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Functional MRI in Neuro-Oncology: State of the Art and Future Directions
Luca Pasquini1, Kyung K Peck1, Mehrnaz Jenabi1
1From the Neuroradiology Service, Department of Radiology (L.P., K.K.P., M.J., A.H.), Department of Medical Physics (K.K.P.), and Brain Tumor Center (A.H.), Memorial Sloan Kettering Cancer Center, 1275 York Ave, New York, NY 10065; Neuroradiology Unit, NESMOS Department, Sant'Andrea Hospital, La Sapienza University, Rome, Italy (L.P.); Department of Radiology, Weill Medical College of Cornell University, New York, NY (A.H.); and Department of Neuroscience, Weill Cornell Medicine Graduate School of Medical Sciences, New York, NY (A.H.).
Abstract:
Since its discovery in the early 1990s, functional MRI (fMRI) has been used to study human brain function. One well-established application of fMRI in the clinical setting is the neurosurgical planning of patients with brain tumors near eloquent cortical areas. Clinical fMRI aims to preoperatively identify eloquent cortices that serve essential functions in daily life, such as hand movement and language. The primary goal of neurosurgery is to maximize tumor resection while sparing eloquent cortices adjacent to the tumor. When a lesion presents in the vicinity of an eloquent cortex, surgeons may use fMRI to plan their best surgical approach by determining the proximity of the lesion to regions of activation, providing guidance for awake brain surgery and intraoperative brain mapping. The acquisition of fMRI requires patient preparation prior to imaging, determination of functional paradigms, monitoring of patient performance, and both processing and analysis of images. Interpretation of fMRI maps requires a strong understanding of functional neuroanatomy and familiarity with the technical limitations frequently present in brain tumor imaging, including neurovascular uncoupling, patient compliance, and data analysis. This review discusses clinical fMRI in neuro-oncology, relevant ongoing research topics, and prospective future developments in this exciting discipline.
Insights
Functional MRI (fMRI) aids neurosurgery by mapping critical brain areas near tumors. This helps surgeons preserve essential functions like movement and language during tumor removal.
Area of Science:
- Neuroimaging
- Clinical Neuroscience
- Neurosurgery
Background:
- Functional MRI (fMRI) is a key tool for studying human brain function since the 1990s.
- Clinical fMRI is crucial for neurosurgical planning in patients with brain tumors near eloquent cortical areas.
Purpose of the Study:
- To review the application of clinical fMRI in neuro-oncology.
- To discuss current research and future developments in clinical fMRI for neurosurgical planning.
Main Methods:
- fMRI acquisition involves patient preparation, functional paradigm determination, performance monitoring, and image processing/analysis.
- Interpretation requires understanding functional neuroanatomy and technical limitations like neurovascular uncoupling and patient compliance.
Main Results:
- fMRI preoperatively identifies eloquent cortices essential for functions like hand movement and language.
- It guides surgical approaches by showing lesion proximity to activated regions, aiding awake brain surgery and intraoperative mapping.
Conclusions:
- Clinical fMRI is vital for maximizing tumor resection while preserving critical brain functions.
- Ongoing research and technical advancements promise to further enhance fMRI's role in neuro-oncology.
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