A new targeted radiation approach has achieved a near-complete response in three patients with solitary fibrous tumor (SFT), a rare and aggressive form of cancer. The therapy significantly reduced cancer activity and provided symptom relief, highlighting its potential as a treatment option.
New PET imaging agents show promise for detecting thyroid and neuroendocrine tumors, as well as reversing fibrosis in the heart. Researchers also explored tau PET scans for Alzheimer's detection and SSTR PET/CT for meningioma diagnosis. These advancements hold potential for improving cancer treatment and patient outcomes.
Researchers developed a new PET tracer that effectively identifies synapse loss in the spinal cord and brain after spinal cord injury. The study found reduced uptake of the tracer at the injury site and in the amygdala and cerebellum, suggesting potential for diagnosing and monitoring spinal cord injuries.
Researchers have identified two molecular targets, HER2 and CD24, as promising candidates for new nuclear diagnostics and therapeutics for endometrial cancer. These targets may help clinicians identify patients likely to respond to targeted therapies, offering new hope for those with disseminated or recurrent disease.
Researchers have developed new PET tracers to monitor immune responses and inflammation beyond the lungs throughout the course of SARS-CoV-2 infection. These breakthroughs offer a new way to visualize changes in lymph nodes, spleen, and bone marrow, supporting faster and more comprehensive imaging.
Researchers have published three studies using new imaging approaches to detect and treat various types of cancer. These advancements include positronium lifetime tomography for sharper scans, targeted radiotherapy for sarcoma patients, and biomarkers for endometrial cancer diagnosis.
A new technique uses a topical fluorescent molecular contrast agent to detect basal cell carcinoma, which can be done non-invasively in as little as five minutes. The technique shows promise for improving diagnostic accuracy and reducing unnecessary biopsies.
Recent studies have shown promising results for triple-targeted cancer therapy, new PET imaging tracers tracking immune activation, and reducing PET scan doses while maintaining diagnostic accuracy. These advancements hold promise for improving cancer treatment outcomes and precision medicine.
A new study from Denmark shows that men with biochemically recurrent prostate cancer who undergo PSMA PET/CT before salvage radiotherapy have improved survival rates compared to those who do not. This research confirms that PSMA PET/CT is a valuable tool for identifying patients likely to benefit from salvage radiotherapy, potentially ...
The Global Radiopharmaceutical Trial Finder, a new AI-powered platform, helps researchers, clinicians, and patients discover clinical trials for life-changing nuclear medicine procedures. The platform uses real-time global trials data and streamlines the trial participation process.
Researchers developed a novel radioimmunotherapy that successfully eliminated cancer stem cells (CSCs) in preclinical models of ovarian cancer. The therapy, targeting CSC-associated biomarkers L1CAM + /CD133 + , showed significantly increased cytotoxicity compared to existing treatments.
Researchers developed a radiotracer targeting CD24 protein on liver tumor cells, accurately detecting tumors in mice. PSMA PET/CT scans also tracked prostate cancer spread in patients, predicting shorter survival for those with interlesional progression.
A first-in-human study found that naloxone reduces opioid receptor availability by 40-50 percent in brain regions, but shows a greater reduction in women compared to men. This suggests sex-based differences in how men and women respond to opioid overdose treatments.
A new study found that long COVID patients with abnormal cardiopulmonary PET/MR findings are at a higher risk of developing heart and lung diseases. The study included 98 patients with persistent cardiopulmonary symptoms after initial COVID infection and showed significant abnormalities in both PET/MRI and dual-energy CT scans.
The Society of Nuclear Medicine and Molecular Imaging's Annual Meeting featured over 120 continuing education sessions on innovations in oncology, neurology, and cardiology. The meeting also showcased cutting-edge technology, including AI, theranostics, and novel imaging probes.
Jean-Luc C. Urbain has been named president of the Society of Nuclear Medicine and Molecular Imaging (SNMMI), aiming to integrate radiopharmaceutical theranostics into clinical practice. As president, he plans to prioritize research, education, and patient safety to benefit patients worldwide.
Heather Jacene, MD, has been elected as the new president-elect of SNMMI, with a focus on strengthening the organization and promoting nuclear medicine. She aims to create opportunities for member participation and multidisciplinary collaborations, while raising awareness of nuclear medicine's value to clinical colleagues and patients.
A novel PET imaging approach can accurately detect and monitor Mycobacteroides abscessus lung infections. The technique uses 11C-PABA PET to differentiate between bacterial infection and inflammatory diseases.
A study found that modifiable risk factors like education, BMI, and hypertension can slow down the spread of Alzheimer's tau tangles. The research suggests that modifying these risk factors can help delay disease progression.
A dual-protective approach using Botox and an anti-nausea patch significantly reduces salivary gland toxicity in prostate cancer patients undergoing PSMA-targeted radiopharmaceutical therapy. This strategy led to a 30% decrease in PSMA uptake by the salivary glands without affecting the treatment's cancer-fighting efficacy.
Dr. Gary Ulaner has been elected vice president-elect of the Society of Nuclear Medicine and Molecular Imaging (SNMMI), committed to advancing nuclear medicine research and expanding educational activities for professionals. As part of his role, he aims to drive growth and funding for training new radiochemistry and physics professionals.
A new PET/CT imaging technique visualizes activated fibroblasts in the heart muscle, detecting multiple forms of cardiomyopathy. The method provides valuable insights into disease progression and helps improve risk stratification for patients with non-ischemic cardiomyopathy.
A new PET radiotracer can detect a wide range of mold species linked to life-threatening infections in cancer and transplant patients. The imaging agent, 18F-FDS, has the potential to dramatically enhance diagnosis and monitoring of invasive mold infections.
Researchers developed a novel PET tracer targeting phosphodiesterase 4B to visualize real-time brain inflammation. The tracer showed superior image quality and greater brain distribution compared to existing tracers, highlighting its potential for early diagnosis and personalized therapy in neurodegenerative diseases.
A novel molecular imaging agent targeting glypican-3 has demonstrated high sensitivity and specificity in detecting hepatocellular carcinoma (HCC), including tumors smaller than one centimeter. The agent provides high-contrast images of GPC3-positive liver tumors, offering a promising new tool for early diagnosis and staging of HCC.
A new peptide-based PET tracer outperforms FDG PET in measuring PD-L1 expression in head and neck cancers. The tracer's uptake strongly correlates with PD-L1 levels, suggesting its potential for personalized treatment strategies.
The Society of Nuclear Medicine and Molecular Imaging (SNMMI) has selected 7 new Fellows for their exceptional achievements in the field. The SNMMI Fellowship is a prestigious recognition of outstanding service to the society and excellence in scientific discovery, educational efforts, or clinical practice.
Researchers used PET imaging to map brain inflammation in PAOS patients, finding distinct patterns that correlate with tau pathology and Parkinson-plus syndrome. The study provides new insights into neuroinflammation's role in disease progression and may lead to earlier diagnosis and targeted treatments.
Cybil Nielsen has been elected as the new president of the SNMMI Technologist Section, with a focus on expanding educational programs, mentorship opportunities, and networking events. She aims to promote the recognition and advancement of nuclear medicine technologists within the healthcare landscape.
A newly developed cardiac PET imaging technique offers a simpler way to detect significant coronary artery disease by eliminating the need for complex scanning protocols. The technique has been shown to accurately estimate myocardial flow reserve during both exercise and pharmacologic stress, making advanced heart imaging more accessible.
Julie C. Price has been recognized for her groundbreaking work on PET imaging techniques and multimodal imaging for translational neuroscience. She aims to advance early detection of Alzheimer's disease-related tau protein deposition.
Researchers developed a dual-targeting radiopharmaceutical therapy that targets two key markers simultaneously, delivering radiation directly to tumors. The therapy showed strong and lasting uptake in tumors, allowing for high doses of targeted radiation to be delivered to cancer cells, resulting in 88.9% positive responses.
Wynn Volkert, a renowned expert in nuclear medicine, has been awarded the 2025 SNMMI Georg Charles de Hevesy Nuclear Pioneer Award. He made significant contributions to radiopharmaceutical development, including FDA-approved agents for brain and bone imaging.
Shannon Youngblood, a seasoned nuclear medicine professional, has been elected as President-Elect of the SNMMI Technologist Section. She aims to elevate visibility and recognition for nuclear medicine professionals through advocacy, promote diversity and inclusion in the workforce, and advance education and professional development. Wi...
A novel integrated molecular imaging approach using dual PET/MR and PET/CMR techniques enables precise localization of heart damage and accurate identification of disease subtypes. This method also provides direct evidence supporting surgery as a cardio-protective intervention in patients with primary aldosteronism.
A new brain imaging platform combining upright PET scanning, AR eye tracking, and motion tracking enables researchers to study brain function in a more natural and dynamic way. This approach offers a more realistic view of brain activity, holding promise for earlier detection of cognitive disorders.
Two new PET imaging agents have been developed to identify the histamine H3 receptor, which regulates learning, memory, and sleep. These novel tracers show high brain uptake, excellent specificity, and improved in vivo stability.
A new PET imaging technique has successfully visualized three radiotracers in a single scan, enabling a more comprehensive molecular profile of disease. This innovation offers the potential to deliver greater precision in both diagnosis and therapeutic assessment, particularly for complex diseases like cancer.
Advanced software is used to measure radiation dose distribution throughout the body, ensuring patient safety and tailoring treatments. Post-therapy imaging helps identify complications and guide clinical decisions, ultimately optimizing treatment outcomes and protecting patients.
Researchers found that low blood flow at rest may predict heart failure or death, while low stress flow may indicate heart attack risk. A new PET scan method also showed promise for Alzheimer's detection with high accuracy and minimal discomfort.
A novel immuno-PET/CT imaging technique has identified a potent biomarker for nasopharyngeal cancer (NPC), CD70, which is highly expressed in NPCs. The technique showed 100% detection rate of primary tumors and 93% detection rate of local lymph node metastasis in patients with early-stage disease.
New radioimmunotherapy approaches show promise against advanced breast cancer and prostate cancer. Additionally, new imaging tools enhance cancer detection and diagnosis, while a proposed standard improves lesion interpretation. Cost-effectiveness studies also support novel therapies for rare digestive cancers.
A newly developed molecular imaging technique can identify multiple subtypes of triple-negative breast cancer, improving diagnostic capacity. The approach targets extra domain A of fibronectin, a stable protein in the tumor stromal environment abundantly expressed in breast cancer.
Researchers studied obesity's impact on breast cancer, linked imaging patterns to lung disease survival, and tracked hidden inflammation in COVID-19 patients using advanced PET imaging techniques.
New studies explore peptide receptor radionuclide therapy, targeted radiation for prostate cancer, and neuroendocrine tumor treatment. Targeted radiation boosts survival in colorectal liver cancer and bone metastases, while a new PET imaging tracer shows promise for detection.
A new combination therapy pairing radiopharmaceutical 177Lu-DOTATATE with DNA-repair blocker olaparib has been deemed feasible and tolerable for neuroendocrine cancer patients. Eighteen patients received the combined therapy, resulting in a 69% disease control rate at six months.
Scientists have developed a novel pretargeting system to boost cancer imaging using DARPin G3, which achieves specific tumor targeting with reduced kidney and liver uptake. GRPR is emerging as a powerful tool for both imaging and treatment in various cancers, offering personalized cancer care across multiple tumor types.
Scientists have developed a new PET imaging compound to visualize key enzymes in mental health, enabling multiple same-day scans. Additionally, researchers have discovered that PET scans can detect not only HER2-positive but also HER2-low breast cancer lesions.
Researchers have developed new imaging tools to visualize protein changes in Alzheimer's, heart and lung issues in long COVID patients, and a common marker in nasopharyngeal cancer. A first-in-human trial tests a next-generation radiopharmaceutical for advanced prostate cancer.
Researchers have discovered important differences in how a targeted therapy behaves in the body over time, allowing for more tailored treatment strategies. A new PET/CT scanner also shows promise for accurate imaging with dramatically reduced exposure, especially for sensitive patients like children or those needing repeated scans.