首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Flexible, multifunctional neural probe with liquid metal enabled, ultra-large tunable stiffness for deep-brain chemical sensing and agent delivery
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Flexible, multifunctional neural probe with liquid metal enabled, ultra-large tunable stiffness for deep-brain chemical sensing and agent delivery

机译:柔性多功能神经探头,具有液态金属,对深脑化学传感和药剂递送的超大型可调刚度

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摘要

Flexible neural probes have been pursued previously to minimize the mechanical mismatch between soft neural tissues and implants and thereby improve long-term performance. However, difficulties with insertion of such probes deep into the brain severely restricts their utility. We describe a solution to this problem using gallium (Ga) in probe construction, taking advantage of the solid-to-liquid phase change of the metal at body temperature and probe shape deformation to provide temperature-dependent control of stiffness over 5 orders of magnitude. Probes in the stiff state were successfully inserted 2 cm-deep into agarose gel "brain phantoms" and into rat brains under cooled conditions where, upon Ga melting, they became ultra soft, flexible, and stretchable in all directions. The current 30 mu m-thick probes incorporated multilayer, deformable microfluidic channels for chemical agent delivery, electrical interconnects through Ga wires, and high-performance electrochemical glutamate sensing. These PDMS-based microprobes of ultra-large tunable stiffness (ULTS) should serve as an attractive platform for multifunctional chronic neural implants.
机译:以前追求柔性神经探针,以最大限度地减少软神经组织和植入物之间的机械失配,从而提高长期性能。然而,在大脑中插入这种探针的困难严重限制了它们的效用。我们在探针结构中使用镓(Ga)来描述解决该问题的解决方案,利用了在体温下的金属的固相变化和探针形状变形,以提供温度依赖性刚度的刚度超过5幅度。将刚性状态的探针成功插入琼脂糖凝胶“脑映像”并在冷却条件下进入大鼠大脑,在Ga熔化时,它们变得超柔软,柔韧,在所有方向上拉伸。目前30μm厚的探针掺入多层,可变形的微流体通道用于化学试剂递送,通过GA线电互连,以及高性能电化学谷氨酸感测。这些基于PDMS的超大可调刚度(ULT)的微生物体(ULT)应该是多功能慢性神经植入物的有吸引力的平台。

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