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Related Concept Videos

Peritoneal Dialysis I: Introduction and Procedure01:30

Peritoneal Dialysis I: Introduction and Procedure

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Peritoneal dialysis (PD) is a procedure that facilitates the exchange of solutes, waste products, electrolytes, and excess fluid between the blood in the peritoneal capillaries and a dialysis solution introduced into the peritoneal cavity.Principles of Peritoneal Dialysis (PD)Diffusion: Waste products such as urea and electrolytes move from high concentrations in the blood to low concentrations in the dialysate across the peritoneal membrane. This mechanism is driven by the concentration...
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Peritoneal Dialysis II: Peritoneal Dialysis Systems and Complications01:25

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Peritoneal dialysis (PD) is a medical process that removes waste products and excess fluid from the body using the peritoneal membrane as a natural filter.Peritoneal Dialysis MethodsSeveral methods can be used for peritoneal dialysis, including Acute Intermittent Peritoneal Dialysis, Continuous Ambulatory Peritoneal Dialysis, and Automated Peritoneal Dialysis, also known as Continuous Cyclic Peritoneal Dialysis.Acute Intermittent Peritoneal Dialysis (AIPD) is used for patients with uremic...
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Peritoneal Dialysis III: Nursing Management01:25

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Peritoneal dialysis, or PD, utilizes the peritoneal membrane as a filter to eliminate excess fluid and waste products. Effective nursing management is essential for ensuring patient safety, preventing complications, and promoting optimal function of the peritoneal dialysis process.Assessment and MonitoringNurses must thoroughly assess the patient before, during, and after each dialysis session. Regular monitoring includes vital signs, daily weight, fluid intake and output, and laboratory values...
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Dialysis01:27

Dialysis

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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...
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Hemodialysis I: Introduction01:25

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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...
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Hemodialysis II: Procedure and Complications01:24

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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,...
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Ultrafiltration and Sodium Removal in Steady Concentration Peritoneal Dialysis: A Prospective, Multicenter, Randomized, Crossover Study.

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Peritoneal dialysis in the modern era.

Ayman Karkar1, Martin Wilkie2

  • 1Medical Affairs - Renal Care, Scientific Office, Baxter A.G., Dubai, United Arab Emirates.

Peritoneal Dialysis International : Journal of the International Society for Peritoneal Dialysis
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Summary

Peritoneal dialysis (PD) has advanced significantly, improving patient survival and care. This review updates healthcare professionals on modern PD practices, including modality selection and remote patient management.

Keywords:
Automated PDcatheter insertioncontinuous ambulatory PDpre-dialysis educationremote managementshared decision-making

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Area of Science:

  • Nephrology
  • Renal Medicine
  • Dialysis Technology

Background:

  • Peritoneal dialysis (PD) practice and clinical outcomes have seen substantial improvements over the last two decades.
  • Key advancements impact patient survival, modality selection, and patient experience.
  • The integration of new technologies and patient-centered approaches has transformed PD care.

Purpose of the Study:

  • To update healthcare professionals on current peritoneal dialysis (PD) practices.
  • To highlight improvements in patient and technique survival.
  • To discuss patient modality selection, pathways onto PD, and pre-transplant PD use.

Main Methods:

  • This is a review article, synthesizing current evidence and practices in peritoneal dialysis.
  • It incorporates findings related to shared decision-making, surgical techniques, and technological advancements.
  • The review also considers the impact of clinical guidelines and quality improvement processes.

Main Results:

  • Significant improvements in patient and technique survival rates in peritoneal dialysis (PD).
  • Enhanced patient selection and pathways for initiating PD therapy.
  • Technological innovations, including remote management for automated PD, have improved patient care and adherence.
  • Increased emphasis on shared decision-making empowers patients in modality selection.

Conclusions:

  • Modern peritoneal dialysis (PD) offers improved outcomes and patient experiences.
  • Continuous quality improvement and evidence-based guidelines are crucial for advancing PD.
  • Technological integration and patient-centered care are key to the future of PD.