de Boer B M, Kahlman J A H M, Jansen T P G H, Duric H, Veen J
Biomedical Sensor Systems, Philips Research, Eindhoven, The Netherlands.
Biosens Bioelectron. 2007 Apr 15;22(9-10):2366-70. doi: 10.1016/j.bios.2006.09.020. Epub 2006 Nov 2.
A compact biosensor platform with giant magneto-resistive (GMR) sensors suited for the detection of superparamagnetic nanoparticle labels is presented. The platform consist of disposable biosensor cartridges and an electronic reader, which enables quantitative detection with high analytical performance, combined with robustness, ease of use and at low cost. In order to optimise the signal-to-noise ratio (SNR), magnetic labels are excited at high frequency. Wires, integrated in the silicon of the sensor chip are used to generate a well-defined magnetic field on the sensor surface, thus removing the need for mechanical alignment with external apparatus. A signal modulation scheme is applied to obtain optimal detection accuracy. The platform is scalable and can be adapted according to application-specific requirements. Experimental results indicate that three beads of 300 nm diameter can be detected on a sensor surface of 1500 microm2 for a measurement time of 1s.
本文介绍了一种紧凑的生物传感器平台,该平台配备了适用于检测超顺磁性纳米颗粒标记物的巨磁阻(GMR)传感器。该平台由一次性生物传感器盒和电子阅读器组成,能够实现具有高分析性能的定量检测,兼具稳健性、易用性且成本低廉。为了优化信噪比(SNR),磁性标记物在高频下被激发。集成在传感器芯片硅片中的导线用于在传感器表面产生明确的磁场,从而无需与外部设备进行机械对准。应用了一种信号调制方案以获得最佳检测精度。该平台具有可扩展性,可根据特定应用要求进行调整。实验结果表明,在1500平方微米的传感器表面上,对于直径为300纳米的三个珠子,测量时间为1秒时即可检测到。