Molecular Imaging and Non-molecular Imaging of Atherosclerotic Plaque Thrombosis
Bingchen Guo1, Zhaoyue Li2, Peiyang Tu3
1Department of Cardiology, The Second Affiliated Hospital of Harbin Medical University, Harbin, China.
Insights
Early detection of thrombosis in atherosclerosis is crucial. Novel molecular and non-molecular imaging techniques offer improved diagnosis and personalized treatment, reducing adverse cardiovascular events.
Area of Science:
- Cardiovascular Imaging
- Atherothrombosis Research
- Medical Diagnostics
Background:
- Thrombosis in atherosclerosis leads to severe outcomes like heart attack and stroke.
- Conventional imaging limits early detection of thrombus formation.
- Need for advanced imaging to assess thrombus at molecular and cellular levels.
Purpose of the Study:
- Review current advancements in non-molecular and molecular imaging for thrombosis in atherosclerosis.
- Highlight the potential of novel imaging strategies for early diagnosis and treatment.
- Discuss the application of these technologies in animal studies and clinical settings.
Main Methods:
- Review of recent literature on molecular and non-molecular imaging techniques.
- Analysis of imaging approaches for assessing thrombus composition and activity.
- Examination of diagnostic and therapeutic applications in atherosclerosis.
Main Results:
- Novel imaging strategies accurately assess thrombus at molecular/cellular levels.
- These techniques aid in simultaneous diagnosis and personalized treatment of thrombosis.
- Imaging modalities help monitor plaque and prevent cardiovascular events.
Conclusions:
- Molecular and non-molecular imaging significantly improve atherothrombosis diagnosis.
- These technologies are vital for personalized treatment and event prevention.
- Continued development promises enhanced patient outcomes in cardiovascular health.
Abstract:
Thrombosis in the context of atherosclerosis typically results in life-threatening consequences, including acute coronary events and ischemic stroke. As such, early detection and treatment of thrombosis in atherosclerosis patients is essential. Clinical diagnosis of thrombosis in these patients is typically based upon a combination of imaging approaches. However, conventional imaging modalities primarily focus on assessing the anatomical structure and physiological function, severely constraining their ability to detect early thrombus formation or the processes underlying such pathology. Recently, however, novel molecular and non-molecular imaging strategies have been developed to assess thrombus composition and activity at the molecular and cellular levels more accurately. These approaches have been successfully used to markedly reduce rates of atherothrombotic events in patients suffering from acute coronary syndrome (ACS) by facilitating simultaneous diagnosis and personalized treatment of thrombosis. Moreover, these modalities allow monitoring of plaque condition for preventing plaque rupture and associated adverse cardiovascular events in such patients. Sustained developments in molecular and non-molecular imaging technologies have enabled the increasingly specific and sensitive diagnosis of atherothrombosis in animal studies and clinical settings, making these technologies invaluable to patients' health in the future. In the present review, we discuss current progress regarding the non-molecular and molecular imaging of thrombosis in different animal studies and atherosclerotic patients.
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