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利用光刻胶喷涂和柔性光掩模在皮下注射针尖端制造用于生物医学应用的精细电极。

Fabrication of Fine Electrodes on the Tip of Hypodermic Needle Using Photoresist Spray Coating and Flexible Photomask for Biomedical Applications.

作者信息

Yun Joho, Kim Jinhwan, Lee Jong-Hyun

机构信息

Department of Biomedical Science and Engineering, Gwangju Institute of Science and Technology (GIST).

School of Mechanical Engineering, Gwangju Institute of Science and Technology (GIST).

出版信息

J Vis Exp. 2017 Nov 28(129):56622. doi: 10.3791/56622.

Abstract

We have introduced a fabrication method for electrical impedance spectroscopy (EIS)-on-a-needle (EoN: EIS-on-a-needle) to locate target tissues in the body by measuring and analyzing differences in the electrical impedance between dissimilar biotissues. This paper describes the fabrication method of fine interdigitated electrodes (IDEs) at the tip of a hypodermic needle using a photoresist spray coating and flexible film photomask in the photolithography process. A polyethylene terephthalate (PET) heat shrink tube (HST) with a wall thickness of 25 µm is employed as the insulation and passivation layer. The PET HST shows a higher mechanical durability compared with poly(p-xylylene) polymers, which have been widely used as a dielectric coating material. Furthermore, the HST shows good chemical resistance to most acids and bases, which is advantageous for limiting chemical damage to the EoN. The use of the EoN is especially preferred for the characterization of chemicals/biomaterials or fabrication using acidic/basic chemicals. The fabricated gap and width of the IDEs are as small as 20 µm, and the overall width and length of the IDEs are 400 µm and 860 µm, respectively. The fabrication margin from the tip (distance between the tip of hypodermic needle and starting point of the IDEs) of the hypodermic needle is as small as 680 µm, which indicates that unnecessarily excessive invasion into biotissues can be avoided during the electrical impedance measurement. The EoN has a high potential for clinical use, such as for thyroid biopsies and anesthesia drug delivery in a spinal space. Further, even in surgery that involves the partial resection of tumors, the EoN can be employed to preserve as much normal tissue as possible by detecting the surgical margin (normal tissue that is removed with the surgical excision of a tumor) between the normal and lesion tissues.

摘要

我们已经引入了一种针上电阻抗谱(EoN:针上电阻抗谱)的制造方法,通过测量和分析不同生物组织之间的电阻抗差异来定位体内的目标组织。本文描述了在光刻工艺中使用光刻胶喷涂和柔性薄膜光掩模在皮下针尖端制造精细叉指电极(IDE)的方法。使用壁厚为25μm的聚对苯二甲酸乙二酯(PET)热缩管(HST)作为绝缘和钝化层。与已广泛用作介电涂层材料的聚对二甲苯聚合物相比,PET HST具有更高的机械耐久性。此外,HST对大多数酸和碱具有良好的耐化学性,这有利于限制对EoN的化学损伤。对于化学物质/生物材料的表征或使用酸性/碱性化学物质进行制造,EoN的使用尤其受到青睐。制造的IDE的间隙和宽度小至20μm,IDE的总宽度和长度分别为400μm和860μm。皮下针尖端的制造余量(皮下针尖端与IDE起点之间的距离)小至680μm,这表明在电阻抗测量期间可以避免对生物组织进行不必要的过度侵入。EoN在临床应用中具有很高的潜力,例如用于甲状腺活检和脊髓间隙中的麻醉药物递送。此外,即使在涉及肿瘤部分切除的手术中,EoN也可用于通过检测正常组织和病变组织之间的手术切缘(随着肿瘤手术切除而被切除的正常组织)来尽可能多地保留正常组织。

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