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New cosurface capacitive stimulators for the development of active osseointegrative implantable devices

机译:用于有源骨集成植入式设备开发的新型表面电容式刺激器

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摘要

Non-drug strategies based on biophysical stimulation have been emphasized for the treatment and prevention of musculoskeletal conditions. However, to date, an effective stimulation system for intracorporeal therapies has not been proposed. This is particularly true for active intramedullary implants that aim to optimize osseointegration. The increasing demand for these implants, particularly for hip and knee replacements, has driven the design of innovative stimulation systems that are effective in bone-implant integration. In this paper, a new cosurface-based capacitive system concept is proposed for the design of implantable devices that deliver controllable and personalized electric field stimuli to target tissues. A prototype architecture of this system was constructed for in vitro tests, and its ability to deliver controllable stimuli was numerically analyzed. Successful results were obtained for osteoblastic proliferation and differentiation in the in vitro tests. This work provides, for the first time, a design of a stimulation system that can be embedded in active implantable devices for controllable bone-implant integration and regeneration. The proposed cosurface design holds potential for the implementation of novel and innovative personalized stimulatory therapies based on the delivery of electric fields to bone cells.
机译:已经强调了基于生物物理刺激的非药物策略来治疗和预防肌肉骨骼疾病。然而,迄今为止,尚未提出用于体内疗法的有效刺激系统。对于旨在优化骨整合的有源髓内植入物尤其如此。对这些植入物的需求不断增长,特别是对髋关节和膝关节置换的需求,推动了创新性刺激系统的设计,这些系统对骨植入物的整合有效。在本文中,提出了一种新的基于表面的电容性系统概念,用于设计可植入设备,这些设备向目标组织提供可控的个性化电场刺激。构建了用于体外测试的该系统的原型体系结构,并对其传递可控刺激的能力进行了数值分析。在体外测试中获得了成骨细胞增殖和分化的成功结果。这项工作首次提供了一种刺激系统的设计,该系统可以嵌入有源可植入设备中,以实现可控的骨植入物整合和再生。拟议的表面设计在将电场输送至骨细胞的基础上,具有实施新颖和创新的个性化刺激疗法的潜力。

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