Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Related Concept Videos

Arteries of Lower Limbs01:20

Arteries of Lower Limbs

4.9K
The external iliac artery transitions out of the body cavity, entering the femoral region of the lower leg, and is renamed the femoral artery at the point where it traverses the body wall. This artery is responsible for the distribution of blood to the thigh's deep muscles and the skin's ventral and lateral regions, achieved through several minor branches and the lateral deep femoral artery, which also spawns a lateral circumflex artery. The knee area receives blood from the genicular...
4.9K
Arteries and Arterioles01:16

Arteries and Arterioles

6.9K
Arteries, the vasculature responsible for transporting blood from the heart, possess robust walls capable of enduring the elevated pressures exerted by the heartbeat. Arteries near the heart are especially thick-walled and enriched with elastic fibers across their three tunics, classifying them as elastic or conducting arteries. These arteries, usually with a diameter exceeding 10 mm, are characterized by their ability to dilate in response to the blood pumped from the heart's ventricles...
6.9K
Arteries of the Upper Limbs01:12

Arteries of the Upper Limbs

2.5K
The subclavian artery transitions into the axillary artery as it exits the chest and enters the axillary region. This artery is critical for supplying blood to the shoulder area, including the head of the humerus, through the humeral circumflex arteries. As the vessel continues into the upper arm or brachium, it becomes the brachial artery. This artery plays a key role in vascularizing the brachial region and bifurcates at the elbow into several branches. These branches include the deep...
2.5K
Overview of Systemic Arteries01:11

Overview of Systemic Arteries

2.1K
The human body is a complex, well-organized machine, and at the heart of its operations lies the circulatory system. This network of blood vessels, which includes systemic arteries, plays a vital role in maintaining life by transporting nutrients, oxygen, and waste products to and from cells throughout the body.
Systemic circulation is the part of the cardiovascular system that carries oxygenated blood away from the heart to the body's tissues and returns deoxygenated blood back to the...
2.1K
Arteries of the Head and Neck01:26

Arteries of the Head and Neck

3.6K
The human body's intricate network of arteries ensures that every organ system receives the necessary oxygen and nutrients for optimal function. The arterial network in the head and neck region is particularly complex, providing vital blood flow to the brain, eyes, and other critical structures. Prominent arteries in this region include the internal carotid arteries and the vertebral arteries.
The internal carotid arteries supply blood to the anterior portion of the cerebrum. They enter the...
3.6K
Coronary Artery Disease I: Introduction01:30

Coronary Artery Disease I: Introduction

1.2K
Coronary Artery Disease (CAD): An Overview with Scientific InsightsCoronary Artery Disease (CAD), often referred to as C-A-D, is a prevalent blood vessel disorder classified under the broader category of atherosclerosis. Atherosclerosis is a pathological process characterized by the hardening and narrowing of arteries due to the accumulation of atherosclerotic plaques. These plaques are composed of cholesterol, fatty substances, inflammatory cells, calcium, and fibrin, reducing blood flow to...
1.2K

You might also read

Related Articles

Articles linked to this work by shared authors, journal, and citation graph.

Sort by
Same author

Paving the Way: a Systematic Review and Meta-Analysis of Randomized Controlled Trials of Atherectomy as Vessel Preparation Prior to Balloon Angioplasty in Peripheral Arterial Disease.

Cardiovascular and interventional radiology·2026
Same author

Pericardial cyst: an unexpected diagnosis in a patient presenting with breathlessness.

The British journal of cardiology·2026
Same author

Traumatic high flow priapism in a child - the role of Colour Doppler Ultrasound and gelfoam embolotherapy for effective management.

CVIR endovascular·2026
Same author

Assessing the MYNX CONTROL arterial vascular closure device after catheterization procedures that enter the body through the femoral arteries.

Expert review of medical devices·2026
Same author

Comparative Efficacy of Preservative vs. Isotonic Fluids in liver transplantation: A scoping review.

JPMA. The Journal of the Pakistan Medical Association·2026
Same author

Comparing the uplink performance of 3D and 2D antenna models in THz networks in the presence of joint human and wall blockages.

PloS one·2026

Related Experiment Video

Updated: Feb 13, 2026

4D Printed Bifurcated Stents with Kirigami-Inspired Structures
06:52

4D Printed Bifurcated Stents with Kirigami-Inspired Structures

Published on: July 25, 2019

8.5K

Techniques for Infrapopliteal Arterial Bifurcation Stenting.

Hong Kuan Kok1, Shirish G Prabhudesai2, Irfan Ahmed1

  • 1Department of Interventional Radiology, Guy's and St Thomas' NHS Foundation Trust, London, United Kingdom.

Annals of Vascular Surgery
|March 9, 2018
PubMed
Summary

Endovascular treatment for infrapopliteal peripheral arterial disease (PAD) can be challenging at tibial artery bifurcations. Specialized stenting techniques effectively manage complex lesions and prevent limb amputation.

More Related Videos

A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis
04:30

A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis

Published on: May 14, 2013

26.4K
Human Internal Mammary Artery IMA Transplantation and Stenting: A Human Model to Study the Development of In-Stent Restenosis
05:37

Human Internal Mammary Artery IMA Transplantation and Stenting: A Human Model to Study the Development of In-Stent Restenosis

Published on: May 9, 2012

11.8K

Related Experiment Videos

Last Updated: Feb 13, 2026

4D Printed Bifurcated Stents with Kirigami-Inspired Structures
06:52

4D Printed Bifurcated Stents with Kirigami-Inspired Structures

Published on: July 25, 2019

8.5K
A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis
04:30

A Murine Model of Stent Implantation in the Carotid Artery for the Study of Restenosis

Published on: May 14, 2013

26.4K
Human Internal Mammary Artery IMA Transplantation and Stenting: A Human Model to Study the Development of In-Stent Restenosis
05:37

Human Internal Mammary Artery IMA Transplantation and Stenting: A Human Model to Study the Development of In-Stent Restenosis

Published on: May 9, 2012

11.8K

Area of Science:

  • Vascular Surgery
  • Interventional Cardiology
  • Endovascular Interventions

Background:

  • Endovascular treatment is a key strategy for symptomatic peripheral arterial disease (PAD).
  • An endovascular-first approach is increasingly used for critical limb ischemia (CLI) to salvage limbs.
  • Complex infrapopliteal arterial bifurcations pose challenges due to recoil and dissection post-angioplasty.

Purpose of the Study:

  • To illustrate specialized endovascular techniques for treating infrapopliteal arterial bifurcations.
  • To provide case-based examples of various bifurcation stenting methods.

Main Methods:

  • Review of case examples demonstrating different stenting techniques.
  • Discussion of single-stent, culottes, kissing, crush, and T-stenting methods.
  • Evaluation of the strengths and limitations of each technique.

Main Results:

  • Demonstration of techniques for infrapopliteal arterial bifurcation stenting.
  • Application of these techniques to complex lesion scenarios.

Conclusions:

  • Infrapopliteal bifurcation stenting is effective for managing complex lesions.
  • These techniques address flow-limiting complications after angioplasty, aiding limb salvage.