Ludwig R, Bodgdanov G, King J, Allard A, Ferris C F
Center for Comparative Neuroimaging, Bioengineering Institute and Department of Electrical and Computer Engineering, Worcester Polytechnic Institute, Worcester, MA 01609, USA.
J Neurosci Methods. 2004 Jan 30;132(2):125-35. doi: 10.1016/j.jneumeth.2003.08.017.
A new apparatus has been developed that integrates an animal restrainer arrangement for small animals with an actively tunable/detunable dual radio-frequency (RF) coil system for in vivo anatomical and functional magnetic resonance imaging of small animals at 4.7 T. The radio-frequency coil features an eight-element microstrip line configuration that, in conjunction with a segmented outer copper shield, forms a transversal electromagnetic (TEM) resonator structure. Matching and active tuning/detuning is achieved through fixed/variable capacitors and a PIN diode for each resonator element. These components along with radio-frequency chokes (RFCs) and blocking capacitors are placed on two printed circuit boards (PCBs) whose copper coated ground planes form the front and back of the volume coil and are therefore an integral part of the resonator structure. The magnetic resonance signal response is received with a dome-shaped single-loop surface coil that can be height-adjustable with respect to the animal's head. The conscious animal is immobilized through a mechanical arrangement that consists of a Plexiglas body tube and a head restrainer. This restrainer has a cylindrical holder with a mouthpiece and position screws to receive and restrain the head of the animal. The apparatus is intended to perform anatomical and functional magnetic resonance imaging in conscious animals such as mice, rats, hamsters, and marmosets. Cranial images acquired from fully conscious rats in a 4.7 T Bruker 40 cm bore animal scanner underscore the feasibility of this approach and bode well to extend this system to the imaging of other animals.
一种新装置已被开发出来,它将用于小动物的动物约束装置与一个可主动调谐/失谐的双射频(RF)线圈系统集成在一起,用于在4.7 T磁场下对小动物进行体内解剖和功能磁共振成像。该射频线圈具有八元件微带线配置,与分段外铜屏蔽一起形成横向电磁(TEM)谐振器结构。通过为每个谐振器元件配备固定/可变电容器和PIN二极管来实现匹配以及主动调谐/失谐。这些组件连同射频扼流圈(RFC)和隔直电容器被放置在两块印刷电路板(PCB)上,其镀铜接地平面构成了容积线圈的前后部分,因此是谐振器结构的一个组成部分。磁共振信号响应由一个圆顶形单环表面线圈接收,该线圈可相对于动物头部进行高度调节。清醒的动物通过一种机械装置固定,该装置由一个有机玻璃身体管和一个头部约束器组成。这个约束器有一个带咬嘴的圆柱形支架和定位螺丝,用于容纳和约束动物的头部。该装置旨在对清醒的动物如小鼠、大鼠、仓鼠和狨猴进行解剖和功能磁共振成像。在一台4.7 T布鲁克40 cm孔径动物扫描仪中从完全清醒的大鼠获取的头部图像强调了这种方法的可行性,并预示着将该系统扩展到其他动物成像方面前景良好。