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JP2010029313A - Nuclear magnetic resonance image diagnostic system - Google Patents

Nuclear magnetic resonance image diagnostic system Download PDF

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JP2010029313A
JP2010029313A JP2008192795A JP2008192795A JP2010029313A JP 2010029313 A JP2010029313 A JP 2010029313A JP 2008192795 A JP2008192795 A JP 2008192795A JP 2008192795 A JP2008192795 A JP 2008192795A JP 2010029313 A JP2010029313 A JP 2010029313A
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head
marker
position specifying
head position
coil
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JP5572294B2 (en
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Tomoyuki Haishi
智之 拝師
Toshiki Oguro
俊樹 大黒
Wataru Kikuchi
亙 菊地
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MR TECHNOLOGY KK
Yoshida Dental Mfg Co Ltd
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Yoshida Dental Mfg Co Ltd
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a highly functional nuclear magnetic resonance image diagnostic system. <P>SOLUTION: The nuclear magnetic resonance image diagnostic system includes magnetic circuits, a bed, a head stereotactic fixture for fixing the head of a subject, a hemispherical transmission/receiving coil to be put on the head of the subject, and a head position specifying marker. The head position specifying marker includes an MRI marker including a substance which can be detected by a nuclear magnetic resonance image diagnostic apparatus, a resonance circuit composed of concentric coils around the MRI marker and a capacitor. The head position marker is attached to the head stereotactic fixture. <P>COPYRIGHT: (C)2010,JPO&INPIT

Description

本発明は、核磁気共鳴画像診断システムに関する。   The present invention relates to a nuclear magnetic resonance imaging system.

核磁気共鳴画像(MRI)診断装置は、静磁場中に置かれた被検体に対し高周波パルスを照射することで、被検体中の原子核の核スピンを励起し、核磁気共鳴信号を発生させる。このとき、傾斜磁場を所定のシーケンスで印加することにより、核磁気共鳴信号に位置的な情報を与え、この核磁気共鳴信号を画像に再構成することにより、被検体内の断層像を得ることができる。   A nuclear magnetic resonance imaging (MRI) diagnostic apparatus irradiates a subject placed in a static magnetic field with a high-frequency pulse, thereby exciting nuclear spins of nuclei in the subject and generating a nuclear magnetic resonance signal. At this time, positional information is given to the nuclear magnetic resonance signal by applying a gradient magnetic field in a predetermined sequence, and a tomographic image in the subject is obtained by reconstructing the nuclear magnetic resonance signal into an image. Can do.

近年、静磁場を発生するための磁石(超電導磁石、永久磁石等)を上下に配置したオープン型のMRI診断装置を手術室内に置き、MRI診断を行いながら手術や治療等を行うという、術中MRI診断が行われている。   In recent years, an open MRI diagnostic device in which magnets (superconducting magnets, permanent magnets, etc.) for generating a static magnetic field are arranged vertically is placed in the operating room, and surgery and treatment are performed while performing MRI diagnosis. A diagnosis has been made.

例えば、頭部の手術においては、頭部定位固定具によって頭部を固定し、内視鏡や顕微鏡を使用して腫瘍の摘出手術等を行いながら、手術の進行を確認するために、MRI診断が適宜行われる。この時、頭部定位固定具を受信コイルの一部としても兼ねる装置が開発されている(例えば、特許文献1参照)。
特開2004−97431特許公報
For example, in head surgery, an MRI diagnosis is performed to confirm the progress of surgery while fixing the head with a head stereotaxic instrument and performing an operation such as removing a tumor using an endoscope or a microscope. Is appropriately performed. At this time, a device has been developed that also serves as a head localization fixture as a part of the receiving coil (see, for example, Patent Document 1).
JP 2004-97431 A Patent Publication

しかし、脳のさらに深部を高解像度で解析するためのオープン型MRI装置とその使用方法を開発することが期待されている。
そこで、本発明においては、新規構成を有する、より高機能な核磁気共鳴画像診断システムを提供することを課題とする。
However, it is expected to develop an open-type MRI apparatus for analyzing the deeper part of the brain with high resolution and its usage.
Therefore, an object of the present invention is to provide a more functional nuclear magnetic resonance diagnostic imaging system having a new configuration.

本発明の発明者は、オープン型MRI診断装置を用いて脳のさらに深部を高解像度で解析するために、人の頭部に被せるための半球状(ヘルメット型)の送受信用コイルを開発した。この場合、コイルの形成する半球の直径が小さいほど、核磁気共鳴画像の感度や解像度を高めることができる。   The inventor of the present invention has developed a hemispherical (helmet type) transmission / reception coil for covering a human head in order to analyze the deeper part of the brain with high resolution using an open MRI diagnostic apparatus. In this case, the sensitivity and resolution of the nuclear magnetic resonance image can be increased as the diameter of the hemisphere formed by the coil is smaller.

一方、MRI診断の際、MRI診断装置にて画像診断を実施する被検体の撮影領域において、被検体の頭部の位置を特定する必要がある。そのため、MRI装置にて検知されるMRIマーカーを設け、頭部の位置特定のための指標としている。   On the other hand, at the time of MRI diagnosis, it is necessary to specify the position of the head of the subject in the imaging region of the subject for which image diagnosis is performed by the MRI diagnostic apparatus. Therefore, an MRI marker detected by the MRI apparatus is provided as an index for specifying the head position.

このMRIマーカーは、送受信コイルを用いる場合、コイルの外側に生じる磁場が極めて弱く、コイルの内側に置かれる必要があるため、被検体の頭部の複数個所に貼り付けて使用していた。しかし、核磁気共鳴画像の感度や解像度を高めるためにコイルの半径を小さくすると、コイルと頭部の間にMRIマーカーを貼り付ける隙間が無くなる。そこで、本発明者は、このような場合に有用な、コイルの外側で用いながら、安定した位置情報を提供できる頭部位置特定用マーカーを開発した。   This MRI marker is used by being affixed to a plurality of locations on the head of the subject because the magnetic field generated outside the coil is extremely weak and needs to be placed inside the coil when using a transmission / reception coil. However, if the radius of the coil is reduced in order to increase the sensitivity and resolution of the nuclear magnetic resonance image, there is no gap for attaching the MRI marker between the coil and the head. Therefore, the present inventor has developed a head position specifying marker that is useful in such a case and can provide stable position information while being used outside the coil.

すなわち、本発明の一実施態様は、核磁気共鳴画像診断システムにおいて、被検体の頭部の位置を特定するための頭部位置特定用マーカーであって、核磁気共鳴画像診断装置で検知可能な物質を含んだMRIマーカーと、当該MRIマーカーを中心にした同心円状のコイルとコンデンサから成る共振回路と、を有することを特徴とする頭部位置特定用マーカーである。前記共振回路は、感度調整機構を有していることが望ましい。前記感度調整機構は、前記コイルの角度を調整することによって、または、前記共振回路のコンデンサ容量調整または前記コイルのインダクタンス調整により前記共振回路の共振周波数を調整することによって、感度を調整してもよい。   That is, one embodiment of the present invention is a head position specifying marker for specifying the position of the head of a subject in a nuclear magnetic resonance imaging system, which can be detected by a nuclear magnetic resonance imaging apparatus. A head position specifying marker comprising: an MRI marker including a substance; and a resonance circuit including a concentric coil and a capacitor centering on the MRI marker. The resonance circuit preferably has a sensitivity adjustment mechanism. The sensitivity adjustment mechanism may adjust the sensitivity by adjusting the angle of the coil or by adjusting the resonance frequency of the resonance circuit by adjusting the capacitance of the resonance circuit or adjusting the inductance of the coil. Good.

本発明のさらなる一実施態様は、核磁気共鳴画像診断システムであって、磁気回路、ベッド、当該ベッド上の被検体の頭部を固定するための頭部定位固定具、当該被検体の頭部に被せるための半球状の送受信用コイル、上記いずれかの頭部位置特定用マーカー、を有するシステムである。ここで、前記頭部位置特定用マーカーが、前記頭部定位固定具に付着されていることが好ましい。また、前記頭部位置特定用マーカーを複数個備えていることが好ましい。   A further embodiment of the present invention is a nuclear magnetic resonance diagnostic imaging system comprising a magnetic circuit, a bed, a head localization fixture for fixing the head of the subject on the bed, and the head of the subject A hemispherical transmission / reception coil for covering the head, and any one of the head position specifying markers described above. Here, the head position specifying marker is preferably attached to the head positioning fixture. It is preferable that a plurality of the head position specifying markers are provided.

本発明のさらなる一実施態様は、磁気回路、ベッド、当該ベッド上の被検体の頭部を固定するための頭部定位固定具、当該被検体の頭部に被せるための半球状の送受信用コイル、上記いずれかの頭部位置特定用マーカー、を有する核磁気共鳴画像診断システムにおける当該頭部位置特定用マーカーの使用方法であって、前記頭部位置特定用マーカーを前記送受信用コイルの外側に位置させることを特徴とする使用方法である。ここで、前記頭部位置特定用マーカーを、前記頭部定位固定具に付着させることが好ましい。また、前記頭部位置特定用マーカーを複数個設けることが好ましい。   A further embodiment of the present invention includes a magnetic circuit, a bed, a head positioning fixture for fixing the head of the subject on the bed, and a hemispherical transmitting / receiving coil for covering the head of the subject. A method of using the head position specifying marker in a nuclear magnetic resonance imaging system having any one of the above head position specifying markers, wherein the head position specifying marker is placed outside the transmission / reception coil. It is the usage method characterized by making it position. Here, it is preferable that the head position specifying marker is attached to the head positioning fixture. Further, it is preferable to provide a plurality of the head position specifying markers.

本発明によって、より高機能な核磁気共鳴画像診断システムを提供することができるようになった。   According to the present invention, a more sophisticated nuclear magnetic resonance imaging system can be provided.

本発明の目的、特徴、利点、及びそのアイデアは、本明細書の記載により、当業者には明らかであり、本明細書の記載から、当業者であれば、容易に本発明を再現できる。以下に記載された発明の実施の形態は、本発明の好ましい実施態様を示すものであり、例示又は説明のために示されているのであって、本発明をそれらに限定するものではない。本明細書で開示されている本発明の意図並びに範囲内で、本明細書の記載に基づき、様々な改変並びに修飾ができることは、当業者にとって明らかである。   The objects, features, advantages, and ideas of the present invention will be apparent to those skilled in the art from the description of the present specification, and those skilled in the art can easily reproduce the present invention from the description of the present specification. The embodiments of the present invention described below show preferred embodiments of the present invention, and are shown for illustration or explanation, and the present invention is not limited thereto. It will be apparent to those skilled in the art that various modifications and variations can be made based on the description of the present specification within the spirit and scope of the present invention disclosed herein.

==核磁気共鳴画像診断システム==
図1に核磁気共鳴画像診断システム1の全体構成を示す。この核磁気共鳴画像診断システム1は、磁気回路2、ベッドを備えた手術台3、手術台上の被検体の頭部を固定するための頭部定位固定具4、被検体の頭部に被せるための半球状の送受信用コイル5、被検体の頭部の位置を特定するための頭部位置特定用マーカー6、を有する。
== Nuclear magnetic resonance imaging system ==
FIG. 1 shows the overall configuration of a nuclear magnetic resonance diagnostic imaging system 1. This nuclear magnetic resonance diagnostic imaging system 1 includes a magnetic circuit 2, an operating table 3 provided with a bed, a head positioning fixture 4 for fixing the head of the subject on the operating table, and a head of the subject. A hemispherical transmission / reception coil 5 and a head position specifying marker 6 for specifying the position of the head of the subject.

磁気回路2は、特に限定されないが、永久磁石を用いたオープン型であることが好ましい。手術台3その他の部品に関しては、特に限定されず、従来のMRI診断装置で用いられているものを使用できる。   The magnetic circuit 2 is not particularly limited, but is preferably an open type using a permanent magnet. The operating table 3 and other parts are not particularly limited, and those used in conventional MRI diagnostic apparatuses can be used.

図2に頭部定位固定具4の模式図を示す。頭部定位固定具4は、被検体を手術台3に寝載させた状態で、被検体頭部を固定する装置である。この頭部定位固定具4は、被検体頭部の形状に沿うような半円状のベース部7と、ベース部を円周方向の任意の角度で保持する保持部8と、保持部を被検体体軸方向に平行移動可能に保持すると共に手術台へ固定する固定部9で構成される。ベース部7には所定の間隔を置いて複数個のねじ穴が設けられており、ねじ穴には被検体頭部と接触して固定するボルト10を備える。手術の内容や被検体頭部の位置、向きに応じて保持部8、ベース部7の位置を調整し、またボルト10で固定する位置や個数を適宜調整する。   FIG. 2 shows a schematic diagram of the head localization fixture 4. The head localization fixture 4 is a device that fixes the subject's head while the subject is placed on the operating table 3. This head localization fixture 4 includes a semicircular base portion 7 that follows the shape of the subject's head, a holding portion 8 that holds the base portion at an arbitrary angle in the circumferential direction, and a holding portion that is covered. It is composed of a fixing portion 9 that is held so as to be movable in the specimen body axis direction and fixed to the operating table. The base portion 7 is provided with a plurality of screw holes at predetermined intervals, and the screw holes are provided with bolts 10 that are fixed in contact with the subject's head. The positions of the holding unit 8 and the base unit 7 are adjusted according to the contents of the operation, the position and orientation of the subject's head, and the positions and number of the bolts 10 to be fixed are appropriately adjusted.

図3に脱着時の送受信用コイル5の模式図を示す。送受信用コイル5は、RF電波を発信し、高周波信号を受信するアンテナの機能を有し、半球状の基板11と、その上に半球渦巻き状に形成された導線12を含んで構成される。送受信用コイル5には、導線12やコンデンサなどの電気回路の保護や頭部定位固定具4の構造に関係ない部分に通気孔があることが好ましく、例えば、頭頂部に、円形の通気孔を設けてもよい。この通気性により、送受信用コイル5から発生される高周波励起磁場による被検体温度の上昇、すなわちSARをできる限り低減し、なおかつ被検体の感じる圧迫感を低減することができる。基板11の材料は、ポリプロピレン樹脂やアクリル樹脂が例示されるが、特に限定されない。この送受信用コイル5を被検体の頭部20に被せた時、頭部定位固定具4を超えて、目や鼻が隠れるくらいに送受信用コイル5が深く被るように、ボルト10に対応した切り込み13を基板11に設ける。この切り込み13部分では、導線12は、切り込み13を逃げるように、切り込み13にそって走らせる。この際、基板11の末端(すなわち、半球の遊離端)近傍で、導線間隔を狭くしたり、導線を2重巻きにしたりすることにより、送受信用コイル5が送受信する高周波磁場均一領域を、送受信用コイル5内側から外側に広げることができる。なお、導線12の材料は、無酸素銅やタフピッチ銅からなる線材や平板が例示されるが、特に限定されない。   FIG. 3 is a schematic diagram of the transmission / reception coil 5 at the time of detachment. The transmission / reception coil 5 functions as an antenna that transmits RF radio waves and receives high-frequency signals, and includes a hemispherical substrate 11 and a conductive wire 12 formed in a hemispherical spiral shape thereon. The transmitting / receiving coil 5 preferably has a vent hole in a portion not related to the protection of the electric circuit such as the lead wire 12 or the capacitor or the structure of the head positioning fixture 4. For example, a circular vent hole is formed in the top of the head. It may be provided. Due to this air permeability, the increase in the temperature of the subject due to the high frequency excitation magnetic field generated from the transmitting / receiving coil 5, that is, the SAR can be reduced as much as possible, and the feeling of pressure felt by the subject can be reduced. Examples of the material of the substrate 11 include polypropylene resin and acrylic resin, but are not particularly limited. When this transmission / reception coil 5 is placed on the subject's head 20, a notch corresponding to the bolt 10 is provided so that the transmission / reception coil 5 covers the head localization fixture 4 so that the eyes and nose are hidden. 13 is provided on the substrate 11. In this notch 13 part, the conducting wire 12 runs along the notch 13 so as to escape the notch 13. At this time, in the vicinity of the end of the substrate 11 (that is, the free end of the hemisphere), the high-frequency magnetic field uniform region transmitted / received by the transmitting / receiving coil 5 is transmitted / received by narrowing the interval between the conductors or by doubling the conductors. The coil 5 can be spread from the inside to the outside. In addition, although the wire 12 and the flat plate which consist of oxygen-free copper and tough pitch copper are illustrated as a material of the conducting wire 12, it is not specifically limited.

図4に頭部位置特定用マーカー6の拡大図を示す。頭部位置特定用マーカー6は、MRI診断装置で検知可能な物質を含んだMRIマーカー14、そのMRIマーカー14を中心にした同心円状のコイル18とコンデンサ16、及び感度の調整を行うための感度調整機構であるヒンジ17やコイル拡張装置19を有する。MRI診断装置で検知可能な物質とは、例えば、塩化ニッケル水溶液、硫酸銅水溶液、ベビーオイルなどである。そして、それらの物質を注入したポリエチレン球や、肝油球等をMRIマーカー14とすることができる。なお、MRIマーカー14のNMR緩和時間は0.5秒以内に調整されていることが好ましい。同心円状のコイル18は、銅線などが直径5mm〜10mm程度の渦巻き状に形成され、コンデンサ16とともにLC共振回路を構成する。感度調整機構としては、例えば、図4Aのように、コイル18を内部に収容したコイル収容部15とコンデンサ16の成す角度を調整するために、コイル収容部15とコンデンサ16の間にコイル収容部15を傾けることができるヒンジ17を設けてもよい。また、図4Bのように、コイル18を平面状から立体的に広げるためのコイル拡張装置19を付加してもよい。   FIG. 4 shows an enlarged view of the head position specifying marker 6. The head position specifying marker 6 includes an MRI marker 14 containing a substance that can be detected by the MRI diagnostic apparatus, a concentric coil 18 and a capacitor 16 around the MRI marker 14, and sensitivity for adjusting sensitivity. It has a hinge 17 and a coil expansion device 19 which are adjustment mechanisms. Examples of the substance that can be detected by the MRI diagnostic apparatus include an aqueous nickel chloride solution, an aqueous copper sulfate solution, and baby oil. Then, polyethylene spheres, liver oil spheres, and the like injected with these substances can be used as the MRI marker 14. The NMR relaxation time of the MRI marker 14 is preferably adjusted within 0.5 seconds. The concentric coil 18 is formed in a spiral shape with a copper wire or the like having a diameter of about 5 mm to 10 mm, and constitutes an LC resonance circuit together with the capacitor 16. As the sensitivity adjustment mechanism, for example, as shown in FIG. 4A, in order to adjust the angle formed by the coil housing portion 15 that houses the coil 18 and the capacitor 16, the coil housing portion is interposed between the coil housing portion 15 and the capacitor 16. A hinge 17 that can tilt 15 may be provided. Moreover, you may add the coil expansion apparatus 19 for expanding the coil 18 three-dimensionally from planar shape like FIG. 4B.

==送受信コイルの使用方法==
上記のような送受信用コイル5は、頭部、すなわち脳のMRI診断を行うのに利用できる。特に、形状が半球型であるため、脳深部の解析を行うのに好適である。この形状により頭頂部も感度落ちがなく、コイル内の全域にわたって均一な磁場分布が得られるため、均一な画素強度の画像が取得できる。
== How to use the transmit / receive coil ==
The transmitting / receiving coil 5 as described above can be used for MRI diagnosis of the head, that is, the brain. In particular, since the shape is hemispherical, it is suitable for analyzing deep brain regions. With this shape, there is no loss of sensitivity at the top of the head, and a uniform magnetic field distribution can be obtained over the entire area of the coil, so that an image with uniform pixel intensity can be acquired.

また、この送受信用コイル5は、術中MRIにも好適に使用できる。なぜなら、基板11には、ボルト10に対応した切り込み13が存在するため、頭部を頭部定位固定具4に保持したまま、容易に送受信用コイル5を患者に装着/脱着することができるからである。   Further, the transmission / reception coil 5 can be suitably used for intraoperative MRI. This is because the board 11 has the notch 13 corresponding to the bolt 10, so that the transmitting / receiving coil 5 can be easily attached / detached to / from the patient while the head is held on the head stereotaxic fixture 4. It is.

==頭部位置特定用マーカーの使用方法==
上記のような構成を有する核磁気共鳴画像診断システム1を用い、被検体の脳のMRI診断を行うとき、頭部位置特定用マーカー6を、送受信用コイル5の外側に、配置する。従来は、MRIマーカー14を送受信用コイルの内部にある被検体の頭部の複数個所に貼り付けて使用していたが、このように本発明の頭部位置特定用マーカー6を用いることにより、MRIマーカー14を送受信用コイル5の外側に置くことができるようになった。
== How to use the head position specifying marker ==
When the MRI diagnosis of the subject's brain is performed using the nuclear magnetic resonance imaging system 1 having the above-described configuration, the head position specifying marker 6 is disposed outside the transmission / reception coil 5. Conventionally, the MRI marker 14 has been used by being affixed to a plurality of locations on the subject's head inside the transmission / reception coil. By using the head position specifying marker 6 of the present invention as described above, The MRI marker 14 can be placed outside the transmission / reception coil 5.

頭部位置特定用マーカー6を配置する際、コイル18の軸は、磁気回路2における磁石の静磁場方向(例えば、図1においては、天地方向)に直交し、送受信コイル5がその外側に発生する高周波磁場の方向に平行になるように調整すると最大感度が得られるが、被写体の撮像に適切に調整された送受信コイル5の励起磁場強度が、送受信コイル5外部に設置された頭部位置特定用マーカー6に照射された時、多くの場合、マーカーに取り付けられた共振回路によって、頭部位置特定用マーカー6付近の磁場は過剰な励起強度まで増幅される。従って、送受信コイル5の発生する磁場が、MRIマーカー14に適切に印加し、頭部位置特定用マーカー6から適切なMRI信号を得られるように、感度調整機構を用いて、実際に使用するごとに最適条件を見つけるのが好ましい。すなわち、頭部位置特定用マーカー6は、感度調整機構を有していれば、どの方向を向けて配置してもかまわないが、初期状態として、最大感度が得られるように、コイル18の軸が磁気回路2における磁石の静磁場方向に直交し、送受信コイル5がその外側に発生する高周波磁場の方向に平行になるように配置し、その後、感度調整機構によって感度を調節することが好ましい。   When the head position specifying marker 6 is arranged, the axis of the coil 18 is orthogonal to the direction of the static magnetic field of the magnet in the magnetic circuit 2 (for example, the vertical direction in FIG. 1), and the transmission / reception coil 5 is generated on the outside thereof. The maximum sensitivity can be obtained by adjusting so as to be parallel to the direction of the high-frequency magnetic field to be detected. When the marker 6 is irradiated, in many cases, the magnetic field in the vicinity of the head position specifying marker 6 is amplified to an excessive excitation intensity by a resonance circuit attached to the marker. Therefore, every time the magnetic field generated by the transmitting / receiving coil 5 is actually used by using the sensitivity adjustment mechanism so that an appropriate MRI signal can be obtained from the head position specifying marker 6 by appropriately applying the magnetic field to the MRI marker 14. It is preferable to find the optimum condition. In other words, the head position specifying marker 6 may be arranged in any direction as long as it has a sensitivity adjustment mechanism. However, as the initial state, the axis of the coil 18 can be obtained so that the maximum sensitivity can be obtained. Is arranged so that is perpendicular to the direction of the static magnetic field of the magnet in the magnetic circuit 2 and the transmission / reception coil 5 is parallel to the direction of the high-frequency magnetic field generated on the outside thereof, and then the sensitivity is adjusted by a sensitivity adjustment mechanism.

ここで、感度調整機構は、例えば、コイル18の角度を調整し、頭部位置特定用マーカー6のコイル18の軸を、磁気回路2における磁石の静磁場方向に平行に近づけることによって感度を調整してもよい。   Here, the sensitivity adjustment mechanism adjusts the sensitivity by, for example, adjusting the angle of the coil 18 and bringing the axis of the coil 18 of the head position specifying marker 6 closer to the direction of the static magnetic field of the magnet in the magnetic circuit 2. May be.

あるいは、前記感度調整機構は、共振回路のコンデンサ16の容量調整またはコイル18のインダクタンス調整により共振周波数を調整することによって感度を調整してもよい。例えば、コンデンサ16の容量を調整するため、コンデンサ16を可変型として、共振周波数を調整してもよい。また、コイル18のインダクタンスを調整するため、コイル18のピッチを機械的に変更して、共振周波数を調整してもよい。このように、頭部位置特定用マーカー6の共振周波数をMRI撮像で用いられているNMR周波数からずらすことにより、感度を調整することができる。   Alternatively, the sensitivity adjustment mechanism may adjust the sensitivity by adjusting the resonance frequency by adjusting the capacitance of the capacitor 16 of the resonance circuit or adjusting the inductance of the coil 18. For example, in order to adjust the capacitance of the capacitor 16, the resonance frequency may be adjusted by using the capacitor 16 as a variable type. Further, in order to adjust the inductance of the coil 18, the resonance frequency may be adjusted by mechanically changing the pitch of the coil 18. Thus, the sensitivity can be adjusted by shifting the resonance frequency of the head position specifying marker 6 from the NMR frequency used in MRI imaging.

頭部位置特定用マーカー6は、3次元的に位置を特定できるように、複数個、好ましくは3個以上を用いることが好ましい。付着場所は特に限定されないが、各々が直線を形成せず、お互いに面を形成するように配置することが好ましいので、例えば、頭部定位固定具4の同一面に付着させるのが好ましい。頭部定位固定具4において、付着場所は特に限定されないが、直線距離でお互いに距離を5cm離して配置することが好ましい。従って、例えば、半円状の両端に2個と、その中間近くに2個を設置するような配置が考えられる。なお、送受信用コイル5の内側にある他のMRIマーカーと組み合わせて用いてもかまわない。   It is preferable to use a plurality of head position specifying markers 6, preferably three or more so that the positions can be specified three-dimensionally. Although the attachment location is not particularly limited, it is preferable that they are arranged so as not to form a straight line but to form surfaces with each other. In the head stereotaxic fixture 4, the attachment location is not particularly limited, but it is preferable to dispose them at a linear distance of 5 cm from each other. Therefore, for example, an arrangement is possible in which two are installed at both ends of the semicircular shape and two are installed near the middle. In addition, you may use in combination with the other MRI marker inside the coil 5 for transmission / reception.

従来の送受信分離コイルの場合は、頭部位置特定用マーカー6のような共振回路を有するマーカーを使う必要が存在しないが、本発明のように、被検体の頭部20に被せるための半球状の送受信用コイル5を用いる核磁気共鳴画像診断システム1においては、MRIマーカー14を送受信用コイル5の内側に置くことが容易ではないため、頭部位置特定用マーカー6は特に有利に機能する。   In the case of the conventional transmission / reception separation coil, there is no need to use a marker having a resonance circuit such as the head position specifying marker 6, but as in the present invention, a hemisphere for covering the head 20 of the subject. In the nuclear magnetic resonance imaging system 1 using the transmission / reception coil 5, the MRI marker 14 is not easily placed inside the transmission / reception coil 5, so the head position specifying marker 6 functions particularly advantageously.

また、従来のMRIマーカーは、頭部と送受信用コイル5の間に隙間が無い場合、場合によっては、頭部に貼り付けるのではなく、頭部に穴を開け、侵襲的に定位させる場合もあった。しかし、本発明の頭部位置特定用マーカー6は、非侵襲的に用いられるという点で、有利な効果を生じる。   Further, in the case where there is no gap between the head and the transmitting / receiving coil 5, the conventional MRI marker may not be attached to the head but may be punctured by making a hole in the head. there were. However, the head position specifying marker 6 of the present invention produces an advantageous effect in that it is used noninvasively.

さらに、送受信用コイル5内部にある撮像部位は、手術などによって変形する可能性が高く、被写体に直接取り付けると、送受信用コイル5の超近傍では、送受信用コイル5から発生する送信磁場強度が極端に強く、マーカーがNMR信号を適切に発生できないことがある。従って、送受信用コイル5の外側のように撮像部位から離れた場所では、より良好なマーカー画像が取得できるという点でも、本発明の頭部位置特定マーカー6は有利な効果を生じる。   Further, the imaging region inside the transmission / reception coil 5 is highly likely to be deformed by surgery or the like, and when it is directly attached to the subject, the intensity of the transmission magnetic field generated from the transmission / reception coil 5 is extremely near the transmission / reception coil 5. The marker may not generate an NMR signal properly. Therefore, the head position specifying marker 6 of the present invention also has an advantageous effect in that a better marker image can be obtained at a place away from the imaging region, such as outside the transmission / reception coil 5.

本発明の一実施態様において、核磁気共鳴画像診断システムの全体構成を示す図である。1 is a diagram illustrating an overall configuration of a nuclear magnetic resonance imaging system in an embodiment of the present invention. 本発明の一実施態様において、送受信用コイル5を装着した場合の頭部上方から観察した模式図である。In one embodiment of this invention, it is the schematic diagram observed from the head upper part at the time of mounting | wearing with the coil 5 for transmission / reception. 本発明の一実施態様において、脱着時(A:脱時、B:着時)の送受信用コイル5を示す模式図である。In one embodiment of the present invention, it is a schematic diagram showing a transmission / reception coil 5 at the time of detachment (A: at the time of removal, B: at the time of attachment). 本発明の一実施態様において、頭部位置特定用マーカー6を示す模式図である。In one embodiment of the present invention, it is a schematic diagram showing a head position specifying marker 6.

符号の説明Explanation of symbols

1 核磁気共鳴画像診断システム
2 磁気回路
3 手術台
4 頭部定位固定具
5 送受信用コイル
6 頭部位置特定用マーカー
7 ベース部
8 保持部
9 固定部
10 ボルト
11 基板
12 導線
13 切り込み
14 MRIマーカー
15 コイル収容部
16 コンデンサ
17 ヒンジ
18 コイル
19 コイル拡張装置
20 被検体の頭部
DESCRIPTION OF SYMBOLS 1 Nuclear magnetic resonance imaging system 2 Magnetic circuit 3 Operating table 4 Head localization fixture 5 Transmitting / receiving coil 6 Head position specifying marker 7 Base portion 8 Holding portion 9 Fixing portion 10 Bolt 11 Substrate 12 Lead wire 13 Notch 14 MRI marker DESCRIPTION OF SYMBOLS 15 Coil accommodating part 16 Capacitor 17 Hinge 18 Coil 19 Coil expansion apparatus 20 Head of subject

Claims (9)

核磁気共鳴画像診断システムにおいて、被検体の頭部の位置を特定するための頭部位置特定用マーカーであって、
核磁気共鳴画像診断装置で検知可能な物質を含んだMRIマーカーと、
当該MRIマーカーを中心にした同心円状のコイルとコンデンサから成
る共振回路と、
を有することを特徴とする頭部位置特定用マーカー。
In a nuclear magnetic resonance imaging system, a head position specifying marker for specifying the position of the head of a subject,
An MRI marker containing a substance that can be detected by a nuclear magnetic resonance imaging apparatus;
A resonant circuit composed of concentric coils and capacitors centered on the MRI marker;
A head position specifying marker characterized by comprising:
前記共振回路が感度調整機構を有することを特徴とする請求項1に記載の頭部位置特定用マーカー。   The head position specifying marker according to claim 1, wherein the resonance circuit has a sensitivity adjustment mechanism. 前記感度調整機構は、前記コイルの角度を調整することによって、または、前記共振回路のコンデンサ容量調整または前記コイルのインダクタンス調整により前記共振回路の共振周波数を調整することによって、感度を調整することを特徴とする請求項2に記載の頭部位置特定用マーカー。   The sensitivity adjustment mechanism adjusts the sensitivity by adjusting an angle of the coil, or by adjusting a resonance frequency of the resonance circuit by adjusting a capacitor capacity of the resonance circuit or adjusting an inductance of the coil. The head position specifying marker according to claim 2, wherein 核磁気共鳴画像診断システムであって、
磁気回路、
ベッド、
当該ベッド上の被検体の頭部を固定するための頭部定位固定具、
当該被検体の頭部に被せるための半球状の送受信用コイル、
請求項1〜3のいずれか1項に記載の頭部位置特定用マーカー、
を有するシステム。
A nuclear magnetic resonance imaging system comprising:
Magnetic circuit,
bed,
A head positioning fixture for fixing the subject's head on the bed;
A hemispherical transmitting / receiving coil for covering the head of the subject;
The head position specifying marker according to any one of claims 1 to 3,
Having a system.
前記頭部位置特定用マーカーが、前記頭部定位固定具に付着されていることを特徴とする請求項4のシステム。   The system according to claim 4, wherein the head position specifying marker is attached to the head positioning fixture. 前記頭部位置特定用マーカーを複数個備えることを特徴とする請求項4または5に記載のシステム。   The system according to claim 4 or 5, comprising a plurality of the head position specifying markers. 請求項4に記載の核磁気共鳴画像診断システムにおいて、前記頭部位置特定用マーカーの使用方法であって、
前記頭部位置特定用マーカーを前記送受信用コイルの外側に配置することを特徴とする使用方法。
The nuclear magnetic resonance imaging system according to claim 4, wherein the head position specifying marker is used,
A method of use, wherein the head position specifying marker is arranged outside the transmitting / receiving coil.
前記頭部位置特定用マーカーを、前記頭部定位固定具に付着させることを特徴とする請求項7に記載の使用方法。   The method according to claim 7, wherein the head position specifying marker is attached to the head localization fixture. 前記頭部位置特定用マーカーを複数個設けることを特徴とする請求項7または8に記載の使用方法。   9. The method according to claim 7, wherein a plurality of head position specifying markers are provided.
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