Advancing small-animal molecular imaging through multifaceted innovation [0.03%]
通过多方面创新推动小型动物分子影像学的发展
Guosong Hong,Chongzhao Ran,Scott C Davis et al.
Guosong Hong et al.
The editorial highlights articles in a JBO special section, as well as emerging trends in small-animal molecular imaging. © 2026 The Authors.
Characterization of vascular patterns in endometrial cancer via optical resolution photoacoustic microscopy [0.03%]
利用光学分辨率超声成像表征子宫内膜癌的血管模式
Lukai Wang,Yixiao Lin,Sanskar Thakur et al.
Lukai Wang et al.
Significance: Accurate classification of endometrial pathology is clinically challenging due to the heterogeneous and focal nature of precancerous and malignant lesions. Vascular remodeling is closely linked to tumor prog...
Quantitative assessment of rheumatoid arthritis treatment response using short-wave infrared hyperspectral imaging soft abundance scoring [0.03%]
采用短波红外光谱成像软丰度评分法进行定量类风湿性关节炎疗效评估
Hsin-Hua Chen,Hsin-Che Wang,Kuo-Lung Lai et al.
Hsin-Hua Chen et al.
Significance: Non-invasive optical measures for evaluating rheumatoid arthritis (RA) remain limited. Clinical scores such as the 28-joint Disease Activity Score (DAS28) and ultrasound are operator-dependent and do not dir...
Noninvasive diffuse optical monitoring of cerebral blood flow and oxygenation responses to intermittent hypoxia in neonatal rats [0.03%]
无创漫射光学监测新生鼠间歇性低氧引起的脑血流和氧合变化响应
Pegah Safavi,Mehrana Mohtasebi,Chowdhury Azimul Haque et al.
Pegah Safavi et al.
Significance: Intermittent hypoxia (IH) is common in preterm neonates and can cause hypoxic-ischemic brain injury. Simultaneous monitoring of cerebral blood flow (CBF) and oxygenation is essential to detect oxygen deliver...
Polarized hyperspectral and polarized light microscopic imaging for enhanced visualization of white blood cells [0.03%]
用于增强白细胞可视化的一种偏振光谱成像和偏光显微镜方法
Ximing Zhou,Hasan K Mubarak,Ling Ma et al.
Ximing Zhou et al.
Significance: White blood cells (WBC) are hematopoietic cells of the immune system that protect the body by recognizing and eliminating infectious agents. Abnormalities in WBC production, maturation, or function can lead ...
Combining label-free Raman spectroscopy and machine learning to identify early biomarkers of COVID-19 disease severity and mortality [0.03%]
结合无标签拉曼光谱和机器学习识别COVID-19疾病严重程度和死亡率的早期生物标志物
Maryam Heidarifard,Katherine Ember,Frédérick Dallaire et al.
Maryam Heidarifard et al.
Significance: Early prediction of COVID-19 severity and mortality is crucial for optimizing clinical care and patient outcomes, but remains challenging. A...
High dynamic range shortwave infrared imaging of mice with an InGaAs camera [0.03%]
基于InGaAs相机的活体小鼠高动态范围短波红外成像
Amish Patel,Xingjian Zhong,Mallory Moffett et al.
Amish Patel et al.
Significance: Although shortwave infrared (SWIR) imaging provides superior tissue penetration and reduced autofluorescence for preclinical applications, quantitative fluorescence analysis is hindered by the limited dynami...
Multimodal PSOCT-NIRS catheter for guided ablation of atrial fibrillation [0.03%]
用于指导房颤消融的多模态PSOCT-NIRS导管
Michael Douglass,Reza Mohammadpour,Walter Hoyt et al.
Michael Douglass et al.
Significance: Atrial fibrillation is treated with thermal ablation to isolate ectopic signals. Although this is the current standard of care, recurrence occurs in up to 40% of cases. Clinicians have no reliable way to pre...
Efficient denoising in LED-based optoacoustic tomography with squeeze-and-excitation deep convolutional networks [0.03%]
基于LED的光学声学断层扫描中使用挤压和激励深度卷积网络的高效去噪方法
Yuan Xu,Xiang Liu,Xosé Luis Deán-Ben et al.
Yuan Xu et al.
Significance: Low-cost optoacoustic imaging based on light-emitting diodes (LEDs) offers an affordable alternative to traditional laser-based systems, potentially broadening the reach of this technology into resource-limi...
Erratum: Learning to simulate realistic human diffuse reflectance spectra (Erratum) [0.03%]
更正:学习模拟真实的人类漫反射光谱
Marco Hübner,Ahmad Bin Qasim,Alexander Studier-Fischer et al.
Marco Hübner et al.
[This corrects the article DOI: 10.1117/1.JBO.31.2.026004.]. © 2026 The Authors.
Published Erratum
Journal of biomedical optics. 2026 Mar;31(3):039801. DOI:10.1117/1.JBO.31.3.039801 2026