Post-operative hematoma after surgery for intracranial meningiomas: causes, avoidable risk factors and clinical

Rüdiger Gerlach1, Andreas Raabe, Inge Scharrer

  • 1Department of Neurosurgery, Johann Wolfgang Goethe University, Frankfurt am Main, Germany. r.gerlach@em.uni-frankfurt.de

Neurological Research
|February 24, 2004
PubMed

Insights

Elderly patients undergoing intracranial meningioma surgery face a higher risk of post-operative hematoma. Thrombocytopenia and hemostatic disorders are associated with this risk, suggesting improved coagulation testing and therapy could enhance patient outcomes.

Area of Science:

  • Neurosurgery
  • Hematology

Background:

  • Intracranial meningiomas are typically benign tumors.
  • Surgical resection is the primary treatment, but carries a risk of post-operative hemorrhage.
  • Preventing post-operative hematoma is crucial for patient safety.

Purpose of the Study:

  • To identify risk factors for post-operative hematoma following intracranial meningioma surgery.
  • To analyze the outcomes of patients who develop post-operative hematoma.

Main Methods:

  • Retrospective analysis of 296 patients who underwent intracranial meningioma surgery.
  • Comparison of demographic, tumor-related, and coagulation data between patients with and without post-operative hematoma.
  • Assessment of patient outcomes using the Glasgow Outcome Scale (GOS).

Main Results:

  • 21 patients (7.1%) developed post-operative intracranial hematoma.
  • Older age (especially >70 years) was a significant risk factor.
  • Lower post-operative prothrombin time, fibrinogen, and platelets were associated with hematoma.
  • Platelet dysfunction and decreased FXIII activity were noted in some patients with hemorrhage.

Conclusions:

  • Meningioma surgery poses an increased risk of post-operative hematoma in elderly patients.
  • Thrombocytopenia and hemostatic disorders are frequently linked to post-operative hemorrhage.
  • Enhanced coagulation monitoring and targeted replacement therapy may mitigate hematoma formation and improve outcomes.

Related Concept Videos

Hemorrhagic Stroke ll: Pathophysiology01:29

Hemorrhagic Stroke ll: Pathophysiology

A hemorrhagic stroke develops when a cerebral blood vessel ruptures, allowing blood to escape into the surrounding brain tissue, as in intracerebral hemorrhage (ICH), or into the subarachnoid space, as in subarachnoid hemorrhage (SAH). Because the skull is a rigid compartment, the sudden presence of extravascular blood rapidly increases intracranial pressure and compresses adjacent neural structures, leading to immediate tissue injury and impaired cerebral perfusion.Mass Effect and Primary...
Hemorrhagic Stroke l: Introduction01:17

Hemorrhagic Stroke l: Introduction

A hemorrhagic stroke is an acute neurological event that occurs when a weakened cerebral blood vessel ruptures, allowing blood to accumulate within or around the brain. The sudden release of blood forms a focal hematoma that increases intracranial pressure, displaces neural tissue, and can obstruct cerebrospinal fluid pathways. These effects may be compounded by intraventricular extension of the hemorrhage, cerebral edema, or compression of adjacent structures, all of which contribute to...
Increased Intracranial Pressure l: Introduction01:14

Increased Intracranial Pressure l: Introduction

Intracranial hypertension is a sustained elevation of intracranial pressure (ICP) above 22 mm Hg. In supine adults, normal ICP is ~7–15 mm Hg.The rigid, nonexpandable cranium contains three components—brain tissue, blood, and cerebrospinal fluid (CSF)—that total ~1,700 mL in a typical adult: 1,400 mL brain (~80%), 150 mL blood (~10%), and 150 mL CSF (~10%). According to the Monro–Kellie doctrine, total intracranial volume is effectively fixed. When one component expands, CSF and venous blood...
Increased Intracranial Pressure ll: Pathophysiology01:29

Increased Intracranial Pressure ll: Pathophysiology

Increased intracranial pressure (ICP) refers to a potentially life-threatening rise in pressure inside the skull. This usually happens when there is a major change in the volume of brain tissue, blood, or cerebrospinal fluid (CSF) — the three components inside the skull. According to the Monro-Kellie doctrine, if the volume of one component increases, the volumes of the other components must decrease to maintain normal pressure. If this does not happen, ICP rises.The process often begins with...
Cerebral Edema ll: Pathophysiology01:22

Cerebral Edema ll: Pathophysiology

Vasogenic edema is a major form of cerebral edema characterized by abnormal accumulation of fluid in the brain’s extracellular space due to disruption of the blood–brain barrier (BBB). The BBB is a specialized structure composed of endothelial cells connected by tight junctions, supported by astrocytic endfeet and a basement membrane. Under normal conditions, it tightly regulates the movement of ions, proteins, and solutes between the bloodstream and brain parenchyma. When this barrier loses...
Aneurysm IV: Nursing Management01:22

Aneurysm IV: Nursing Management

Vigilant monitoring for aneurysm rupture is essential for patients undergoing aortic surgery.Preoperative Nursing ManagementContinuously monitor the patient for manifestations of aneurysm rupture, such as pallor, weakness, tachycardia, hypotension, abdominal, back, groin, or periumbilical pain, changes in consciousness, and a pulsating abdominal mass. Regularly assess the patient's peripheral pulses.Instruct the patient to consume a clear liquid diet the day before surgery and administer...