首页> 外文OA文献 >NONINVASIVE IMAGING OF BRAIN VASCULATURE WITH HIGH RESOLUTION BLOOD OXYGENATION LEVEL-DEPENDENT VENOGRAPHY IN MAGNETIC RESONANCE IMAGING: APPLICATIONS TO FUNCTIONAL AND CLINICAL STUDIES
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NONINVASIVE IMAGING OF BRAIN VASCULATURE WITH HIGH RESOLUTION BLOOD OXYGENATION LEVEL-DEPENDENT VENOGRAPHY IN MAGNETIC RESONANCE IMAGING: APPLICATIONS TO FUNCTIONAL AND CLINICAL STUDIES

机译:磁共振成像中高分辨血氧依赖性静脉造影对脑血管的无创成像:在功能和临床研究中的应用

摘要

BOLD techniques have been used in a vast range of applications including functional MRI (fMRI) and clinical MR venography of brain vasculature. Despite the immense success of BOLD fMRI applications, our understanding of complex neuronal and hemodynamic processes associated with BOLD techniques is limited. An experimental investigation with BOLD MR venography may allow us to expand our knowledge in hemodynamic process involved in BOLD fMRI. BOLD techniques are also clinically useful. In clinical brain imaging studies, imaging both time-of-flight (TOF) MR angiogram (MRA) and BOLD MR venogram (MRV) is often desirable, because they complement the depiction of vascular pathologies. Nevertheless, MRV is usually not acquired to minimize the image acquisition time. It will be highly beneficial if we can acquire MRV while imaging MRA without increasing scan time. Thus, the objective of our study was to develop and assess BOLD MRV techniques for both functional and clinical applications. For the experimental evaluation of BOLD MRV, we used a rat brain model at 9.4T. The scan condition for BOLD MRV was optimized and the venous origin of hypointense vasculature was investigated with modulation of oxygenation. Detailed venules of ˜16-30μm diameter were detected in the resulting in vivo images with 78μm isotropic scan resolution, verified with in vivo two-photon microscopy and computer simulation data. Activation foci of high-resolution BOLD fMRI maps were correlated with relatively large intracortical veins detected with high-resolution BOLD MRV, indicating that detectability of conventional BOLD fMRI is limited by density of these intracortical veins (˜1.5 vessels/mm²). For the clinical application of BOLD MRV, we developed and tested a compatible dual-echo arteriovenography (CODEA) technique for simultaneous acquisition of TOF MRA and BOLD MRV at a 3T human system. Image quality of the CODEA technique acquired in a single session was comparable to conventional TOF MRA and BOLD MRV separately acquired in two sessions. The CODEA technique was applied to chronic stroke studies. Detailed vascular structures including arterial occlusions and venous abnormalities were depicted. The CODEA technique appears valuable to other clinical applications, particularly for those requiring efficient MRA/MRV imaging with limited scan time such as acute stroke studies.
机译:BOLD技术已在广泛的应用中使用,包括功能性MRI(fMRI)和脑血管的临床MR静脉造影。尽管BOLD fMRI应用取得了巨大成功,但我们对与BOLD技术相关的复杂神经元和血液动力学过程的了解仍然有限。用BOLD MR静脉造影进行的实验研究可能使我们能够扩展有关BOLD fMRI的血液动力学过程的知识。 BOLD技术在临床上也有用。在临床脑成像研究中,通常需要对飞行时间(TOF)MR血管造影(MRA)和BOLD MR静脉造影(MRV)进行成像,因为它们可以补充血管病变的描述。但是,通常不会采集MRV以最小化图像采集时间。如果在不增加扫描时间的情况下在对MRA成像的同时获取MRV,这将是非常有益的。因此,我们研究的目的是针对功能和临床应用开发和评估BOLD MRV技术。对于BOLD MRV的实验评估,我们使用了9.4T的大鼠脑模型。优化了BOLD MRV的扫描条件,并通过调节氧合作用来研究了低位脉管系统的静脉起源。在具有78μm各向同性扫描分辨率的所得体内图像中检测到了直径约16-30μm的细小静脉,并通过体内双光子显微镜和计算机模拟数据进行了验证。高分辨率BOLD fMRI图的激活灶与高分辨率BOLD MRV检测到的相对较大的皮层内静脉相关,这表明常规BOLD fMRI的可检测性受到这些皮层内静脉的密度(〜1.5血管/mm²)的限制。对于BOLD MRV的临床应用,我们开发并测试了兼容的双回波动静脉造影(CODEA)技术,用于在3T人体系统上同时采集TOF MRA和BOLD MRV。在一次会议中获得的CODEA技术的图像质量与在两次会议中分别获得的常规TOF MRA和BOLD MRV相当。 CODEA技术已应用于慢性卒中研究。描绘了详细的血管结构,包括动脉闭塞和静脉异常。 CODEA技术对于其他临床应用似乎很有价值,特别是对于那些需要在有限的扫描时间内进行有效MRA / MRV成像的应用,例如急性卒中研究。

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    Park Sung-Hong;

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  • 年度 2009
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  • 正文语种 en
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