Shahdloo Mo, Khalighinejad Nima, Priestley Luke, Rushworth Matthew, Chiew Mark
Department of Experimental Psychology, Wellcome Centre for Integrative Neuroimaging, University of Oxford, Oxford, United Kingdom.
Nuffield Department of Clinical Neurosciences, Wellcome Centre for Integrative Neuroimaging, University of Oxford, Oxford, United Kingdom.
Front Neuroimaging. 2024 Jun 25;3:1336887. doi: 10.3389/fnimg.2024.1336887. eCollection 2024.
Use of functional MRI in awake non-human primate (NHPs) has recently increased. Scanning animals while awake makes data collection possible in the absence of anesthetic modulation and with an extended range of possible experimental designs. Robust awake NHP imaging however is challenging due to the strong artifacts caused by time-varying off-resonance changes introduced by the animal's body motion. In this study, we sought to thoroughly investigate the effect of a newly proposed dynamic off-resonance correction method on brain activation estimates using extended awake NHP data.
We correct for dynamic B0 changes in reconstruction of highly accelerated simultaneous multi-slice EPI acquisitions by estimating and correcting for dynamic field perturbations. Functional MRI data were collected in four male rhesus monkeys performing a decision-making task in the scanner, and analyses of improvements in sensitivity and reliability were performed compared to conventional image reconstruction.
Applying the correction resulted in reduced bias and improved temporal stability in the reconstructed time-series data. We found increased sensitivity to functional activation at the individual and group levels, as well as improved reliability of statistical parameter estimates.
Our results show significant improvements in image fidelity using our proposed correction strategy, as well as greatly enhanced and more reliable activation estimates in GLM analyses.
功能磁共振成像(fMRI)在清醒的非人灵长类动物(NHPs)中的应用近来有所增加。在动物清醒时进行扫描使得在没有麻醉调制的情况下以及在更广泛的可能实验设计下进行数据收集成为可能。然而,由于动物身体运动引入的随时间变化的失谐变化所导致的强烈伪影,稳健的清醒NHPs成像具有挑战性。在本研究中,我们试图使用扩展的清醒NHPs数据,全面研究一种新提出的动态失谐校正方法对脑激活估计的影响。
我们通过估计和校正动态场扰动,在高度加速的同时多层回波平面成像(EPI)采集的重建中校正动态B0变化。在四只因在扫描仪中执行决策任务的雄性恒河猴中收集功能磁共振成像数据,并与传统图像重建相比,进行灵敏度和可靠性改善的分析。
应用该校正导致重建的时间序列数据中的偏差减小且时间稳定性提高。我们发现在个体和组水平上对功能激活的灵敏度增加,以及统计参数估计的可靠性提高。
我们的结果表明,使用我们提出的校正策略,图像保真度有显著改善,并且在广义线性模型(GLM)分析中激活估计大大增强且更可靠。