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NUR 2420L CRRT Crash Course Notes | Miami Dade College

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NUR 2420L CRRT Crash Course Notes | Miami Dade College

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COMPLETE & ADVANCE

CONTINUOUS RENAL
REPLACEMENT
THERAPY (CRRT)

, CONTINUOUS RENAL
REPLACEMENT THERAPY
INTRODUCTION TO CRRT
DEFINITION AND OVERVIEW
Continuous Renal Replacement
Therapy (CRRT) is a type of blood
purification therapy that is used
primarily in critically ill patients
with acute kidney injury (AKI).
Unlike traditional intermittent
haemodialysis (IHD), which is
performed over a few hours, CRRT
is a continuous process that runs
24 hours a day, allowing for more
gradual fluid and solute removal.
This makes CRRT particularly suitable for patients who are
haemodynamically unstable, as it minimizes the risk of rapid changes
in blood pressure and fluid shifts.
CRRT can be utilized in various forms, depending on the specific
needs of the patient, including haemofiltration, haemodialysis,
haemodiafiltration, and ultrafiltration. The therapy is typically
administered in intensive care units (ICUs) and is an essential
component in the management of patients with severe renal
impairment, especially when other organ systems are also
compromised.


HISTORICAL BACKGROUND
The development of CRRT traces back to the 1970s when traditional
haemodialysis posed significant challenges for critically ill patients.

, CONTINUOUS RENAL
REPLACEMENT THERAPY
In response to these challenges, researchers and clinicians began
exploring continuous therapies that could be gentler on the patient.
The first successful CRRT treatment was performed in the late 1970s,
utilizing a continuous arteriovenous haemofiltration (CAVH) technique.
This method was refined over the years, and by the 1980s, continuous
venovenous haemofiltration (CVVH) became the standard approach,
allowing for safer and more effective treatments.

Since its inception, CRRT has evolved significantly, with advances in
technology and a better understanding of the therapy leading to
improved patient outcomes. Modern CRRT machines are highly
sophisticated, capable of precise control over fluid removal, solute
clearance, and other treatment parameters, making CRRT an
indispensable tool in critical care nephrology.


CRRT VS INTERMITTENT HAEMODIALYSIS (IHD)
While both CRRT and intermittent haemodialysis (IHD) are used to
manage renal failure, they differ significantly in their approach and
application:

Duration and Frequency:
Intermittent Hemodialysis (IHD) is
typically administered in sessions lasting
3 to 4 hours, three times a week, allowing
for periods of rest between treatments.
On the other hand, Continuous Renal
Replacement Therapy (CRRT) is a
prolonged treatment that runs 24 hours a
day, often continuing for several days at
a time, providing a more gradual and
continuous removal of waste and fluids.

, CONTINUOUS RENAL
REPLACEMENT THERAPY
Fluid and Solute Removal:
IHD rapidly removes fluids and solutes, which can cause abrupt
changes in blood pressure and electrolyte levels, potentially leading
to hemodynamic instability. In contrast, CRRT offers a more controlled
and gradual removal process, minimizing these fluctuations and
making it a safer option for patients with unstable cardiovascular
conditions.

Indications:
Continuous Renal Replacement Therapy (CRRT) is often preferred for
patients who are hemodynamically unstable or in the ICU due to its
gentle, continuous nature, which minimizes abrupt fluid shifts and
better accommodates fluctuating cardiovascular conditions. This
method allows for constant monitoring and adjustment, making it
ideal for critically ill individuals who require close observation and
gradual dialysis.

Technology and Equipment:
CRRT requires specialized machines that can operate continuously
and are equipped with sophisticated monitoring systems. IHD
machines are designed for shorter, intermittent sessions and may not
have the same level of continuous monitoring capability.

Complications:
The rapid fluid shifts in IHD can lead to complications such as
hypotension, muscle cramps, and disequilibrium syndrome. CRRT's
gradual approach reduces these risks but requires meticulous
monitoring to prevent clotting of the circuit, electrolyte imbalances,
and other potential issues.

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