University of Auckland, Auckland, New Zealand.
The Cumming School of Medicine, University of Calgary, Calgary, Canada.
Biomed Eng Online. 2022 Jun 27;21(1):43. doi: 10.1186/s12938-022-01010-w.
BACKGROUND: Cutaneous electrogastrography (EGG) is a non-invasive technique that detects gastric bioelectrical slow waves, which in part govern the motility of the stomach. Changes in gastric slow waves have been associated with a number of functional gastric disorders, but to date accurate detection from the body-surface has been limited due to the low signal-to-noise ratio. The main aim of this study was to develop a flexible active-electrode EGG array. METHODS: Two Texas Instruments CMOS operational amplifiers: OPA2325 and TLC272BID, were benchtop tested and embedded in a flexible linear array of EGG electrodes, which contained four recording electrodes at 20-mm intervals. The cutaneous EGG arrays were validated in ten weaner pigs using simultaneous body-surface and serosal recordings, using the Cyton biosensing board and ActiveTwo acquisition systems. The serosal recordings were taken using a passive electrode array via surgical access to the stomach. Signals were filtered and compared in terms of frequency, amplitude, and phase-shift based on the classification of propagation direction from the serosal recordings. RESULTS: The data were compared over 709 cycles of slow waves, with both active cutaneous EGG arrays demonstrating comparable performance. There was an agreement between frequencies of the cutaneous EGG and serosal recordings (3.01 ± 0.03 vs 3.03 ± 0.05 cycles per minute; p = 0.75). The cutaneous EGG also demonstrated a reduction in amplitude during abnormal propagation of gastric slow waves (310 ± 50 µV vs 277 ± 9 µV; p < 0.01), while no change in phase-shift was observed (1.28 ± 0.09 s vs 1.40 ± 0.10 s; p = 0.36). CONCLUSION: A sparse linear cutaneous EGG array was capable of reliably detecting abnormalities of gastric slow waves. For more accurate characterization of gastric slow waves, a two-dimensional body-surface array will be required.
背景:皮肤胃电描记术(EGG)是一种非侵入性技术,可检测胃生物电慢波,这些慢波部分控制胃的运动。胃慢波的变化与许多功能性胃疾病有关,但迄今为止,由于信号噪声比较低,体表的准确检测受到限制。本研究的主要目的是开发一种灵活的有源电极 EGG 阵列。
方法:对两个德州仪器 CMOS 运算放大器:OPA2325 和 TLC272BID 进行了台式测试,并将其嵌入 EGG 电极的柔性线性阵列中,该阵列每隔 20mm 包含四个记录电极。使用 Cyton 生物传感板和 ActiveTwo 采集系统,通过同时进行体表和浆膜记录,在 10 头断奶仔猪中对皮肤 EGG 阵列进行了验证。浆膜记录通过手术进入胃部时使用被动电极阵列进行采集。根据浆膜记录的传播方向分类,对信号进行滤波并比较频率、幅度和相移。
结果:对 709 个慢波周期的数据进行了比较,两个有源皮肤 EGG 阵列均表现出相当的性能。皮肤 EGG 和浆膜记录的频率具有一致性(3.01±0.03 与 3.03±0.05 个周期/分钟;p=0.75)。在胃慢波异常传播期间,皮肤 EGG 还显示出幅度降低(310±50µV 与 277±9µV;p<0.01),而相移没有变化(1.28±0.09 秒与 1.40±0.10 秒;p=0.36)。
结论:稀疏线性皮肤 EGG 阵列能够可靠地检测胃慢波的异常。为了更准确地描述胃慢波,需要使用二维体表阵列。
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