Next-generation stationary full-ring SPECT/CT: enhancing theranostic quantification and 4D dynamic volumetric imaging

While novel full-ring SPECT systems are increasingly being applied in clinical settings, there is a critical lack of intra-individual, head-to-head comparative studies between these advanced platforms and conventional dual-head SPECT. Consequently, their definitive impact on clinical diagnostic and therapeutic decision-making remains unclear. To address this gap, we conducted an intra-patient head-to-head comparison to evaluate the image quality, diagnostic yield, and quantitative performance of a stationary full-ring SPECT/CT platform across several clinical applications. A prospective, randomized, intra-patient crossover study was conducted in 30 patients undergoing SPECT/CT. Patients were imaged sequentially using a novel stationary full-ring SPECT/CT system (AIMS Epoch 310) and a conventional dual-head camera (GE-D870). The clinical cohort encompassed bone scintigraphy, thyroid imaging, myocardial perfusion imaging, dynamic renal scintigraphy, and post-radioligand therapy (RLT) imaging ( 131 I and 177 Lu-PSMA). Diagnostic yield, signal-to-noise ratio (SNR), and lesion detection rates were evaluated comparatively. The stationary full-ring system showed higher image quality and diagnostic metrics compared to the conventional system. In bone scintigraphy, the full-ring platform detected 20.0% additional metastatic lesions that were occult on the dual-head system, corresponding to a 1.7-fold increase in SNR ( P = 0.010). In theranostic applications, the platform significantly enhanced the delineation of metastatic foci, demonstrating 3.2-fold and 4.8-fold higher SNRs for 131 I and 177 Lu imaging, respectively ( P < 0.05). Furthermore, synchronous four-dimensional volumetric dynamic acquisition yielded glomerular filtration rate (GFR) estimates that were 26.2% higher than those obtained using the traditional two-dimensional planar Gates method ( P < 0.05). The stationary full-ring SPECT/CT architecture may reduce some limitations associated with conventional dual-head systems, showed potential value for clinical advantages in oncologic staging and theranostic dosimetry. By ensuring broad-spectrum quantitative accuracy and enabling synchronous 4D volumetric imaging, this platform may provide additional technical options for quantitative SPECT/CT and functional imaging, although further validation in larger cohorts is required.

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Journal
EJNMMI Physics
Published
2026-09-30
DOI
https://doi.org/10.1186/s40658-026-00940-x
Primary Topic
Medical Imaging Techniques and Applications
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article
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Next-generation stationary full-ring SPECT/CT: enhancing theranostic quantification and 4D dynamic volumetric imaging

Xiao Deng, Ruohua Chen, 霍力, Gang Huang et al.
EJNMMI Physics
Medical Imaging Techniques and Applications
article

Next-generation stationary full-ring SPECT/CT: enhancing theranostic quantification and 4D dynamic volumetric imaging

Xiao Deng, Ruohua Chen, 霍力, Gang Huang, Pei Yin, Tingyu Xue, Huayi Zhao, Yong Wang, Hao Liu, Nan Hu
article en

Abstract

While novel full-ring SPECT systems are increasingly being applied in clinical settings, there is a critical lack of intra-individual, head-to-head comparative studies between these advanced platforms and conventional dual-head SPECT. Consequently, their definitive impact on clinical diagnostic and therapeutic decision-making remains unclear. To address this gap, we conducted an intra-patient head-to-head comparison to evaluate the image quality, diagnostic yield, and quantitative performance of a stationary full-ring SPECT/CT platform across several clinical applications. A prospective, randomized, intra-patient crossover study was conducted in 30 patients undergoing SPECT/CT. Patients were imaged sequentially using a novel stationary full-ring SPECT/CT system (AIMS Epoch 310) and a conventional dual-head camera (GE-D870). The clinical cohort encompassed bone scintigraphy, thyroid imaging, myocardial perfusion imaging, dynamic renal scintigraphy, and post-radioligand therapy (RLT) imaging ( 131 I and 177 Lu-PSMA). Diagnostic yield, signal-to-noise ratio (SNR), and lesion detection rates were evaluated comparatively. The stationary full-ring system showed higher image quality and diagnostic metrics compared to the conventional system. In bone scintigraphy, the full-ring platform detected 20.0% additional metastatic lesions that were occult on the dual-head system, corresponding to a 1.7-fold increase in SNR ( P = 0.010). In theranostic applications, the platform significantly enhanced the delineation of metastatic foci, demonstrating 3.2-fold and 4.8-fold higher SNRs for 131 I and 177 Lu imaging, respectively ( P < 0.05). Furthermore, synchronous four-dimensional volumetric dynamic acquisition yielded glomerular filtration rate (GFR) estimates that were 26.2% higher than those obtained using the traditional two-dimensional planar Gates method ( P < 0.05). The stationary full-ring SPECT/CT architecture may reduce some limitations associated with conventional dual-head systems, showed potential value for clinical advantages in oncologic staging and theranostic dosimetry. By ensuring broad-spectrum quantitative accuracy and enabling synchronous 4D volumetric imaging, this platform may provide additional technical options for quantitative SPECT/CT and functional imaging, although further validation in larger cohorts is required.

EJNMMI Physics
Hebei Medical University (CN), Shanghai Jiao Tong University (CN), Chinese Academy of Medical Sciences & Peking Union Medical College (CN), Renji Hospital (CN), Peking Union Medical College Hospital (CN), Shanghai University of Medicine and Health Sciences (CN), First Affiliated Hospital of Hebei Medical University (CN)
Peace, Justice and strong institutions
Openalex Percentile: Top 12%
Medical Imaging Techniques and Applications
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