Kang Inho, Bilbily John, Kim Choong Yeon, Shi Chuanqian, Madasu Manish K, Jeong Eun Young, Parker Kyle E, Kwon Do A, Jung Bum-Joon, Yang Jae-Soon, Lee Juhyun, Kabbaj Noah D L, Lee Wonhee, Yoon Jun-Bo, Al-Hasani Ream, Xiao Jianliang, McCall Jordan G, Jeong Jae-Woong
School of Electrical Engineering, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 34141, Republic of Korea.
Department of Anesthesiology, Washington University in St. Louis, St. Louis, MO, 63110, USA.
Adv Sci (Weinh). 2025 Jan;12(4):e2406576. doi: 10.1002/advs.202406576. Epub 2024 Dec 3.
Multimodal neural interfaces open new opportunities in brain research by enabling more sophisticated and systematic neural circuit dissection. Integrating complementary features across distinct functional domains, these multifunctional neural probes have greatly advanced the interrogation of complex neural circuitry. However, introducing multiple functionalities into a compact form factor for freely behaving animals presents substantial design hurdles that complicate the device or require more than one device. Moreover, fixed functionality poses challenges in meeting the dynamic needs of chronic neuroscience inquiry, such as replacing consumable parts like batteries or drugs. To address these limitations, the modular implantable neural device (MIND) is introduced with a one-touch magnetic assembly mechanism. Leveraging the seamless exchange of neural interface modules such as optical stimulation, drug delivery, and electrical stimulation, MIND ensures functional adaptability, reusability, and scalability. The versatile design of MIND will facilitate brain research by enabling simplified access to multiple functional modalities as needed.
多模态神经接口通过实现更复杂和系统的神经回路剖析,为脑研究带来了新机遇。这些多功能神经探针整合了不同功能域的互补特征,极大地推动了对复杂神经回路的研究。然而,将多种功能集成到适合自由活动动物的紧凑外形中存在重大设计障碍,这会使设备变得复杂,或者需要不止一个设备。此外,固定功能在满足慢性神经科学研究的动态需求方面也面临挑战,比如更换电池或药物等消耗部件。为解决这些限制,引入了具有一键式磁性组装机制的模块化可植入神经装置(MIND)。利用光刺激、药物递送和电刺激等神经接口模块的无缝交换,MIND确保了功能的适应性、可重复使用性和可扩展性。MIND的通用设计将通过按需简化对多种功能模式的访问,促进脑研究。