Literature DB >> 31419798

Intraoperative acquisition of DTI in cranial neurosurgery: readout-segmented DTI versus standard single-shot DTI.

Cameron A Elliott1, Hayden Danyluk2, Keith E Aronyk1, Karolyn Au1, B Matt Wheatley1, Donald W Gross3, Tejas Sankar1, Christian Beaulieu4.   

Abstract

OBJECTIVE: Diffusion tensor imaging (DTI) tractography is commonly used in neurosurgical practice but is largely limited to the preoperative setting. This is due primarily to image degradation caused by susceptibility artifact when conventional single-shot (SS) echo-planar imaging (EPI) DTI (SS-DTI) is acquired for open cranial, surgical position intraoperative DTI (iDTI). Readout-segmented (RS) EPI DTI (RS-DTI) has been reported to reduce such artifact but has not yet been evaluated in the intraoperative MRI (iMRI) environment. The authors evaluated the performance of RS versus SS EPI for DTI of the human brain in the iMRI setting.
METHODS: Pre- and intraoperative 3-T 3D T1-weighted and 2D multislice RS-iDTI (called RESOLVE [readout segmentation of long variable echo-trains] on the Siemens platform) and SS-iDTI images were acquired in 22 adult patients undergoing intraaxial iMRI resections for suspected low-grade glioma (14; 64%), high-grade glioma (7; 32%), or focal cortical dysplasia. Regional susceptibility artifact, anatomical deviation relative to T1-weighted imaging, and tractographic output for surgically relevant tracts were compared between iDTI sequences as well as the intraoperative tract shifts from preoperative DTI.
RESULTS: RS-iDTI resulted in qualitatively less regional susceptibility artifact (resection cavity, orbitofrontal and anterior temporal cortices) and mean anatomical deviation in regions most prone to susceptibility artifact (RS-iDTI 2.7 ± 0.2 vs SS-iDTI 7.5 ± 0.4 mm) compared to SS-iDTI. Although tract reconstruction success did not significantly differ by DTI method, susceptibility artifact-related tractography failure (of at least 1 surgically relevant tract) occurred for SS-iDTI in 8/22 (36%) patients, and in 5 of these 8 patients RS-iDTI permitted successful reconstruction. Among cases with successful tractography for both sequences, maximal intersequence differences were substantial (mean 9.5 ± 5.7 mm, range -27.1 to 18.7 mm).
CONCLUSIONS: RS EPI enables higher quality and more accurate DTI for surgically relevant tractography of major white matter tracts in intraoperative, open cranium neurosurgical applications at 3 T.

Entities:  

Keywords:  CSpT = corticospinal tract; DEC = directionally encoded color; DTI = diffusion-tensor imaging; EPI = echo-planar imaging; HGG = high-grade glioma; LGG = low-grade glioma; ROI = region of interest; RS = readout segmented; SNR = signal-to-noise ratio; SS = single-shot; SS-DTI = SS echo-planar imaging DTI; TTD = target-to-tract distance; brain shift; glioma; iDTI = intraoperative DTI; iMRI = intraoperative MRI; intraoperative MRI; surgical technique; target-to-tract distance; tractography; ΔTTD = intraoperative change in TTD

Year:  2019        PMID: 31419798     DOI: 10.3171/2019.5.JNS19890

Source DB:  PubMed          Journal:  J Neurosurg        ISSN: 0022-3085            Impact factor:   5.115


  2 in total

1.  Diffusion-weighted MR is useful to assess peripheral nerve invasion of soft tissue tumor.

Authors:  Gang Wu; Liangjin Liu; Zou Mei; Xiaoming Li
Journal:  Medicine (Baltimore)       Date:  2022-07-01       Impact factor: 1.817

2.  Classification Algorithms for Brain Magnetic Resonance Imaging Images of Patients with End-Stage Renal Disease and Depression.

Authors:  Yan Cheng; Tengwei Liao; Nailong Jia
Journal:  Contrast Media Mol Imaging       Date:  2022-07-06       Impact factor: 3.009

  2 in total

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