it is dispersed at the liquid surface, rather than towards the neurons.
本数据集包含与本学术论文配套的视频记录资料。
第一段视频中,研究人员采用多孔微电极阵列(multiwell MEA)测试了超声开启(US-ON)阶段的温度变化。实验中将K型热电偶置于多孔孔板的孔底,并将超声换能器浸入孔内;输入电压与细胞实验所用参数完全一致,同时将微电极阵列平板放置于加热台之上以还原真实实验工况。超声持续作用60秒后,温度升高0.8摄氏度。
第二段视频中,研究人员借助纹影系统(Schlieren system)观测了用于超声神经调控实验的超声换能器所产生的热分布特征。该换能器的安装配置与验证超声声场的实验设置完全一致,同时将热电偶置于换能器探头尖端附近。本次实验中超声开启时长为60秒,驱动电压为细胞实验所用电压的4.5倍。观测结果显示,换能器产生的热分布在换能器尖端与水面之间相对较浅,表明热量并未抵达神经元培养区域,而是在液面处发生弥散,而非朝向神经元方向传导。
提供机构:
Kawasaki, Shinnosuke; Dekker, Ronald; van Woerden, Geeske M.
创建时间:
2021-11-25



