Global Health-Tech Research Center, Korea University, 145 Anam-ro, Seoul 02841, Korea.
Department of Bioengineering, Korea University, 145 Anam-ro, Seoul 02841, Korea.
Sensors (Basel). 2021 Feb 4;21(4):1048. doi: 10.3390/s21041048.
We propose an integrated front-end data acquisition circuit for a hybrid ultrasound (US)-gamma probe. The proposed circuit consists of three main parts: (1) a preamplifier for the gamma probe, (2) a preprocessing analog circuit for the US, and (3) a digitally controlled analog switch. By exploiting the long idle time of the US system, an analog switch can be used to acquire data of both systems using a single output channel simultaneously. On the nuclear medicine (NM) gamma probe side, energy resolutions of 18.4% and 17.5% were acquired with the standalone system and with the proposed switching circuit, respectively, when irradiated with a Co-57 radiation source. Similarly, signal-to-noise ratios of 14.89 and 13.12 dB were achieved when US echo signals were acquired with the standalone system and with the proposed switching circuit, respectively. Lastly, a combined US-gamma probe was used to scan a glass target and a sealed radiation source placed in a water tank. The results confirmed that, by using a hybrid US-gamma probe system, it is possible to distinguish between the two objects and acquire structural information (ultrasound) alongside molecular information (gamma radiation source).
我们提出了一种用于混合超声(US)-伽马探针的集成前端数据采集电路。所提出的电路由三个主要部分组成:(1)伽马探针前置放大器,(2)US 预处理模拟电路,(3)数字控制模拟开关。通过利用 US 系统的长空闲时间,模拟开关可用于使用单个输出通道同时采集两个系统的数据。在核医学(NM)伽马探针方面,当用 Co-57 辐射源辐照时,独立系统和所提出的开关电路分别获得了 18.4%和 17.5%的能量分辨率。同样,当使用独立系统和所提出的开关电路分别采集 US 回波信号时,获得了 14.89 和 13.12 dB 的信噪比。最后,使用组合式 US-伽马探针扫描放置在水箱中的玻璃目标和密封辐射源。结果证实,通过使用混合 US-伽马探针系统,可以区分两个物体,并同时获取结构信息(超声)和分子信息(伽马辐射源)。