In Situ Brain Tumor Detection Using the Raman Spectroscopy Sentry System – Results of a Multicenter Study

Author:

Leblond Frédéric1,Ember Katherine,Dallaire Frédérick,Plante Arthur,Sheehy Guillaume,Guiot Marie-Christine,Agarwal Rajeev,Yadav Rajeev,Douet Alice,Selb Juliette,Tremblay Jean-Philippe,Dupuis Alex,Marple Eric,Urmey Kirk,Rizea Caroline,Harb Armand,McCarthy Lily,Schupper Alexander,Umphlett Melissa,Tsankova Nadejda,Hadjipanayis Constantinos,petrecca Kevin2

Affiliation:

1. Polytechnique Montreal

2. Montreal Neurological Institute and Hospital

Abstract

Abstract Safe and effective brain tumor surgery aims to remove tumor tissue, not non-tumoral brain. This is a challenge since tumor cells are often not visually distinguishable from peritumoral brain during surgery. To address this, we conducted a multicenter study testing whether the Sentry System could distinguish the three most common types of brain tumors from brain tissue in a label-free manner. The Sentry System is a new real time, in situ brain tumor detection device that merges Raman spectroscopy with machine learning tissue classifiers. Nine hundred and eighty-five in situ spectroscopy measurements and colocalized tissue specimens were acquired from 67 patients undergoing surgery for glioblastoma, brain metastases, or meningioma to assess tumor classification. The device achieved diagnostic accuracies of 91% for glioblastoma, 97% for brain metastases, and 96% for meningiomas. These data show that the Sentry System discriminated tumor containing tissue from non-tumoral brain in real time and prior to resection.

Publisher

Research Square Platform LLC

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