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An MRI-based estimation of gamma-ray attenuation coefficients with a motionless radiation source for quantitative PET/MRI on human brain

https://repo.qst.go.jp/records/65000
https://repo.qst.go.jp/records/65000
83a31a53-30c0-401e-8f74-d6c824ca8103
Item type 会議発表用資料 / Presentation(1)
公開日 2013-05-17
タイトル
タイトル An MRI-based estimation of gamma-ray attenuation coefficients with a motionless radiation source for quantitative PET/MRI on human brain
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_c94f
資源タイプ conference object
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Kawaguchi, Hiroshi

× Kawaguchi, Hiroshi

WEKO 640474

Kawaguchi, Hiroshi

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Hirano, Yoshiyuki

× Hirano, Yoshiyuki

WEKO 640475

Hirano, Yoshiyuki

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Yoshida, Eiji

× Yoshida, Eiji

WEKO 640476

Yoshida, Eiji

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Tanigawa, Asuka

× Tanigawa, Asuka

WEKO 640477

Tanigawa, Asuka

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Suga, Mikio

× Suga, Mikio

WEKO 640478

Suga, Mikio

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Shiraishi, Takahiro

× Shiraishi, Takahiro

WEKO 640479

Shiraishi, Takahiro

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Tanimoto, Katsuyuki

× Tanimoto, Katsuyuki

WEKO 640480

Tanimoto, Katsuyuki

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Kimura, Yasuyuki

× Kimura, Yasuyuki

WEKO 640481

Kimura, Yasuyuki

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Obata, Takayuki

× Obata, Takayuki

WEKO 640482

Obata, Takayuki

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Ito, Hiroshi

× Ito, Hiroshi

WEKO 640483

Ito, Hiroshi

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川口 拓之

× 川口 拓之

WEKO 640484

en 川口 拓之

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平野 祥之

× 平野 祥之

WEKO 640485

en 平野 祥之

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吉田 英治

× 吉田 英治

WEKO 640486

en 吉田 英治

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谷川 明日香

× 谷川 明日香

WEKO 640487

en 谷川 明日香

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菅 幹生

× 菅 幹生

WEKO 640488

en 菅 幹生

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白石 貴博

× 白石 貴博

WEKO 640489

en 白石 貴博

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谷本 克之

× 谷本 克之

WEKO 640490

en 谷本 克之

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木村 泰之

× 木村 泰之

WEKO 640491

en 木村 泰之

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小畠 隆行

× 小畠 隆行

WEKO 640492

en 小畠 隆行

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伊藤 浩

× 伊藤 浩

WEKO 640493

en 伊藤 浩

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抄録
内容記述タイプ Abstract
内容記述 The ability to make quantitative measurements of radioactivity is extremely essential for human brain PET. Recently, several MRI-based attenuation correction methods that estimate the spatial distribution of the attenuation coefficient (mu-map) for a PET/MRI scan have been reported. The accuracy of mu-map from an MRI image depends on correctness of tissue segmentation and attenuation coefficients to be assigned (mu-values). In our previous study, we developed a hybrid segmentation-atlas method for PET attenuation correction in PET/MRI and demonstrated that can provide the accurate tissue segmentation reflecting mu-value differences [1]. In this study, we focused on the estimation of mu-values to construct the proper mu-map for human brain PET/MRI.
Figure 1 shows the brief procedure and schematic diagram of the proposed method. An external radiation source was placed at the fixed position and the radioactive attenuation by tissue was acquired with PET detectors. In addition, partial pathlengths of tissues are calculated from the simulation on the virtual scanner with the segmented MR image. The mu-values of tissues are calculated by inverting the linear system; y=Ax, where y is the radioactive attenuation vector of m detectors ln(I0/I), x is the mu-value vector of n tissues and each element of matrix A is the partial pathlength of radiation ray in n-th tissue from the source to the m-th detector.
The proposed method was evaluated on the simulation with the mu-map and T1-weighted image (T1WI) of a human head acquired. The T1WI was segmented into air, bone, brain and soft tissues other than brain. The simulation of the transmission scan was performed by Geant 4.9.6. The bore of virtual HR+ scanner was divided into elements that equal to the voxel size of acquired mu-map. The intra-voxel radiation pathlength were calculated from the source to every detector. The radioactive attenuation was calculated from the sum of products between the acquired mu-map and intra-voxel radiation pathlength on the way to each detector. The partial pathlength of each tissue was calculated on the segmented T1WI.
Figure 2 shows the acquired mu-map and T1WI and the segmented image. Figure 3 shows histograms of error rates on estimated and actual mu-values for bone, brain and soft tissue. The error rate is defined as (muact.(r)-muest.)/muact.(r), where r is the position vector of voxels. The estimated mu-value of brain agrees well with actual value. However, the estimated mu-values of bone and soft tissue are over- and under estimated, respectively. The accuracy of the estimation may depend on the length of radiation pathrength for each tissue. Our previous study showed the accuracy of brain mu-value strongly affects on quantitative measurements of radioactivity for the human brain PET, while that of bone and soft tissue affects a little [2].
In conclusion, the proposed method contributes to quantitative measurements of radioactivity for the human brain PET/MRI. Additionally, this method can decrease the production cost for rotation system, increase the freedom of mechanical design and reduce additional several minutes for every PET scan compared with the conventional transmission scan.
\nReferences
[1] A. Tanigawa, et al. "Hybrid segmentation-atlas method for PET-MRI attenuation correction"
, IEEE NSS-MIC 2012, M10-54. Anaheim, USA, 2012.
[2] Kawaguchi et al., "Evaluation of MRI-based attenuation correction methods for quantitative human brain PET", International Forum on Medical Imaging in Asia 2012, O6-4, Daegeon, Korea, 2012.
会議概要(会議名, 開催地, 会期, 主催者等)
内容記述タイプ Other
内容記述 PSMR 2013 / 4th Julich MR-PET Workshop
発表年月日
日付 2013-05-07
日付タイプ Issued
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