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Updated: Mar 27, 2026

Intracranial Pressure Monitoring In Nontraumatic Intraventricular Hemorrhage Rodent Model
Published on: February 8, 2022
Intracranial pressure management in severe intraventricular hemorrhage: A minireview
Wu-Si Qiu1,2, Hao-Dong Chen3, Wen-Jie Yang4
1Department of Surgical Education and Research, Affiliated Hospital of Hangzhou Normal University, Hangzhou 310015, Zhejiang Province, China.
Insights
Severe intraventricular hemorrhage (IVH) in preterm infants is a critical condition. Advances in monitoring and AI offer new strategies for managing intracranial pressure (ICP) and improving outcomes.
Area of Science:
- Neonatal Neurology
- Neurocritical Care
- Pediatric Neurosurgery
Background:
- Severe intraventricular hemorrhage (IVH) is a major cause of mortality and morbidity in preterm infants.
- Elevated intracranial pressure (ICP) is a primary concern in managing IVH.
- Predictive models highlight the complexity of IVH in very-low birth weight infants.
Purpose of the Study:
- To review recent advancements in understanding intracranial dynamics, monitoring, and therapeutic strategies for IVH.
- To synthesize current knowledge on managing elevated ICP in the context of IVH.
- To identify future directions for improving outcomes in severe IVH.
Main Methods:
- Mini-review of recent literature on IVH and ICP management.
- Integration of the Monro-Kellie 4.0 framework.
- Discussion of pathophysiological mechanisms including hydrocephalus, neurotoxicity, and cortical spreading depolarizations.
Main Results:
- Non-invasive monitoring (ICP monitoring, genetic testing) and AI enhance early detection and personalized management.
- Therapeutic advances include algorithmic CSF drainage, glymphatic therapies, and precision hyperosmolar therapy.
- The Monro-Kellie 4.0 framework provides a comprehensive view of ICP determinants.
Conclusions:
- Standardized protocols, large-scale trials, and AI-driven approaches are crucial for improving outcomes in severe IVH.
- Personalized management strategies are becoming increasingly feasible with technological advancements.
- A deeper understanding of intracranial dynamics is key to effective IVH management.
Abstract:
Severe intraventricular hemorrhage (IVH) is a life-threatening neurological emergency that poses significant risks of morbidity and mortality, particularly due to the associated elevated intracranial pressure (ICP). Studies have shown that the incidence of IVH in very preterm infants is high, with management strategies playing a significant role in its development. Moreover, predictive models have been developed to forecast early mortality and severe IVH in very-low birth weight preterm infants, indicating the complexity and multifactorial nature of this condition. This mini-review synthesizes recent advances in the understanding of intracranial dynamics, monitoring technologies, and therapeutic strategies for managing ICP in IVH. The Monro-Kellie 4.0 framework integrates cerebrovascular autoregulation, intracranial compliance, and glymphatic clearance as core determinants of ICP. Pathophysiological mechanisms include obstructive hydrocephalus, hemoglobin-mediated neurotoxicity, and cortical spreading depolarizations. Advancements in non-invasive monitoring techniques, such as ICP monitoring and genetic testing, coupled with the integration of artificial intelligence, are significantly improving early detection capabilities and enabling more personalized management strategies. Therapeutic advances include algorithmic cerebrospinal fluid drainage, glymphatic-enhanced therapies, and precision hyperosmolar therapy. This review highlights the need for standardized protocols, large-scale trials, and artificial intelligence-driven approaches to improve outcomes in severe IVH.
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