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

Hemodialysis I: Introduction01:25

Hemodialysis I: Introduction

3.2K
Hemodialysis (HD) is a medical treatment that artificially removes waste products, excess fluids, and toxins from the blood when the kidneys are no longer able to perform these functions effectively. In this process, blood is filtered through a semipermeable membrane, allowing for the selective removal of waste while preserving necessary components like blood cells and proteins. Hemodialysis is typically performed in patients with end-stage renal disease (ESRD) or severe kidney...
3.2K
Hemodialysis II: Procedure and Complications01:24

Hemodialysis II: Procedure and Complications

1.8K
DialyzersA hemodialysis (HD) dialyzer is a plastic cartridge containing thousands of parallel hollow fibers, which serve as semipermeable membranes. These fibers are typically made from cellulose-based or other synthetic materials. During HD, blood is pumped into the top of the cartridge and distributed among these fibers. Simultaneously, dialysis fluid, known as dialysate, is introduced into the bottom of the cartridge, bathing the outside of the fibers. Across the semipermeable membrane,...
1.8K
Hemodialysis III: Nursing Management01:25

Hemodialysis III: Nursing Management

1.5K
The nursing management of a patient undergoing hemodialysis includes several critical steps, starting with a thorough assessment before the procedure.Before the Hemodialysis ProcedureFirst, record the patient's vital signs—blood pressure, heart rate, respiratory rate, and temperature—to establish a baseline. This baseline is essential for detecting conditions such as hypotension that could impact the patient's response to dialysis. Document the patient's pre-dialysis weight, as this...
1.5K
Continuous Renal Replacement Therapy01:30

Continuous Renal Replacement Therapy

1.9K
Continuous Renal Replacement Therapy, also known as CRRT, is a procedural treatment for acute kidney injury (AKI) that gradually removes uremic toxins and fluids while maintaining acid-base balance and stabilizing electrolytes. It is particularly useful for hemodynamically unstable patients. Unlike intermittent hemodialysis, which is faster, CRRT provides a gentler approach over 24 hours, closely mimicking the function of natural kidneys. However, CRRT is not ideal for patients with...
1.9K
Extracorporeal Removal of Drugs: Peritoneal Dialysis and Hemodialysis01:30

Extracorporeal Removal of Drugs: Peritoneal Dialysis and Hemodialysis

882
Patients with end-stage renal disease (ESRD) or those experiencing drug overdose often require extracorporeal methods to eliminate accumulated drugs and metabolites. Hemoperfusion, hemofiltration, and dialysis are the primary techniques to rapidly remove harmful substances without disrupting the patient's fluid and electrolyte balance. For those with compromised renal function, dosage adjustments of concurrent medications may be necessary during extracorporeal drug removal.Dialysis is a process...
882
Dialysis01:27

Dialysis

2.0K
Renal failure occurs when the kidneys lose their ability to filter waste products from the blood effectively. It can be classified into two types: acute renal failure (ARF) and chronic renal failure (CRF).
Acute kidney injury develops suddenly and can be caused by pre-renal causes (e.g., hypovolemia, shock), intrinsic renal causes (e.g., acute tubular necrosis), or post-renal causes (e.g., urinary obstruction). In contrast, chronic renal failure progresses gradually over time and is often...
2.0K

You might also read

Related Articles

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

Sort by
Same author

[Combined intraoperative neuromonitoring during carotid endarterectomy].

Angiologiia i sosudistaia khirurgiia = Angiology and vascular surgery·2026
Same author

[Alternative variants of formation of permanent vascular access for hemodialysis].

Angiologiia i sosudistaia khirurgiia = Angiology and vascular surgery·2016
Same author

[Endovascular interventions in true and false aneurysms of hepatic, splenic and renal arteries].

Angiologiia i sosudistaia khirurgiia = Angiology and vascular surgery·2015
Same author

[Roentgenendovascular stenting (stent-graft) of the external iliac artery for elimination of post-traumatic arteriovenous anastomosis].

Angiologiia i sosudistaia khirurgiia = Angiology and vascular surgery·2005
Same author

[Vasaprostan in everyday practice of vascular surgery department].

Angiologiia i sosudistaia khirurgiia = Angiology and vascular surgery·2003
Same author

[Carcinoids of lungs].

Khirurgiia·1999

Related Experiment Video

Updated: Apr 1, 2026

A Murine Model of Hemodialysis Access-Related Hand Dysfunction
08:39

A Murine Model of Hemodialysis Access-Related Hand Dysfunction

Published on: May 31, 2022

2.2K

[Permanent vascular access for haemodialysis].

E N Manafov, V A Batrashov, O G Sergeev

    Angiologiia I Sosudistaia Khirurgiia = Angiology and Vascular Surgery
    |October 10, 2015
    PubMed
    Summary

    Successful chronic haemodialysis relies on permanent vascular access (PVA). Improving PVA creation and monitoring reduces complications, enhancing patient quality of life.

    Area of Science:

    • Vascular Surgery
    • Nephrology
    • Dialysis Medicine

    Context:

    • Permanent vascular access (PVA) is crucial for successful chronic haemodialysis (CD).
    • Vascular and endovascular surgeons, nephrologists, and dialysis specialists prioritize PVA creation and maintenance.
    • KDOQI guidelines recommend native arteriovenous fistula (AVF) as the preferred PVA, with synthetic arteriovenous shunt (AVS) or central venous catheter (CVC) as alternatives.

    Purpose:

    • To highlight the importance of permanent vascular access (PVA) in chronic haemodialysis (CD).
    • To discuss the preferred types of PVA, including native arteriovenous fistulas (AVFs) and alternatives like arteriovenous shunts (AVS) and central venous catheters (CVCs).
    • To emphasize the negative impact of vascular access complications on patient outcomes and the necessity for improved management strategies.

    More Related Videos

    Creating Radio-cephalic Arteriovenous Fistula in the Forearm with a Modified No-Touch Technique
    07:30

    Creating Radio-cephalic Arteriovenous Fistula in the Forearm with a Modified No-Touch Technique

    Published on: April 1, 2022

    9.7K
    Technical Aspects of the Mouse Aortocaval Fistula
    06:12

    Technical Aspects of the Mouse Aortocaval Fistula

    Published on: July 11, 2013

    17.6K

    Related Experiment Videos

    Last Updated: Apr 1, 2026

    A Murine Model of Hemodialysis Access-Related Hand Dysfunction
    08:39

    A Murine Model of Hemodialysis Access-Related Hand Dysfunction

    Published on: May 31, 2022

    2.2K
    Creating Radio-cephalic Arteriovenous Fistula in the Forearm with a Modified No-Touch Technique
    07:30

    Creating Radio-cephalic Arteriovenous Fistula in the Forearm with a Modified No-Touch Technique

    Published on: April 1, 2022

    9.7K
    Technical Aspects of the Mouse Aortocaval Fistula
    06:12

    Technical Aspects of the Mouse Aortocaval Fistula

    Published on: July 11, 2013

    17.6K

    Summary:

    • Permanent vascular access (PVA) is essential for effective chronic haemodialysis (CD).
    • Native arteriovenous fistulas (AVFs) are preferred, but arteriovenous shunts (AVS) and central venous catheters (CVCs) are alternatives.
    • Complications of vascular access can lead to loss of access, negatively impacting patient lifespan and quality of life.

    Impact:

    • Improving surgical techniques and dynamic monitoring of PVAs can significantly decrease complication rates.
    • Enhanced management of vascular access can improve the quality of medical care for dialysis patients.
    • Reducing PVA complications positively influences patient survival and quality of life in the chronic haemodialysis population.