Ferrari Laura M, Sudha Sudha, Tarantino Sergio, Esposti Roberto, Bolzoni Francesco, Cavallari Paolo, Cipriani Christian, Mattoli Virgilio, Greco Francesco
Center for Micro-Bio Robotics @SSS AIstituto Italiano di Tecnologia Viale Rinaldo Piaggio 3456025 Pontedera Italy.
The BioRobotics Institute Scuola Superiore Sant'Anna Viale Rinaldo Piaggio 3456025 Pontedera Italy.
Adv Sci (Weinh). 2018 Jan 3;5(3):1700771. doi: 10.1002/advs.201700771. eCollection 2018 Mar.
Electrically interfacing the skin for monitoring personal health condition is the basis of skin-contact electrophysiology. In the clinical practice the use of stiff and bulky pregelled or dry electrodes, in contrast to the soft body tissues, imposes severe restrictions to user comfort and mobility while limiting clinical applications. Here, in this work dry, unperceivable temporary tattoo electrodes are presented. Customized single or multielectrode arrays are readily fabricated by inkjet printing of conducting polymer onto commercial decal transfer paper, which allows for easy transfer on the user's skin. Conformal adhesion to the skin is provided thanks to their ultralow thickness (<1 µm). Tattoo electrode-skin contact impedance is characterized on short- (1 h) and long-term (48 h) and compared with standard pregelled and dry electrodes. The viability in electrophysiology is validated by surface electromyography and electrocardiography recordings on various locations on limbs and face. A novel concept of tattoo as perforable skin-contact electrode, through which hairs can grow, is demonstrated, thus permitting to envision very long-term recordings on areas with high hair density. The proposed materials and patterning strategy make this technology amenable for large-scale production of low-cost sensing devices.
将皮肤与外部进行电连接以监测个人健康状况是皮肤接触电生理学的基础。在临床实践中,与柔软的身体组织相比,使用僵硬且笨重的预凝胶或干电极会严重限制使用者的舒适度和活动能力,同时也限制了临床应用。在此,本文展示了一种干燥、不可感知的临时纹身电极。通过将导电聚合物喷墨打印到商用贴花转印纸上,可以轻松制作定制的单电极或多电极阵列,便于将其转移到使用者的皮肤上。由于其超低厚度(<1 µm),纹身电极能与皮肤紧密贴合。对纹身电极与皮肤的接触阻抗进行了短期(1小时)和长期(48小时)的表征,并与标准预凝胶电极和干电极进行了比较。通过在四肢和面部的不同位置进行表面肌电图和心电图记录,验证了其在电生理学中的可行性。展示了一种新颖的纹身概念,即作为可穿透毛发的皮肤接触电极,从而可以设想在毛发密度高的区域进行长期记录。所提出的材料和图案化策略使该技术适合大规模生产低成本传感设备。