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Compact intracerebral probe with yellow phosphor-based light conversion for optogenetic control

机译:紧凑型脑内探针,具有基于黄色磷光体的光转换,可进行光遗传学控制

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This paper reports on the use of phosphor particles to alter the emission spectrum of blue light-emitting diodes (LED) integrated in MEMS-based neural probes. For this purpose, we apply drop-casting to deposit the phosphor particles embedded in a transparent polymer matrix onto LED chips. The light emission is confined to spots as small as 100 μm in diameter by implementing micro-machined apertures in a probe stiffening structure made of silicon. Additionally, stray light emission from the probe rear through the semi-transparent polyimide substrate is effectively blocked by a metallic shielding layer. We demonstrate the optical down-conversion towards yellow wavelengths of 570-590 nm. A time-averaged output intensity of 0.679 mW/mm was measured at 5 mA modulated at a duty cycle of 10%. The output intensity strongly depends on the amount of phosphor covering the LED surface.
机译:本文报道了荧光粉颗粒的使用,以改变集成在基于MEMS的神经探针中的蓝色发光二极管(LED)的发射光谱。为此,我们采用滴铸法将嵌入透明聚合物基体中的荧光粉颗粒沉积到LED芯片上。通过在由硅制成的探针加固结构中实现微加工的孔,可以将光发射限制在直径仅为100μm的斑点上。另外,从探针后部穿过半透明聚酰亚胺衬底的杂散光发射被金属屏蔽层有效地阻挡了。我们证明了光学向下转换为570-590 nm的黄色波长。在以10%的占空比调制的5 mA电流下,测得的时间平均输出强度为0.679 mW / mm。输出强度在很大程度上取决于覆盖LED表面的荧光粉量。

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