In vivo visualization of the PICA perfusion territory with super-selective pseudo-continuous arterial spin labeling MRI

被引:15
|
作者
Hartkamp, Nolan S. [1 ]
De Cocker, Laurens J. [1 ]
Helle, Michael [2 ]
van Osch, Matthias J. P. [3 ]
Kappelle, L. Jaap [4 ]
Bokkers, Reinoud P. H. [1 ]
Hendrikse, Jeroen [1 ]
机构
[1] Univ Med Ctr Utrecht, Dept Radiol, NL-3508 GA Utrecht, Netherlands
[2] Philips Technol GmbH, Innovat Technol, Res Labs, Hamburg, Germany
[3] Univ Med Ctr Utrecht, Dept Radiol, CJ Gorter Ctr High Field MRI, NL-3508 GA Utrecht, Netherlands
[4] Univ Med Ctr Utrecht, Dept Neurol, Rudolf Magnus Inst Neurosci, NL-3508 GA Utrecht, Netherlands
关键词
MRI; ASL; Cerebellar; PICA; Perfusion; CEREBELLAR INFARCTS; CAROTID-ARTERY; BRAIN; MECHANISMS; INSIGHTS;
D O I
10.1016/j.neuroimage.2013.06.070
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In this work a method is described to discern the perfusion territories in the cerebellum that are exclusively supplied by either or both vertebral arteries. In normal vascular anatomy the posterior inferior cerebellar artery (PICA) is supplied exclusively by its ipsilateral vertebral artery. The perfusion territories of the vertebral arteries were determined in 14 healthy subjects by means of a super-selective pseudo-continuous ASL sequence on a 3 T MRI scanner. Data is presented to show the feasibility of determining the PICA perfusion territory. In 10 subjects it was possible to accurately determine both PICA perfusion territories. In two subjects it was possible to determine the perfusion territory of one PICA. Examples in which it was not possible to accurately determine the PICA territory are also given. Additionally, the high variability of the extent of the PICA territory is illustrated using a statistical map. The posterior surface of the cerebellum is entirely supplied by the PICA in six subjects. The most posterior part of the superior surface is supplied by the PICA in eight subjects, and the inferior half of the anterior surface in six subjects. The inferior part of the vermis is supplied by the PICA in all subjects. Two subjects were found with interhemispheric blood flow to both tonsils from one PICA without contribution from the contralateral PICA. With the method as presented, clinicians may in the future accurately classify cerebellar infarcts according to affected perfusion territories, which might be helpful in the decision whether a stenosis should be considered symptomatic. (C) 2013 Elsevier Inc. All rights reserved.
引用
收藏
页码:58 / 65
页数:8
相关论文
共 50 条
  • [41] Repeatability of perfusion measurements in adult gliomas using pulsed and pseudo-continuous arterial spin labelling MRI
    Amirah Faisal Alsaedi
    David Lee Thomas
    Enrico De Vita
    Jasmina Panovska-Griffiths
    Sotirios Bisdas
    Xavier Golay
    Magnetic Resonance Materials in Physics, Biology and Medicine, 2022, 35 : 113 - 125
  • [42] Optimization of adiabatic pulses for pulsed arterial spin labeling at 7 tesla: Comparison with pseudo-continuous arterial spin labeling
    Wang, Kai
    Shao, Xingfeng
    Yan, Lirong
    Ma, Samantha J.
    Jin, Jin
    Wang, Danny J. J.
    MAGNETIC RESONANCE IN MEDICINE, 2021, 85 (06) : 3227 - 3240
  • [43] Characterization of Skull Base Lesions Using Pseudo-Continuous Arterial Spin Labeling
    B. Geerts
    D. Leclercq
    S. Tezenas du Montcel
    B. Law-ye
    S. Gerber
    D. Bernardeschi
    D. Galanaud
    D. Dormont
    N. Pyatigorskaya
    Clinical Neuroradiology, 2019, 29 : 75 - 86
  • [44] Characterization of Skull Base Lesions Using Pseudo-Continuous Arterial Spin Labeling
    Geerts, B.
    Leclercq, D.
    du Montcel, S. Tezenas
    Law-ye, B.
    Gerber, S.
    Bernardeschi, D.
    Galanaud, D.
    Dormont, D.
    Pyatigorskaya, N.
    CLINICAL NEURORADIOLOGY, 2019, 29 (01) : 75 - 86
  • [45] A deep learning image analysis method for renal perfusion estimation in pseudo-continuous arterial spin labelling MRI
    Oyarzun-Domeno, Anne
    Cia, Izaskun
    Echeverria-Chasco, Rebeca
    Fernandez-Seara, Maria A.
    Martin-Moreno, Paloma L.
    Garcia-Fernandez, Nuria
    Bastarrika, Gorka
    Navallas, Javier
    Villanueva, Arantxa
    MAGNETIC RESONANCE IMAGING, 2023, 104 : 39 - 51
  • [46] High-Resolution Mouse Kidney Perfusion Imaging by Pseudo-Continuous Arterial Spin Labeling at 11.75T
    Duhamel, Guillaume
    Prevost, Valentin
    Girard, Olivier M.
    Callot, Virginie
    Cozzone, Patrick J.
    MAGNETIC RESONANCE IN MEDICINE, 2014, 71 (03) : 1186 - 1196
  • [47] Assessment of Renal Perfusion in Transplanted Kidney Patients Using Pseudo-Continuous Arterial Spin Labeling with Multiple Post-Labeling Delays
    Ahn, Hyun-Seo
    Yu, Hee Chul
    Kwak, Hyo Sung
    Park, Sung-Hong
    EUROPEAN JOURNAL OF RADIOLOGY, 2020, 130
  • [48] Pseudo-continuous and territorial arterial spin labeling MRI for assessment of cerebral perfusion in moyamoya disease after revascularization: A comparative study with digital subtraction angiography
    Li, Juan
    Meng, Qinghu
    Huang, Ling
    Pylypenko, Dmytro
    Zhong, Hai
    HELIYON, 2024, 10 (17)
  • [49] Reliability and Reproducibility of Hadamard Encoded Pseudo-Continuous Arterial Spin Labeling in Healthy Elderly
    Neumann, Katja
    Schidlowski, Martin
    Guenther, Matthias
    Stoecker, Tony
    Duezel, Emrah
    FRONTIERS IN NEUROSCIENCE, 2021, 15
  • [50] Cardiac-triggered pseudo-continuous arterial-spin-labeling: A cost-effective scheme to further enhance the reliability of arterial-spin-labeling MRI
    Li, Yang
    Mao, Deng
    Li, Zhiqiang
    Schaer, Michael
    Pillai, Jay J.
    Pipe, James G.
    Lu, Hanzhang
    MAGNETIC RESONANCE IN MEDICINE, 2018, 80 (03) : 969 - 975