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Z-segmented MRI RF coil with gap and RF screen, and method for applying an RF field to an examination space of an MRI system including the MRI RF coil

机译:具有间隙和RF屏幕的Z分割的MRI RF线圈以及向包括MRI RF线圈的MRI系统的检查空间施加RF场的方法

摘要

The present invention provides a radio frequency (RF) coil (140) for applying an RF field to an examination space (116) of a magnetic resonance (MR) imaging system (110) and/or for receiving MR signals from the examination space (116), whereby the RF coil (140) is provided having a tubular body (142), the RF coil (140) is segmented in a longitudinal direction (154) of the tubular body (142) into two coil segments (146), and the two coil segments (146) are spaced apart from each other in the longitudinal direction (144) of the tubular body (142), whereby a gap (148) is formed between the two coil segments (146). The present invention further provides a magnetic resonance (MR) imaging system (110) comprising at least one radio frequency (RF) coil (140) as specified above. The present invention still further provides a medical system (200) comprising the above magnetic resonance (MR) imaging system (110) and a medical device (202), which is arranged to access to the examination space (116) of the magnetic resonance (MR) imaging system (110) through the gap (148) of the RF coil (140). Even further, the present invention provides a method for applying a radio frequency (RF) field to an examination space (116) of a magnetic resonance (MR) imaging system (110), comprising the steps of providing at least one above radio frequency antenna device (140), and commonly controlling the two RF coil segments (146) to provide a homogenous B1 field within the examination space (116), in particular within the gap (148).
机译:本发明提供了一种射频(RF)线圈(140),用于将RF场施加到磁共振(MR)成像系统(110)的检查空间(116)和/或用于从检查空间接收MR信号(RF)。 116),从而提供具有管状主体(142)的RF线圈(140),RF线圈(140)在管状主体(142)的纵向(154)上分成两个线圈段(146),并且,两个线圈片(146)在筒状体(142)的长度方向(144)上相互隔开间隔,在两个线圈片(146)之间形成有间隙(148)。本发明进一步提供了一种磁共振(MR)成像系统(110),其包括至少一个如上所述的射频(RF)线圈(140)。本发明还进一步提供了一种医疗系统(200),其包括上述磁共振(MR)成像系统(110)和医疗设备(202),该医疗设备被布置为进入磁共振(M)的检查空间(116)。 MR)成像系统(110)穿过RF线圈(140)的间隙(148)。更进一步,本发明提供了一种用于将射频(RF)场施加到磁共振(MR)成像系统(110)的检查空间(116)的方法,该方法包括以下步骤:提供至少一个以上的射频天线。装置(140),并且通常控制两个RF线圈段(146)以在检查空间(116)内,特别是在间隙(148)内提供均匀的B1场。

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