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Review
. 2023 Oct;39(10):2605-2611.
doi: 10.1007/s00381-023-06040-w. Epub 2023 Jul 31.

Technical evolution of pediatric neurosurgery: the evolution of intraoperative imaging

Affiliations
Review

Technical evolution of pediatric neurosurgery: the evolution of intraoperative imaging

Shadi Bsat et al. Childs Nerv Syst. 2023 Oct.

Abstract

Imaging has always been fundamental to neurosurgery, and its evolution over the last century has made a dramatic transformation in the ability of neurosurgeons to define pathology and preserve normal tissue during their operations. In the mid-70 s, the development of computerized cross-sectional imaging with CT scan and subsequently MRI have revolutionized the practice of neurosurgery. Later, further advances in computer technology and medical engineering have allowed the combination of many modalities to bring them into the operating theater. This evolution has allowed real-time intraoperative imaging, in the hope of helping neurosurgeons achieve accuracy, maximal safe resection, and the implementation of minimally invasive techniques in brain and spine pathologies. Augmented reality and robotic technologies are also being applied as useful intra-operative techniques that will improve surgical planning and outcomes in the future. In this article, we will review imaging modalities and provide our institutional perspective on how we have integrated them into our practice.

Keywords: Brain tumor surgery; Intraoperative imaging; Pediatric neurosurgery; Pediatric spine surgery.

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References

    1. Hubbard TB, Moore GE (1949) The use of fluorescein dyes in the diagnosis of malignancy with special reference to tumors of the central nervous system. J Natl Cancer Inst 10:303–314 - PubMed
    1. Chou SN, Aust JB, Peyton WT, Moore GE (1951) Radioactive isotopes in localization of intracranial lesions; a survey of various types of isotopes and tagged compounds useful in the diagnosis and localization of intracranial lesions with special reference to the use of radioactive iodine-tagged human serum albumin. AMA Arch Surg 63:554–560 - PubMed - DOI
    1. Kuroiwa T, Kajimoto Y, Ohta T (1998) Development of a fluorescein operative microscope for use during malignant glioma surgery: a technical note and preliminary report. Surg Neurol 50:41–48; discussion 48–49
    1. Nimsky C, Carl B (2017) Historical, current, and future intraoperative imaging modalities. Neurosurg Clin N Am 28:453–464 - PubMed - DOI
    1. Sanai N, Berger MS (2008) Glioma extent of resection and its impact on patient outcome. Neurosurgery 62:753–764; discussion 264–756

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