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3. Feasibility and safety of intranasally administered mesenchymal stromal cells after perinatal arterial ischaemic stroke in the Netherlands (PASSIoN): a first-in-human, open-label intervention study

4. Association of Histologic Chorioamnionitis With Perinatal Brain Injury and Early Childhood Neurodevelopmental Outcomes Among Preterm Neonates

5. Detecting Asymmetry of Upper Limb Activity with Accelerometry in Infants at Risk for Unilateral Spastic Cerebral Palsy

8. Proceedings of the 14th International Newborn Brain Conference: Neonatal Neurocritical Care, seizures, and continuous aEEG and /or EEG monitoring

12. Proceedings of the 14th International Newborn Brain Conference: Neonatal Neurocritical Care, seizures, and continuous aEEG and /or EEG monitoring

13. Brain segmentation in patients with perinatal arterial ischemic stroke

14. Early predictors of neurodevelopment after perinatal arterial ischemic stroke: a systematic review and meta-analysis

15. Detecting Asymmetry of Upper Limb Activity with Accelerometry in Infants at Risk for Unilateral Spastic Cerebral Palsy.

19. Feasibility and safety of intranasally administered mesenchymal stromal cells after perinatal arterial ischaemic stroke in the Netherlands (PASSIoN): a first-in-human, open-label intervention study

20. Preliminary results of the PASSIoN trial (Perinatal Arterial Stroke treated with Stromal cells IntraNasally)

21. Advances in perinatal stroke : From early prediction to future therapies

22. Early prediction of unilateral cerebral palsy in infants at risk: MRI versus the hand assessment for infants

23. Association of early skin breaks and neonatal thalamic maturation: A modifiable risk?

27. Early prediction of unilateral cerebral palsy in infants with asymmetric perinatal brain injury – Model development and internal validation

30. Brain Activity and Cerebral Oxygenation After Perinatal Arterial Ischemic Stroke Are Associated With Neurodevelopment

31. Neurodevelopment After Perinatal Arterial Ischemic Stroke

32. Association of Histologic Chorioamnionitis With Perinatal Brain Injury and Early Childhood Neurodevelopmental Outcomes Among Preterm Neonates

33. Neurodevelopment After Perinatal Arterial Ischemic Stroke

34. MRI Changes in the Thalamus and Basal Ganglia of Full-Term Neonates with Perinatal Asphyxia

36. Association of Histologic Chorioamnionitis with Perinatal Brain Injury and Early Childhood Neurodevelopmental Outcomes among Preterm Neonates

37. Neurodevelopment After Perinatal Arterial Ischemic Stroke

38. Promoting neuroregeneration after perinatal arterial ischemic stroke: Neurotrophic factors and mesenchymal stem cells

39. Association of histologic chorioamnionitis with perinatal brain injury and early childhood neurodevelopmental outcomes among preterm neonates

40. MRI Changes in the Thalamus and Basal Ganglia of Full-Term Neonates with Perinatal Asphyxia

41. Origin and dynamics of oligodendrocytes in the developing brain: Implications for perinatal white matter injury

45. Cerebral Blood Flow Measured by Phase-Contrast Magnetic Resonance Angiography in Preterm and Term Neonates.

47. MR imaging for accurate prediction of outcome after perinatal arterial ischemic stroke: Sooner not necessarily better

48. Clinical Risk Factors for Punctate White Matter Lesions on Early Magnetic Resonance Imaging in Preterm Newborns

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