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首页> 外文期刊>NeuroImage: Clinical >Comparison of randomized multifocal mapping and temporal phase mapping of visual cortex for clinical use
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Comparison of randomized multifocal mapping and temporal phase mapping of visual cortex for clinical use

机译:临床使用的视觉皮层随机多焦点映射和时相映射的比较

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摘要

fMRI is becoming an important clinical tool for planning and guidance of surgery to treat brain tumors, arteriovenous malformations, and epileptic foci. For visual cortex mapping, the most popular paradigm by far is temporal phase mapping, although random multifocal stimulation paradigms have drawn increased attention due to their ability to identify complex response fields and their random properties. In this study we directly compared temporal phase and multifocal vision mapping paradigms with respect to clinically relevant factors including: time efficiency, mapping completeness, and the effects of noise. Randomized, multifocal mapping accurately decomposed the response of single voxels to multiple stimulus locations and made correct retinotopic assignments as noise levels increased despite decreasing sensitivity. Also, multifocal mapping became less efficient as the number of stimulus segments (locations) increased from 13 to 25 to 49 and when duty cycle was increased from 25% to 50%. Phase mapping, on the other hand, activated more extrastriate visual areas, was more time efficient in achieving statistically significant responses, and had better sensitivity as noise increased, though with an increase in systematic retinotopic mis-assignments. Overall, temporal phase mapping is likely to be a better choice for routine clinical applications though random multifocal mapping may offer some unique advantages for selected applications. Highlights ? Phase mapping activates more extrastriate visual areas and is more efficient per run. ? Random mapping can decompose the response of single voxels to multiple locations. ? Efficiency of random mapping depends on number of stimulus regions and duty cycle. ? Noise affects random- and phase-mapping differently.
机译:功能磁共振成像正成为计划和指导手术治疗脑部肿瘤,动静脉畸形和癫痫灶的重要临床工具。对于视觉皮层映射,到目前为止,最受欢迎的范例是时间相位映射,尽管随机多焦点刺激范例由于能够识别复杂的响应场及其随机属性而引起了越来越多的关注。在这项研究中,我们直接将时相和多焦点视觉映射范例与临床相关因素进行比较,这些因素包括:时间效率,映射完整性和噪声影响。随机,多焦点映射可准确地分解单个体素对多个刺激位置的响应,并在噪声水平提高(尽管灵敏度降低)的情况下进行正确的视网膜局部分配。同样,随着刺激段(位置)的数量从13个增加到25个到49个以及占空比从25%增加到50%,多焦点映射的效率降低。另一方面,虽然系统性视网膜视错配增加,但相位映射激活了更多的外在视觉区域,在获得统计学上显着的响应方面更省时,并且随着噪声的增加具有更好的灵敏度。总体而言,时间相图可能是常规临床应用的更好选择,尽管随机多焦点图可能为选定的应用提供一些独特的优势。强调 ?相图激活了更多的外在视觉区域,并且每次运行的效率更高。 ?随机映射可以分解单个体素对多个位置的响应。 ?随机映射的效率取决于刺激区域的数量和占空比。 ?噪声对随机映射和相位映射的影响不同。

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