Direct surgery remains important for the treatment of superficial cerebral arteriovenous malformation (AVM). Surgical planning on the basis of careful analysis from various neuroimaging modalities can aid in resection of superficial AVM with favorable outcome. Three-dimensional (3D) magnetic resonance (MR) imaging reconstructed from time-of-flight (TOF) MR angiography was developed as an adjunctive tool for surgical planning of superficial AVM. 3-T TOF MR imaging without contrast medium was performed preoperatively in patients with superficial AVM. The images were imported into OsiriX imaging software and the 3D reconstructed MR image was produced using the volume rendering method. This 3D MR image could clearly visualize the surface angioarchitecture of the AVM with the surrounding brain on a single image, and clarified feeding arteries including draining veins and the relationship with sulci or fissures surrounding the nidus. 3D MR image of the whole AVM angioarchitecture was also displayed by skeletonization of the surrounding brain. Preoperative 3D MR image corresponded to the intraoperative view. Feeders on the brain surface were easily confirmed and obliterated during surgery, with the aid of the 3D MR images. 3D MR imaging for surgical planning of superficial AVM is simple and noninvasive to perform, enhances intraoperative orientation, and is helpful for successful resection.
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http://dx.doi.org/10.2176/nmc.51.163 | DOI Listing |
Cureus
December 2024
Neurosurgery, Southmead Hospital, North Bristol NHS, Bristol, GBR.
Cerebral arteriovenous malformations (AVMs) are tangles of abnormal vessels with early arteriovenous (AV) shunting that can lead to intracerebral hemorrhage, seizures, neurologic deficit, or headache. To date, only a few cases of carcinomas metastasizing to pre-existing cerebral AVMs have been reported in the literature. However, renal clear cell carcinoma (RCC) brain metastases that exhibit early AV shunting, where AVM pathology is not present, are extremely rare.
View Article and Find Full Text PDFJ Pers Med
November 2024
Department of Neurosurgery, Marche Polytechnic University, 60126 Ancona, Italy.
Indocyanine green video angiography, integrated into the operative microscope, is frequently used in cerebrovascular surgery. This technology is often preferred, for cost or availability, to Doppler or intraoperative DSA (digital subtraction angiography). With the same assumption it was possible, in our preliminary experience, to partially vicariate the aforementioned devices using the SPY mode of the Stryker endoscope; it allowed the visualization of fluorescence in high definition.
View Article and Find Full Text PDFSurg Neurol Int
November 2024
Department of Neurosurgery, Hamamatsu University School of Medicine, Hamamatsu, Japan.
Background: Arteriovenous malformation (AVM) and developmental venous anomaly (DVA) rarely coexist. Developing a surgical strategy to treat this co-occurrence is difficult due to the unclear pathogenesis. We report the use of super-selective digital subtraction angiography (DSA) and Three-dimensional (3D) rotational digital subtraction venography (DSV) to develop a surgical strategy for complex AVM draining into a DVA.
View Article and Find Full Text PDFActa Neurochir Suppl
November 2024
Clinic of Neurosurgery, Cluj County Clinical Emergency Hospital, Cluj-Napoca, Romania.
We describe the case of a 72-year-old man who presented with signs of increased intracranial pressure, right-sided motor deficit, and repeated episodes of epilepsy due to a left frontal arteriovenous malformation (AVM) with a large superficial draining vein. Despite great efforts to protect the vein from the start, it ruptured shortly after we removed the bone flap. This required rigorous hemorrhage control, which in turn led to profuse bleeding from the nidus throughout the process of the dissection and coagulation of the arterial feeders.
View Article and Find Full Text PDFFront Surg
October 2024
Department of Neurosurgery, University Hospital Leipzig, Leipzig, Germany.
Background And Importance: Arteriovenous malformations (AVMs) are complex vascular anomalies that pose significant risks, including intracranial hemorrhage and neurological deficits. Surgical resection is the preferred treatment, requiring precise intraoperative imaging to ensure complete removal while preserving critical structures. This case report presents the first combined use of hyperspectral imaging (HSI) and indocyanine green video angiography (ICG VA) to visualize perfusion during brain AVM surgery, highlighting the potential benefits of these advanced imaging techniques.
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