Positron emission tomography (PET) is an extraordinarily sensitive clinical imaging modality for interrogating tumor metabolism. Radiolabeled PET substrates can be traced at subphysiological concentrations, allowing noninvasive imaging of metabolism and intratumoral heterogeneity in systems ranging from advanced cancer models to patients in the clinic. There are a wide range of novel and more established PET radiotracers, which can be used to investigate various aspects of the tumor, including carbohydrate, amino acid, and fatty acid metabolism. In this review, we briefly discuss the more established metabolic tracers and describe recent work on the development of new tracers. Some of the unanswered questions in tumor metabolism are conside...
Positron Emission Tomography (PET) is a radiotracer imaging technique, in which tracer compounds lab...
Cancer is known to have unique metabolic features such as Warburg effect. Current cancer therapy has...
Biochemical cellular targets and more general metabolic processes in cancer cells can be visualised....
Treatment decisions in oncology are increasingly guided by information on the biologic characteristi...
Biochemical cellular targets and more general metabolic processes in cancer cells can be visualised....
AbstractTreatment decisions in oncology are increasingly guided by information on the biologic chara...
Molecular imaging of breast cancer has undoubtedly permitted a substantial development of the overal...
Amino acid metabolism PET imaging plays a very important role in metabolism molecular imaging. Amino...
Positron emission tomography (PET) enables the noninvasive spatiotemporal analysis of cancer metabol...
Positron emission tomography (PET) enables the noninvasive spatiotemporal analysis of cancer metabol...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced m...
Accurate and early evaluation of tumor response to chemotherapy is a growing clinical need for optim...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced M...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced M...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced M...
Positron Emission Tomography (PET) is a radiotracer imaging technique, in which tracer compounds lab...
Cancer is known to have unique metabolic features such as Warburg effect. Current cancer therapy has...
Biochemical cellular targets and more general metabolic processes in cancer cells can be visualised....
Treatment decisions in oncology are increasingly guided by information on the biologic characteristi...
Biochemical cellular targets and more general metabolic processes in cancer cells can be visualised....
AbstractTreatment decisions in oncology are increasingly guided by information on the biologic chara...
Molecular imaging of breast cancer has undoubtedly permitted a substantial development of the overal...
Amino acid metabolism PET imaging plays a very important role in metabolism molecular imaging. Amino...
Positron emission tomography (PET) enables the noninvasive spatiotemporal analysis of cancer metabol...
Positron emission tomography (PET) enables the noninvasive spatiotemporal analysis of cancer metabol...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced m...
Accurate and early evaluation of tumor response to chemotherapy is a growing clinical need for optim...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced M...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced M...
Routine diagnostics and treatment monitoring of brain tumors is usually based on contrast-enhanced M...
Positron Emission Tomography (PET) is a radiotracer imaging technique, in which tracer compounds lab...
Cancer is known to have unique metabolic features such as Warburg effect. Current cancer therapy has...
Biochemical cellular targets and more general metabolic processes in cancer cells can be visualised....