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The Egyptian Pediatic Advanced Life Support

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"last update: 8 September 2026"                                                                                  Download Guideline

- Recommendations

The strength of the recommendation

  The strength of a recommendation communicates the importance of adherence to the recommendation.

-        Strong recommendations

  With strong recommendations, the guideline communicates the message that the desirable effects of adherence to the recommendation outweigh the undesirable effects. This means that in most situations the recommendation can be adopted as policy.

-        Conditional recommendations

  These are made when there is greater uncertainty about the four factors above or if local adaptation has to account for a greater variety in values and preferences, or when resource use makes the intervention suitable for some, but not for other locations. This means that there is a need for substantial debate and involvement of stakeholders before this recommendation can be adopted as policy.

-        When not to make recommendations

  When there is lack of evidence on the effectiveness of an intervention, it may be appropriate not to make a recommendation.

SECTION 1: Recognition of critically ill child:

1.     Rapid Response Team (RRT) / Rapid Response System (RRS):


Recommendation

Strength

Level of Evidence

Reference

We advise that hospitals caring for pediatric inpatients to implement a pediatric Rapid Response System (RRS) to support early recognition and escalation of deteriorating children outside ICU/PICU.

Rational: Pediatric deterioration is commonly preceded by abnormal physiological signs, and delayed recognition remains a major contributor to preventable ward deterioration, unplanned PICU admission, and in-hospital cardiac arrest.3,4,5

Conditional

Moderate

Canadian Paediatric Society (PMC)6

The pediatric RRS advised to include: (1) standardized vital-sign monitoring, (2) age-appropriate early warning criteria (e.g., PEWS), (3) a clear activation pathway, (4) a designated responder team, and (5) quality monitoring/audit.

Conditional

Moderate

Canadian Paediatric Society (PMC)6

We suggest hospitals caring for pediatric inpatients to  establish and train a pediatric Rapid Response Team (RRT) with pediatric expertise (e.g., pediatrician/ICU physician, critical care nurse, respiratory therapist where available), adapted to local staffing and resources.

Conditional

Moderate

Canadian Paediatric Society (PMC)6

Pediatric RRT (or on duty paediatrician)  activation criteria should be simple, standardized, age-appropriate, and available 24/7, based on abnormal vital signs, mental status change, increased oxygen requirement, staff concern, or elevated PEWS.

Strong

Moderate

National RRS Standards / CPS7 (Istitlaa)

Pediatricians  should be supported by regular simulation-based multidisciplinary training, including escalation, communication, airway, and shock response.

Strong

Moderate

Canadian Paediatric Society  (PMC)8

We advise institutions to monitor RRT (paediatricians) performance through quality indicators including response time, unplanned PICU transfer, ward cardiac arrest, and escalation delays,unneeded PICU admission.

Good practice statement

 

Expert consensus / RRS standards (Istitlaa)9,10,11,12


2.     Early Recognition and Triage:

Recommendation

Strength

Level of Evidence

Reference

All acutely ill children should undergo rapid initial assessment using a structured paediatric triage or quick-look approach. The Paediatric Assessment Triangle (PAT) may be used for rapid recognition of a potentially critically ill child, followed by an ABCDE assessment when indicated.

Strong

Low/very low

ERC 202513

/Expert Consensus

Reassess the child after every intervention and whenever there is concern about deterioration, repeating the ABCDE assessment as appropriate.

Strong

Low/very low

ERC 202513

/Expert Consensus

3. Airway and Breathing:

Recommendation

Strength

Level of Evidence

Reference

Airway patency should be assessed immediately in all critically ill children, with positioning, suction, and airway adjuncts used as needed.

Strong

Moderate

ERC 202513

Oxygen should be administered to children with hypoxemia, severe respiratory distress, shock, seizures, or altered mental status.

Strong

Moderate

ERC 202513

Oxygen therapy advised to be titrated to clinical response and pulse oximetry where available, avoiding unnecessary hyperoxia.

Conditional

Moderate

ERC 202513 ILCOR CoSTR14

High-flow nasal oxygen (HFNC) or non-invasive ventilation (NIV) considered early in moderate respiratory distress where available.

Good Practice Statement

WHO ETAT / expert consensus (NCBI)15

Early intubation is considered in apnea, exhaustion, failure of oxygenation/ventilation, refractory shock, or reduced consciousness with loss of airway protection.

Conditional

Low

Expert consensus / PALS principles (NCBI)15, 16

 

4. Circulation and Shock:

Recommendation

Strength

Level of Evidence

Reference

Consider IV access  early in all critically ill children; IO access to be used without delay when IV access is not rapidly achieved.

Conditional

Moderate

WHO ETAT (NCBI)15

Children with shock should receive isotonic crystalloid in cautious aliquots of 10mL/kg with reassessment after each bolus.

Strong

Moderate

ERC 202513

Repeated unmonitored fluid boluses should be avoided, especially when cardiogenic shock, severe anemia, or myocarditis is suspected.

Strong

Moderate

WHO ETAT (NCBI)15

Early vasoactive support is advised in fluid-refractory shock or when fluid overload/cardiogenic shock is suspected.

Conditional

Moderate

SSC Pediatric Sepsis (Society of Critical Care Medicine (SCCM))17

Shock management should be etiology-directed (septic, hypovolemic, hemorrhagic, cardiogenic, obstructive, anaphylactic).

Strong

Low

WHO ETAT / expert consensus (NCBI)16

5. Sepsis and Septic Shock:

Recommendation

Strength

Level of Evidence

Reference

Sepsis should be recognized early in any child with suspected infection and organ dysfunction or abnormal perfusion.

Strong

Moderate

SSC Pediatric Sepsis (Society of Critical Care Medicine (SCCM))17

Broad-spectrum antibiotics should be administered as early as possible after recognition of septic shock.

Strong

Moderate

SSC Pediatric Sepsis (Society of Critical Care Medicine (SCCM))17

Fluid resuscitation in septic shock should be cautious and guided by repeated reassessment.

Strong

Moderate

WHO ETAT / SSC (NCBI)15,16

Vasoactive support advised not to be  delayed in fluid-refractory septic shock.

Conditional

Moderate

SSC Pediatric Sepsis (Society of Critical Care Medicine (SCCM))17

 

 

6. Disability / Glucose / Temperature:

Recommendation

Strength

Level of Evidence

Reference

Neurologic status should be assessed using AVPU or GCS in all critically ill children.

Strong

Low

WHO ETAT / expert consensus (NCBI)15,16

Hypoglycemia should be corrected immediately in children with reduced consciousness, seizures, shock, or severe illness.

Strong

Moderate

WHO ETAT (NCBI)15

Temperature abnormalities (fever or hypothermia) should be identified and treated early.

Strong

Low

WHO ETAT / expert consensus (NCBI)15,16

1.     Seizures and Neurologic Emergencies

Recommendation

Strength

Level of Evidence

Reference

Actively seizing children advise to receive immediate first-line benzodiazepine therapy.

Conditional

High

WHO ETAT (World Health Organization)15

If IV access is unavailable, buccal or rectal or  intranasal benzodiazepines is suggested.

Conditional

High

WHO ETAT (NCBI)13

Blood glucose should be checked early in all children with altered consciousness or seizures.

Strong

Moderate

WHO ETAT (NCBI)15

Consider second-line antiseizure therapy  administration early in persistent seizures/status epilepticus.

Conditional

Moderate

WHO ETAT (NCBI)16

8. Trauma:

Recommendation

Strength

Level of Evidence

Reference

Critically injured children should be managed using pediatric trauma ABCDE principles with simultaneous hemorrhage control.

Good practice statement

Low

ATLS / expert consensus18,19

Cervical spine protection should be maintained when trauma mechanism suggests risk.

Good practice statement

Low

ATLS / expert consensus 18,19

Early transfer planning should begin immediately in children requiring trauma surgery, neurosurgery, or PICU support beyond local capability.

Good practice statement

Low

Expert consensus18

 

SECTION 2: Cardiac arrest management in pediatric

Recommendation

Type of Recommendation

Level of Evidence

References

Bag-mask ventilation is recommended as initial airway management during pediatric cardiac arrest.

Strong

Moderate

ERC Paediatric Life Support 202513

High-quality CPR (rate 100–120/min, depth 1/3 chest diameter, full recoil, minimal interruptions) is essential for all pediatric cardiac arrest patients.

Strong

Moderate

 

ERC Paediatric Life Support 202513; AHA PALS 202520; ILCOR 202514

Chest compression fraction should be maximized, minimizing interruptions to <10 seconds during rhythm checks or interventions.

Strong

Moderate

ERC 202513; AHA PALS 202520

Rhythm analysis should be performed every 2 minutes with immediate resumption of CPR after shock or rhythm check.

Strong

Low

ERC 202513

Early defibrillation is recommended for pediatric VF/pulseless VT as soon as a defibrillator is available.

Conditional

Moderate

ERC Paediatric Life Support 202513; AHA PALS 202520

Use of manual defibrillator is preferred; AED with pediatric attenuator is acceptable if manual defibrillator is unavailable.

Conditional

Moderate

ERC 202513; ILCOR 202514

Epinephrine should be administered for non-shockable rhythms (PEA/asystole) as early as possible and repeated every 3–5 minutes.

Strong

Moderate

ERC 202513; AHA PALS 202520

In shockable rhythms, epinephrine should be given after the third shock.

Strong

Moderate

ERC 202513; ILCOR 202514

Amiodarone (or lidocaine) is recommended for refractory VF/pVT after defibrillation attempts.

Conditional

Low

ERC 202513; AHA PALS 202520

Advanced airway (ETT or supraglottic airway) may be considered by experienced providers if it does not interrupt chest compressions.

Conditional

Low

ERC 202513

Consider Continuous waveform capnography to confirm tube placement and monitor CPR quality when advanced airway is in place.

Conditional

Moderate

ERC 202513; AHA PALS 202520

Reversible causes of cardiac arrest (4 Hs & 4 Ts) should be actively identified and treated during resuscitation.

Strong

Low

ERC 202513; ILCOR 202514

Extracorporeal CPR (ECPR) may be considered in selected pediatric in-hospital cardiac arrest cases in specialized centers.

Conditional

Low

ERC 202513; AHA PALS 202520

 

SECTION 3:  Pediatric Post–Cardiac Arrest Care (After ROSC)

Recommendation

Type of Recommendation

Level of Evidence

References

Oxygen therapy should be titrated after ROSC to avoid both hypoxemia and hyperoxia, targeting normal oxygen saturation appropriate for age.

Strong

Moderate

ERC Paediatric Life Support 202513; AHA PALS 202520; ILCOR 202514

Ventilation should be adjusted to maintain normocapnia; both hypo- and hypercapnia should be avoided after ROSC.

Strong

Moderate

ERC 202513; AHA PALS 202520

Invasive blood pressure monitoring is considered in critically ill post–cardiac arrest children to guide hemodynamic management when available.

Conditional

Low

ERC 202513; AHA PALS 202520

Hypotension after ROSC should be identified and treated urgently using isotonic fluids to maintain age-appropriate perfusion.

Strong

Moderate

ERC 202513; AHA PALS 202520

We suggest early initiation of vasoactive infusions (e.g., epinephrine, norepinephrine) in persistent post-arrest shock.

Conditional

Moderate

ERC 202513; ILCOR 202514

Targeted temperature management should be used in comatose children after ROSC, with strict avoidance of fever.

Strong

Moderate

ERC 202513; AHA PALS 202520

Continuous temperature monitoring is recommended for all post–cardiac arrest pediatric patients.

Strong

Moderate

ERC 202513

Sedation and analgesia should be provided to prevent pain, agitation, and increased metabolic demand after ROSC.

Strong

Low

ERC 202513

Blood glucose should be monitored and both hypo- and hyperglycemia should be avoided in post-arrest care.

Strong

Moderate

ERC 202513; AHA PALS 202520

Continuous EEG monitoring may be considere in comatose children to detect subclinical seizures or status epilepticus.

Conditional

Low

ERC 202513

Clinical and electrographic seizures should be actively treated after ROSC.

Strong

Moderate

ERC 202513

Early neuroprognostication should be avoided immediately after ROSC; neurological outcome assessment should be delayed until after stabilization.

Strong

Moderate

ERC 202513; ILCOR 202514

Multimodal neurological assessment (clinical exam, EEG, imaging, biomarkers) is  suggested for prognosis rather than a single modality.

Conditional

Low

ERC 202513

Consider early evaluation for underlying cause of arrest (cardiac, respiratory, metabolic, toxic, infectious)  and treat.

Conditional

Moderate

ERC 202513; AHA PALS 202520

Hemoglobin and oxygen-carrying capacity considered to be  optimized; transfusion may be considered in post-arrest anemia with poor perfusion.

Conditional

Low

ERC 202513

Early consultation with pediatric intensive care, cardiology, neurology, and relevant specialties is advised.

Conditional

Low

ERC 202513

Family communication and structured post-resuscitation counseling should be provided early after stabilization.

Strong

Low

ERC 202513