首页> 外文会议>2014 IEEE International Symposium on Bioelectronics and Bioinformatics >An implantable micro imaging device for molecular imaging in a brain of freely-moving mouse
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An implantable micro imaging device for molecular imaging in a brain of freely-moving mouse

机译:用于可移动鼠标的大脑中的分子成像的可植入微成像设备

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We have developed an implantable micro imaging device that can observe specific molecules such as neuropsin in the deep brain of a freely-moving mouse with minimal invasiveness. A chemical substance, 4-methylcoumaryl-7-amide (MCA), which reacts with neuropsin and changes to fluorophore, 7-amino-4-methyl coumarin (AMC), is injected by a specially designed cannula employed with the device. The implanted sensor can measure spatio-temporal dynamics of neuropisn through fluorescence of AMC, which is accompanied by specific behavior in artificially induced epilepsy. The damage induced by the implantation of the device has been investigated. Four weeks after the implantation, no connective tissues are observed at the implanted locations and imaging was successfully conducted. Immuno-staining of the brain after the implantation reveals that the damage area is limited in less than 100 µm from the sensor surface.
机译:我们开发了一种可植入的微型成像设备,该设备可以以最小的侵入性观察自由移动的小鼠深脑中的特定分子,例如神经蛋白酶。通过与设备一起使用的特殊设计的套管注射化学物质4-甲基香豆基-7-酰胺(MCA),该物质与神经蛋白酶反应并转变为荧光团7-氨基-4-甲基香豆素(AMC)。植入的传感器可以通过AMC的荧光来测量神经元的时空动态,并伴随着人工诱发的癫痫的特定行为。已经研究了由装置的植入引起的损伤。植入后四周,在植入位置未观察到结缔组织,并且成功进行了成像。植入后大脑的免疫染色显示,损伤区域距离传感器表面的距离限制在100 µm以内。

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