Related Experiment Video
Updated: Sep 10, 2026

A Rat Carotid Artery Pressure-Controlled Segmental Balloon Injury with Periadventitial Therapeutic Application
Published on: July 9, 2020
Hemodynamic significance of internal carotid artery disease
1Department of Vascular Surgery, Rigshospitalet, Copenhagen, Denmark.
Insights
Patients with internal carotid artery stenosis and hemodynamic failure may benefit from surgery. Differentiating these patients using physiological tests is crucial for identifying those likely to experience improved cerebral blood flow post-intervention.
Area of Science:
- Neurology
- Vascular Surgery
- Medical Imaging
Background:
- Neurologic symptoms from internal carotid artery stenosis are often embolic.
- A subset of patients experiences hemodynamic failure due to impaired collateral supply, leading to reduced cerebral perfusion pressure.
Purpose of the Study:
- To differentiate patients with hemodynamic failure from general carotid artery disease.
- To identify patients who may benefit from surgical intervention due to reduced perfusion pressure.
Main Methods:
- Preoperative clinical evaluation and direct visualization.
- Indirect physiological tests (periorbital flow, oculoplethysmography) for collateral assessment.
- Cerebral blood flow studies (xenon-133, PET) at rest and during vasodilation.
Main Results:
- Indirect tests can screen for pressure gradients; positive results require further quantification.
- Cerebral blood flow studies identify patients with severe perfusion reduction.
- Endarterectomy improves hemodynamics and eliminates pressure gradients, especially in patients with reduced perfusion.
Conclusions:
- Distinguishing hemodynamic failure in carotid stenosis is vital for surgical decision-making.
- Physiological testing aids in identifying patients with low perfusion pressure.
- Surgical intervention offers significant hemodynamic benefits for select patients with compromised cerebral perfusion.
Abstract:
Neurologic symptoms in the region of an internal carotid artery stenosis are considered to be embolic in most instances. Only in a subgroup has carotid occlusive disease with impairment of the collateral supply, caused a state of hemodynamic failure with marked reduction of perfusion pressure. Though unproven, it is reasonable to assume that without surgical intervention, the risk is higher than average for patients with hemodynamic failure. Equally, should there be any postoperative improvement of cerebral blood flow or neurologic deficits, it should be looked for in this group. Thus, it is necessary to distinguish those with low perfusion pressure from the population of patients with carotid artery disease. Preoperative clinical evaluation and direct visualization of the carotid bifurcation should be supplemented by indirect physiological tests which allow assessment of collateral perfusion. Examination of periorbital flow direction or oculoplethysmography could be used as a screening procedure. Negative tests most certainly rule out any severe pressure gradient across the stenosis, irrespective of the luminal reduction. A positive result, on the other hand, should be further quantified since most indirect tests become positive at relatively small pressure gradients. Studies of cerebral blood flow at rest and during cerebral vasodilation makes it possible to identify patients with severe reduction of cerebral perfusion pressure. Such hemodynamic failure of one hemisphere may be identified in most cases by a conventional non-invasive xenon-133 technique and stationary detectors. Smaller focal regions of hypoperfusion may be identified by computer emission tomography, either by the detection of single-photon emission or by paired detection of annihilation photons. Endarterectomy does improve cerebral hemodynamics in terms of increased flow through the reconstructed vessel and elimination of pressure gradients. The cerebral blood flow, though remains unchanged in the majority of patients, at least when measured at baseline. Only in those patients with a reduction in perfusion pressure can a significant improvement in baseline flow occur. Flow reserve determined by cerebral vasodilation, however, will improve in most patients with hemodynamic failure. In addition, some patients in the low-pressure group develop marked, but temporary, hyperperfusion after reconstruction of very high grade carotid stenosis. This is considered a result of chronic low perfusion pressure with subsequent loss of autoregulation, and autoregulatory control is first regained after some days.(ABSTRACT TRUNCATED AT 400 WORDS)
More Related Videos
10:41Analysis of Cerebral Vasospasm in a Murine Model of Subarachnoid Hemorrhage with High Frequency Transcranial Duplex Ultrasound
Published on: June 3, 2021
09:36A Magnetic Resonance Imaging-based Computational Protocol for Analysis of Plaque Morphology and Hemodynamics in Patients with Carotid Artery Stenosis
Published on: August 12, 2025
Related Concept Videos
The Arch of Aorta
Encircling the heart, the coronary arteries form a ring-like structure before...
Arteries of the Head and Neck
The internal carotid arteries supply blood to the anterior portion of the cerebrum. They enter the...
Hemorrhagic Stroke l: Introduction
Hemorrhagic Stroke ll: Pathophysiology
Transient Ischemic Attack l: Introduction
Increased Intracranial Pressure ll: Pathophysiology