Analysis of craniospinal hydrodynamics in infants with hydrocephalus after preterm intraventricular hemorrhage

被引:0
作者
Capel, Cyrille [1 ,2 ]
Aye, Margaux [3 ]
Constans, Jean-Marc [2 ,3 ]
Peltier, Johann [1 ,2 ]
Gondry-Jouet, Catherine [3 ]
Baledent, Olivier [2 ,4 ]
机构
[1] Amiens Picardie Univ Hosp, Neurosurg Dept, F-80054 Amiens, France
[2] Jules Verne Univ Picardie, CHIMERE UR UPJV 7516, Amiens, France
[3] Amiens Picardie Univ Hosp, Radiol Dept, Amiens, France
[4] Amiens Picardie Univ Hosp, Image Proc Unit, Amiens, France
关键词
Cerebrospinal fluid; Premature birth; Hydrocephalus; Intraventricular hemorrhage; Hydrodynamic; Phase-contrast MRI; Intracranial compliance; Physiopathology; CEREBROSPINAL-FLUID DYNAMICS; CEREBRAL BLOOD FLOWS; MORBIDITY;
D O I
10.1007/s00381-025-06892-4
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
PurposeMorphological MRI can describe the brain structures and bleeding location but cannot describe the hydrocephalus' mechanisms in intraventricular hemorrhage (HIVH) in preterms. We have shown previously that phase-contrast MRI (PCMRI) can be used to quantify cerebral blood and CSF dynamics in newborns. The objective of the present study was to evaluate the impact of HIVH on CSF oscillations and blood flows in premature infants with hydrocephalus.MethodsFifteen preterm infants with HVIH underwent morphological MRI and PCMRI between 3 weeks and 6 years after birth. We used PCMRI to quantify CSF flows in the aqueduct of Sylvius and in the spinal canal.ResultsDifferent morphological types of hydrocephalus were observed. We found communicating and obstructive hydrocephalus. We found different hydrodynamic behaviors at intraventricular and subarachnoid levels. The morphological analysis of the spinal canal did not systematically correspond to the PCMRI results. At the aqueduct, the results were concordant in three cases only.ConclusionsPCMRI can quantify CSF and blood flows in newborns, reveal abnormally low or high CSF flows when a morphologic analysis cannot, and provide information that complements the morphological analysis and might be useful for understanding the physiopathology of the condition.
引用
收藏
页数:11
相关论文
共 28 条
[11]   Preterm neuroimaging and neurodevelopmental outcome: a focus on intraventricular hemorrhage, post-hemorrhagic hydrocephalus, and associated brain injury [J].
Dorner, Rebecca A. ;
Burton, Vera Joanna ;
Allen, Marilee C. ;
Robinson, Shenandoah ;
Soares, Bruno P. .
JOURNAL OF PERINATOLOGY, 2018, 38 (11) :1431-1443
[12]   Mechanisms of neuroinflammation in hydrocephalus after intraventricular hemorrhage: a review [J].
Holste, Katherine G. ;
Xia, Fan ;
Ye, Fenghui ;
Keep, Richard F. ;
Xi, Guohua .
FLUIDS AND BARRIERS OF THE CNS, 2022, 19 (01)
[13]   Inflammation in acquired hydrocephalus: pathogenic mechanisms and therapeutic targets [J].
Karimy, Jason K. ;
Reeves, Benjamin C. ;
Damisah, Eyiyemisi ;
Duy, Phan Q. ;
Antwi, Prince ;
David, Wyatt ;
Wang, Kevin ;
Schiff, Steven J. ;
Limbrick, David D., Jr. ;
Alper, Seth L. ;
Warf, Benjamin C. ;
Nedergaard, Maiken ;
Simard, J. Marc ;
Kahle, Kristopher T. .
NATURE REVIEWS NEUROLOGY, 2020, 16 (05) :285-296
[14]   Inflammation-dependent cerebrospinal fluid hypersecretion by the choroid plexus epithelium in posthemorrhagic hydrocephalus [J].
Karimy, Jason K. ;
Zhang, Jinwei ;
Kurland, David B. ;
Theriault, Brianna Carusillo ;
Duran, Daniel ;
Stokum, Jesse A. ;
Furey, Charuta Gavankar ;
Zhou, Xu ;
Mansuri, M. Shahid ;
Montejo, Julio ;
Vera, Alberto ;
DiLuna, Michael L. ;
Delpire, Eric ;
Alper, Seth L. ;
Gunel, Murat ;
Gerzanich, Volodymyr ;
Medzhitov, Ruslan ;
Simard, J. Marc ;
Kahle, Kristopher T. .
NATURE MEDICINE, 2017, 23 (08) :997-+
[15]   Extracranial versus intracranial hydro-hemodynamics during aging: a PC-MRI pilot cross-sectional study [J].
Lokossou, Armelle ;
Metanbou, Serge ;
Gondry-Jouet, Catherine ;
Baledent, Olivier .
FLUIDS AND BARRIERS OF THE CNS, 2020, 17 (01)
[16]   Ventricular Zone Disruption in Human Neonates With Intraventricular Hemorrhage [J].
McAllister, James P. ;
Guerra, Maria Montserrat ;
Ruiz, Leandro Castaneyra ;
Jimenez, Antonio J. ;
Dominguez-Pinos, Dolores ;
Sival, Deborah ;
den Dunnen, Wilfred ;
Morales, Diego M. ;
Schmidt, Robert E. ;
Rodriguez, Esteban M. ;
Limbrick, David D. .
JOURNAL OF NEUROPATHOLOGY AND EXPERIMENTAL NEUROLOGY, 2017, 76 (05) :358-375
[17]   Posthaemorrhagic ventricular dilatation in the premature infant: natural history and predictors of outcome [J].
Murphy, BP ;
Inder, TE ;
Rooks, V ;
Taylor, GA ;
Anderson, NJ ;
Mogridge, N ;
Horwood, LJ ;
Volpe, JJ .
ARCHIVES OF DISEASE IN CHILDHOOD-FETAL AND NEONATAL EDITION, 2002, 87 (01) :F37-F41
[18]   Hydrocephalus Research Update-Controversies in Definition and Classification of Hydrocephalus [J].
Oi, Shizuo .
NEUROLOGIA MEDICO-CHIRURGICA, 2010, 50 (09) :859-869
[19]   INCIDENCE AND EVOLUTION OF SUBEPENDYMAL AND INTRA-VENTRICULAR HEMORRHAGE - STUDY OF INFANTS WITH BIRTH WEIGHTS LESS THAN 1,500 GM [J].
PAPILE, LA ;
BURSTEIN, J ;
BURSTEIN, R ;
KOFFLER, H .
JOURNAL OF PEDIATRICS, 1978, 92 (04) :529-534
[20]   Cerebrospinal fluid flow imaging in the meningeal hemorrhage [J].
Paradot, G. ;
Baledent, O. ;
Gondry-Jouet, C. ;
Meyer, M. -E. ;
Le Gars, D. .
NEUROCHIRURGIE, 2006, 52 (04) :323-329