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Author Spotlight: An Efficient and Robust Software for Automated Fusion of Multiple Preclinical Imaging Modalities
Published on: October 27, 2023
Multimodal positron emission tomography (PET) imaging in non-oncologic musculoskeletal radiology
Feliks Kogan1, Daehyun Yoon2, Matthew G Teeter3
1Department of Radiology, Stanford University, Stanford, CA, USA. fkogan@stanford.edu.
Abstract:
Musculoskeletal (MSK) disorders are associated with large impacts on patient's pain and quality of life. Conventional morphological imaging of tissue structure is limited in its ability to detect pain generators, early MSK disease, and rapidly assess treatment efficacy. Positron emission tomography (PET), which offers unique capabilities to evaluate molecular and metabolic processes, can provide novel information about early pathophysiologic changes that occur before structural or even microstructural changes can be detected. This sensitivity not only makes it a powerful tool for detection and characterization of disease, but also a tool able to rapidly assess the efficacy of therapies. These benefits have garnered more attention to PET imaging of MSK disorders in recent years. In this narrative review, we discuss several applications of multimodal PET imaging in non-oncologic MSK diseases including arthritis, osteoporosis, and sources of pain and inflammation. We also describe technical considerations and recent advancements in technology and radiotracers as well as areas of emerging interest for future applications of multimodal PET imaging of MSK conditions. Overall, we present evidence that the incorporation of PET through multimodal imaging offers an exciting addition to the field of MSK radiology and will likely prove valuable in the transition to an era of precision medicine.
Insights
Positron emission tomography (PET) offers advanced molecular insights into musculoskeletal (MSK) disorders, detecting early disease and assessing treatment response faster than conventional methods. This multimodal imaging approach enhances precision medicine for conditions like arthritis and osteoporosis.
Area of Science:
- Radiology
- Molecular Imaging
- Musculoskeletal Medicine
Background:
- Musculoskeletal (MSK) disorders significantly impact patient pain and quality of life.
- Conventional imaging struggles to detect early disease, pain generators, and treatment efficacy.
- Positron emission tomography (PET) offers unique molecular and metabolic insights into pathophysiologic changes.
Purpose of the Study:
- To review the applications of multimodal PET imaging in non-oncologic MSK diseases.
- To discuss technical considerations and advancements in PET technology and radiotracers.
- To highlight emerging areas for future PET applications in MSK conditions.
Main Methods:
- Narrative review of existing literature on PET imaging in MSK disorders.
- Discussion of PET's capabilities in evaluating molecular and metabolic processes.
- Exploration of multimodal imaging strategies incorporating PET.
Main Results:
- PET can detect early pathophysiologic changes before structural alterations are visible.
- PET enables rapid assessment of therapeutic efficacy.
- Multimodal PET imaging shows promise for conditions like arthritis and osteoporosis.
Conclusions:
- PET imaging provides valuable molecular and metabolic information for MSK conditions.
- Multimodal PET enhances diagnostic and therapeutic assessment in MSK radiology.
- PET integration supports the advancement of precision medicine in MSK care.
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