Related Experiment Video
Updated: Feb 9, 2026

Adult Mouse Venous Hypertension Model: Common Carotid Artery to External Jugular Vein Anastomosis.
Published on: January 27, 2015
Transverse venous sinus stenting for idiopathic intracranial hypertension: Safety and feasibility
Jerry Me Koovor1, Gloria V Lopez1, Kalen Riley1
1Indiana University Department of Radiology and Imaging Sciences, Indianapolis, USA.
Insights
Transverse sinus stenting effectively treats idiopathic intracranial hypertension, resolving papilledema in all patients and improving headaches in most. This venous sinus stenting procedure is safe and effective for managing this condition.
Area of Science:
- Neurology
- Vascular Surgery
- Interventional Radiology
Background:
- Transverse sinus stenosis is frequently observed in idiopathic intracranial hypertension (IIH).
- The causal relationship between transverse sinus stenosis and IIH remains unclear.
- Previous studies have explored stenting for IIH, necessitating further evaluation.
Purpose of the Study:
- To assess the clinical and imaging outcomes of patients with IIH who underwent transverse sinus stenting.
- To evaluate the safety and efficacy of venous sinus stenting in this patient cohort.
Main Methods:
- Retrospective review of clinical, venographic, and imaging data from 2011 to 2017.
- Inclusion of 16 patients with IIH who underwent elective transverse sinus stenting.
- Measurement of pressure gradients across stenosis before and after stenting.
Main Results:
- Mean cerebrospinal fluid opening pressure was 408 mmH2O.
- Mean pre-stenting pressure gradient was 21 mmHg, becoming negligible post-stenting.
- Headaches improved in 10/16 patients; papilledema resolved in all cases.
- Stents remained patent on follow-up imaging (CT venography).
Conclusions:
- Venous sinus stenting is a safe and effective treatment for IIH.
- The procedure consistently resolves papilledema.
- Significant headache improvement is observed in a majority of patients.
Abstract:
Purpose Transverse sinus stenosis is commonly seen in patients with idiopathic intracranial hypertension. It is not clear whether it is the cause or the result of idiopathic intracranial hypertension. Stenting for idiopathic intracranial hypertension has been carried out in several prior series. Our goal was to evaluate the clinical and imaging follow-up results of patients with idiopathic intracranial hypertension that underwent stenting for this condition at our center. Materials and Methods We reviewed the clinical, venographic and follow-up imaging data in patients who underwent elective transverse sinus stenting during the period from 2011 to 2017. Results In total, 18 patients with idiopathic intracranial hypertension were identified. The mean lumbar cerebrospinal fluid opening pressure recorded was 408 mmH20. Overall, 16 patients met the inclusion criteria and underwent transverse sinus stenting. At venography, the mean pressure gradient across the dominant transverse sinus stenosis was 21 mmHg. The pressure gradient immediately after stenting in all of those measured was negligible. Following stenting, headaches improved in 10 of the 16 cases, with persistent headaches in four patients, one of which had persistent baseline migraines. All cases showed resolution of the papilledema on follow up. Follow-up imaging with computed tomography venography showed that the stents remained widely patent. The follow up in clinic was done for a mean period of 35.5 months. Follow up with computed tomography venography was done for a mean of 10.3 months. Conclusion Venous sinus stenting is a safe and effective procedure. It relieves papilledema in all cases and improves headaches in most cases.
Related Concept Videos
Survey Safety
Speed of a Transverse Wave
One of the key properties of any wave is the wave speed. Light...
Deformations in a Transverse Cross Section
As the material stretches, it expands or contracts in orthogonal directions to the load. This phenomenon varies...
Venous Return
What is Venous Return?
Venous return refers to the rate at which blood flows back to the heart from the body's peripheral veins. It's an integral part of the circulatory system...
Deformation of a Beam under Transverse Loading
The insights from the bending moment diagram extend to...
ECG Interpretation of Arrhythmias I: Sinus Arrhythmias
Types of Arrhythmias
Sinus Node Arrhythmias
Sinus Bradycardia: Originating from the sinoatrial (SA) node, sinus bradycardia involves slower impulses, resulting in a heart rate of less than 60 beats per minute (bpm). Causes include sleep, vagal stimulation, beta-blockers, hypothyroidism,...

