Affiliation:
1. Chang Gung University
2. Keelung Chang Gung Memorial Hospital
3. Taoyuan Chang Gung Memorial Hospital
4. Linkou Chang Gung Memorial Hospital
Abstract
Abstract
Purpose
Language networks are reorganized during glioma growth, leading to varying language performance in patients with gliomas located in language-eloquent areas. Therefore, pre-treated language performance reflects the neuroplasticity potential. Different domains of language processing, such as speech expression, repetition, and comprehension, involving different neural networks. We analyzed the effects of patient factors and tumor characteristics on the pre-treated performance to investigate neuroplastic potential of different language domains.
Methods
Patient age, sex, education level, tumor grade, language pathway involvement, T1 contrast enhanced (C+), and FLAIR (T2) volume were selected as variables. The correlation with abnormal language performance was verified using univariate and multivariate logistic regression.
Results
In total, 104 patients were enrolled in this study. 44% of patients had repetitive abnormalities, 34.9% had comprehension abnormalities, and 32.1% had expression abnormalities. The proportion of language pathway involvement and normal language performance was 60% in grade 2 and 3 gliomas and 16% in grade 4 gliomas. Tumor grade (p = 0.006) and T2 volume (p = 0.008) were associated with abnormal performance in the expressive domain, education level (p = 0.004) and T1 C + volume (p = 0.049) in the repetitive domain, and education level (p = 0.013), T2 volume (p = 0.011), and tumor grade (p = 0.089) in the comprehensive domain.
Conclusion
Different clinical and radiological factors affected the abnormal performance of the three language domains, indicating their functional connectivity and neuroplastic potential are inherently varied. The dynamic interactions between patient factors, tumor characteristics, and language processing should be considered when resecting left hemispheric gliomas.
Publisher
Research Square Platform LLC