arXiv:2512.14667eess.IVeess.SP2025-12

微型伽马谱仪助力精准肿瘤切除,可识别微小癌细胞残留。

Configurable γ Photon Spectrometer to Enable Precision Radioguided Tumor Resection

  • 基于180nm CMOS的微型芯片,通过测量电压衰减时间实现能量检测。
  • 可分辨1μCi极低活性放射源,能量分辨率优于1keV,动态范围达1.315MeV。
  • 支持多模式配置,适合不同手术场景,提升术中癌症定位精度。

外科肿瘤切除需清除组织表面及深层厘米级范围内的所有癌细胞。术中微小癌灶难以可视化,常被遗漏,显著增加复发风险。放射引导手术(RGS)利用发射伽马光子的放射性同位素标记癌细胞,但需毫米级精度的伽马谱仪来根据光子能量精确定位病灶。本文提出一种基于180 nm CMOS工艺的9.9 mm²集成电路伽马谱仪,可实现单个伽马光子及其能量的测量,具备亚千电子伏特(sub-keV)能量分辨率。采用2×2 μm反向偏置二极管,其耗尽层电容低,对伽马光子产生的微弱电荷响应生成毫伏级电压信号。通过测量信号衰减至直流所需时间而非直接读取电压降,实现低功耗能量谱分析。该方法在三种像素架构中实现,可根据实际手术需求灵活调节灵敏度、能量分辨率与动态范围。在64Cu、133Ba、177Lu三种常见伽马同位素测试中,5分钟采集即可分辨低至1μCi的活性,能量分辨率优于1 keV,能量动态范围达1.315 MeV。

原文摘要 · Abstract (English)

Surgical tumor resection aims to remove all cancer cells in the tumor margin and at centimeter-scale depths below the tissue surface. During surgery, microscopic clusters of disease are intraoperatively difficult to visualize and are often left behind, significantly increasing the risk of cancer recurrence. Radioguided surgery (RGS) has shown the ability to selectively tag cancer cells with gamma (γ) photon emitting radioisotopes to identify them, but require a mm-scale γ photon spectrometer to localize the position of these cells in the tissue margin (i.e., a function of incident γ photon energy) with high specificity. Here we present a 9.9 mm2 integrated circuit (IC)-based γ spectrometer implemented in 180 nm CMOS, to enable the measurement of single γ photons and their incident energy with sub-keV energy resolution. We use small 2 2 um reverse-biased diodes that have low depletion region capacitance, and therefore produce millivolt-scale voltage signals in response to the small charge generated by incident γ photons. A low-power energy spectrometry method is implemented by measuring the decay time it takes for the generated voltage signal to settle back to DC after a γ detection event, instead of measuring the voltage drop directly. This spectrometry method is implemented in three different pixel architectures that allow for configurable pixel sensitivity, energy-resolution, and energy dynamic range based on the widely heterogenous surgical and patient presentation in RGS. The spectrometer was tested with three common γ-emitting radioisotopes (64Cu, 133Ba, 177Lu), and is able to resolve activities down to 1 uCi with sub-keV energy resolution and 1.315 MeV energy dynamic range, using 5-minute acquisitions.

伽马探测手术导航微型传感器精准医疗

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