Research Centre for Biomedical Engineering, City, University of London, London EC1V 0HB, UK.
Sensors (Basel). 2024 Jul 4;24(13):4357. doi: 10.3390/s24134357.
Bioimpedance is a diagnostic sensing method used in medical applications, ranging from body composition assessment to detecting skin cancer. Commonly, discrete-component (and at times integrated) circuit variants of the Howland Current Source (HCS) topology are employed for injection of an AC current. Ideally, its amplitude should remain within 1% of its nominal value across a frequency range, and that nominal value should be programmable. However, the method's applicability and accuracy are hindered due to the current amplitude diminishing at frequencies above 100 kHz, with very few designs accomplishing 1 MHz, and only at a single nominal amplitude. This paper presents the design and implementation of an adaptive current source for bioimpedance applications employing automatic gain control (AGC). The "Adaptive Howland Current Source" (AHCS) was experimentally tested, and the results indicate that the design can achieve less than 1% amplitude error for both 1 mA and 100 µA currents for bandwidths up to 3 MHz. Simulations also indicate that the system can be designed to achieve up to 19% noise reduction relative to the most common HCS design. AHCS addresses the need for high bandwidth AC current sources in bioimpedance spectroscopy, offering automatic output current compensation without constant recalibration. The novel structure of AHCS proves crucial in applications requiring higher β-dispersion frequencies exceeding 1 MHz, where greater penetration depths and better cell status assessment can be achieved, e.g., in the detection of skin or breast cancer.
生物阻抗是一种在医学应用中使用的诊断传感方法,范围从身体成分评估到皮肤癌检测。通常,采用离散元件(有时是集成)电路变体的豪兰德电流源(HCS)拓扑结构来注入交流电流。理想情况下,其幅度应在整个频率范围内保持在其标称值的 1%以内,并且该标称值应是可编程的。然而,由于电流幅度在 100 kHz 以上的频率下减小,该方法的适用性和准确性受到限制,很少有设计能够达到 1 MHz,并且仅在单个标称幅度下。本文提出了一种用于生物阻抗应用的自适应电流源的设计和实现,该电流源采用自动增益控制(AGC)。对“自适应豪兰德电流源”(AHCS)进行了实验测试,结果表明,该设计可以在 1 MHz 带宽内实现 1 mA 和 100 µA 电流的小于 1%的幅度误差。仿真还表明,该系统可以设计为与最常见的 HCS 设计相比实现高达 19%的噪声降低。AHCS 满足生物阻抗谱中对高带宽交流电流源的需求,无需不断重新校准即可实现自动输出电流补偿。AHCS 的新颖结构在需要更高β色散频率(超过 1 MHz)的应用中至关重要,例如在皮肤或乳腺癌检测中,可以实现更大的穿透深度和更好的细胞状态评估。