Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

INNV-29. MULTISPECTRAL ANALYSIS FOR INTRA-OPERATIVE CHARACTERIZATION OF BRAIN TUMOURS, MARGINS OF RESECTION, AND ELOQUENT AREAS ACTIVATION – PRELIMINARY RESULTS

View through CrossRef
Abstract BACKGROUND The identification of intrinsic brain tumours’ boundaries and their anatomical relationship with eloquent connectomes is one of the main challenges in neurosurgery. Several new intra-operative spectroscopic technologies have been recently investigated for this purpose. Multispectral imaging (MSI) analysis is based on analysis of reflected light, divided in specific wavelengths ranges across the electromagnetic spectrum. By doing so, it can identify wavelengths invisible to the naked eye, and make them visible by applying specific filters. METHODS We have used MSI to acquire intraoperative images during brain tumours surgeries. The MSI camera has been adapted to be connected to the intra-operative microscope and acquire a stack of images of different spectra to be analysed on a separate time. The focus of the images acquisition includes tumour structure, its margins, and eloquent connectomes during awake surgery or neurostimulation to analyse the possibility of different perfusion signal during activation. Image segmentation using K-mean clustering has been used to detect structural information and identify tumour’s area and tumour’s margins, while oxygen maps have been created using linear least squares regression to detect areas of metabolic activity. RESULTS Twenty-three patients have been enrolled in the current study at the time of this submission. We have analysed the intra-operative acquisition using intra-operative microscope picture, pre- and post-operative MRI scan, and neurophysiological findings as ground truth. Our preliminary results show that MSI is a potential additional technology to visually show tumour core, margins, and different degree of perfusions on the tissues analysed during tumour surgery. Although on a very limited subgroup of patients, MSI seems to be reliable in identify eloquent areas activation during awake surgery. These results are promising and warrant more data acquisition to be confirmed.
Title: INNV-29. MULTISPECTRAL ANALYSIS FOR INTRA-OPERATIVE CHARACTERIZATION OF BRAIN TUMOURS, MARGINS OF RESECTION, AND ELOQUENT AREAS ACTIVATION – PRELIMINARY RESULTS
Description:
Abstract BACKGROUND The identification of intrinsic brain tumours’ boundaries and their anatomical relationship with eloquent connectomes is one of the main challenges in neurosurgery.
Several new intra-operative spectroscopic technologies have been recently investigated for this purpose.
Multispectral imaging (MSI) analysis is based on analysis of reflected light, divided in specific wavelengths ranges across the electromagnetic spectrum.
By doing so, it can identify wavelengths invisible to the naked eye, and make them visible by applying specific filters.
METHODS We have used MSI to acquire intraoperative images during brain tumours surgeries.
The MSI camera has been adapted to be connected to the intra-operative microscope and acquire a stack of images of different spectra to be analysed on a separate time.
The focus of the images acquisition includes tumour structure, its margins, and eloquent connectomes during awake surgery or neurostimulation to analyse the possibility of different perfusion signal during activation.
Image segmentation using K-mean clustering has been used to detect structural information and identify tumour’s area and tumour’s margins, while oxygen maps have been created using linear least squares regression to detect areas of metabolic activity.
RESULTS Twenty-three patients have been enrolled in the current study at the time of this submission.
We have analysed the intra-operative acquisition using intra-operative microscope picture, pre- and post-operative MRI scan, and neurophysiological findings as ground truth.
Our preliminary results show that MSI is a potential additional technology to visually show tumour core, margins, and different degree of perfusions on the tissues analysed during tumour surgery.
Although on a very limited subgroup of patients, MSI seems to be reliable in identify eloquent areas activation during awake surgery.
These results are promising and warrant more data acquisition to be confirmed.

Related Results

Brain Organoids, the Path Forward?
Brain Organoids, the Path Forward?
Photo by Maxim Berg on Unsplash INTRODUCTION The brain is one of the most foundational parts of being human, and we are still learning about what makes humans unique. Advancements ...
[RETRACTED] Gro-X Brain Reviews - Is Gro-X Brain A Scam? v1
[RETRACTED] Gro-X Brain Reviews - Is Gro-X Brain A Scam? v1
[RETRACTED]➢Item Name - Gro-X Brain➢ Creation - Natural Organic Compound➢ Incidental Effects - NA➢ Accessibility - Online➢ Rating - ⭐⭐⭐⭐⭐➢ Click Here To Visit - Official Website - ...
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct Introduction Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
Intra-operative Acquisition of Electrophysiological Data in Human Motor Eloquent Neurosurgery v1
Intra-operative Acquisition of Electrophysiological Data in Human Motor Eloquent Neurosurgery v1
Problem: When acquiring intra-operative subcortical stimulation data, it is important to account for the spatial inaccuracies that may be introduced due to a spatial mismatch betwe...
Pulmonary carcinoid tumours
Pulmonary carcinoid tumours
Key pointsPulmonary carcinoid tumours account for 2% of all lung tumours, with an increase in incidence due to more accurate diagnostic techniques.Carcinoid tumours are relatively ...
Risk Factors for Anorectal Dysfunction After Interspincteric Resection in Patients With Low Rectal Cancer
Risk Factors for Anorectal Dysfunction After Interspincteric Resection in Patients With Low Rectal Cancer
Purpose: The objective of this study was to explore the risk factors for anorectal dysfunction after intersphincteric resection in patients with low rectal cancer.Methods: A total ...
<b>INTRA-Operative and Post-Operative Common Complications of Hysterectomy</b>
<b>INTRA-Operative and Post-Operative Common Complications of Hysterectomy</b>
Background: Hysterectomy is a common gynecological procedure with potentially significant intra-operative and early post-operative morbidity; context-specific complication profilin...

Back to Top