๐Ÿงช Lab Test (Blood Chemistry / Electrolyte Panel) ๐Ÿงซ Blood (venous serum or plasma)

Electrolyte Panel: Nursing Guide

An electrolyte panel bundles the minerals nurses trend every shift โ€” sodium, potassium, chloride, and bicarbonate (COโ‚‚) โ€” into one venous sample. The safety story is not memorizing every interval; it is reading the panel as a pattern with volume status, medicines, and symptoms, catching critical potassium or sodium flags early, and escalating discordant trends before weakness, arrhythmia, or confusion appear.

15 min read
Updated June 20, 2026
Medically Reviewed

Quick Facts

Category
Blood chemistry panel
Why it is ordered
Fluid or electrolyte imbalance workup
Main nursing risk
Isolated value without panel context
Turnaround
Turnaround and screening rules vary by institution; follow local policy

Key Takeaway

Specimen & Collection Details

Nurse quick-reference for collection prep that affects result quality.

Tube / container

Gold or red-top (serum) / green-top (heparin plasma) per panel protocol

Serum separator or lithium heparin plasma per institutional electrolyte panel protocol โ€” follow laboratory manual

Specimen type

Blood (venous serum or plasma)

Volume required

Turnaround and screening rules vary by institution; follow local policy โ€” follow local laboratory requirements for electrolyte panel volume

Collection timing

Collect when ordered for acute symptoms or serial monitoring; repeat per prescriber when evaluating response to fluids or electrolyte replacement

Fasting required

no special preparations are needed for an electrolyte panel โ€” fasting may apply when ordered with a fasting BMP or CMP per clinician instructions

Transport / storage

Standard venous specimen handling per laboratory policy โ€” minimize hemolysis, which may falsely elevate potassium on some analyzers

Turnaround time

Turnaround and screening rules vary by institution; follow local policy โ€” varies by institution and urgency (routine vs stat)

Lab section

Blood chemistry / electrolyte laboratory

What is Electrolyte Panel?

Electrolyte Panel is a blood test that measures levels of the body’s main electrolytes. standard clinical references lists sodium, chloride, potassium, and bicarbonate (carbon dioxide) as core components; expanded panels may also include calcium, magnesium, and phosphate. Electrolytes are minerals with an electrical charge when dissolved in body fluids โ€” they help balance water, maintain acid-base (pH) status, support muscle and nerve function, and keep heart rhythm and blood pressure stable.

Overview

On medical-surgical, emergency, and oncology units, electrolyte panels appear when clinicians evaluate weakness, confusion, dehydration, vomiting, diarrhea, diuretic therapy, or kidney disease. It is a screening and monitoring tool โ€” not a definitive diagnosis without clinical correlation.

abnormal electrolyte levels may signal kidney disease, heart disease, diabetes, acidosis, alkalosis, dehydration, or medicine effects. Nurses trend prior values, review intake and output, and coordinate arterial blood gas or anion gap testing when full acid-base assessment is ordered. A single normal sodium does not rule out dangerous hypokalemia or metabolic alkalosis on the same panel.

Clinical Nursing Focus

Before the draw, verify panel components and whether fasting BMP is bundled. After results return, compare each electrolyte with prior panels, creatinine, glucose when relevant, and volume assessment. Escalate critical potassium or sodium flags, hemolysis concerns, and worsening trends according to facility policy.

Panel-Wide Electrolyte and Critical-Value Safety

An electrolyte panel is only as safe as the nurse’s pattern recognition. The highest-risk errors are treating one normal value as reassurance while potassium or bicarbonate trend dangerously, missing hemolysis-related false hyperkalemia, or delaying critical-value notification during vomiting, diarrhea, or diuretic therapy. Markedly abnormal potassium or sodium with weakness, cramps, or ECG changes requires urgent escalation per protocol.

Highest-risk scenarios
  • Critical potassium or sodium laboratory flag with muscle weakness, cramps, or palpitations
  • Hypokalemia with elevated COโ‚‚ and ongoing NG or vomiting losses โ€” metabolic alkalosis risk
  • Hemolyzed specimen with unexpectedly high potassium โ€” verify collection and repeat per laboratory policy
  • Normal sodium with dangerous hypokalemia or alkalosis pattern on the same panel

Document: each electrolyte with reference interval, paired trends, intake and output, symptoms, prescriber notification, and repeat panel times.

What a Serum Electrolyte Panel Can and Cannot Tell You

This test can help identify:

  • Hyponatremia, hypernatremia, hypokalemia, hyperkalemia, and chloride or bicarbonate shifts when interpreted clinically
  • Fluid or acid-base imbalance patterns on screening or monitoring panels per standard clinical guidance
  • Trends during dehydration, vomiting, diarrhea, diuretic therapy, or kidney disease
  • Need for further anion gap, magnesium, calcium, or blood gas review when panel is abnormal

This test cannot:

  • Diagnose a specific cause alone โ€” standard clinical references lists many etiologies for high and low electrolytes
  • Replace full acid-base assessment with pH and PaCOโ‚‚ when clinically indicated
  • Prove total body water distribution without volume assessment and symptoms
  • Define universal critical limits โ€” institution-specific thresholds apply for each electrolyte

Pre-draw Checks for Electrolyte Panel Collection

Verify

โœ“Correct patient, electrolyte panel order, and fasting status if BMP/CMP bundled
โœ“Tube type and order of draw per institutional protocol
โœ“Baseline vitals, mental status, and intake and output when GI losses suspected
โœ“IV access and fluid replacement orders available per protocol
โœ“Medicines affecting electrolytes documented (diuretics, antacids, steroids)
โœ“Specimen collection plan minimizes hemolysis โ€” critical for potassium validity

Clarify before proceeding when:

  • Order does not match symptoms (vomiting, weakness, dehydration) or diagnosis
  • Fasting BMP required but patient ate recently
  • Prior critical electrolyte value not acknowledged by prescriber
  • Hemolyzed specimen rejected โ€” recollection needed before acting on potassium
  • Sodium normal but patient has ongoing NG losses with elevated COโ‚‚ and low potassium
  • Specimen label mismatch or wrong tube submitted
  • Result conflicts strongly with volume assessment or clinical presentation

Reading Sodium, Potassium, Chloride, and COโ‚‚ Together

Pair each electrolyte with prior panels, creatinine, glucose when relevant, and volume status. Review anion gap when reported. Evaluate outcomes after fluids, antiemetics, or electrolyte replacement โ€” a single improving potassium does not mean alkalosis has fully corrected.

Clinical contextPair with panelNursing focus
Vomiting or NG suctionChloride, potassium, bicarbonate, volumeLow Kโบ with high COโ‚‚ โ€” metabolic alkalosis risk; notify prescriber
Diabetic ketoacidosisGlucose, bicarbonate, potassiumAcidosis patterns โ€” monitor resuscitation and potassium shifts per protocol
Acute kidney injuryCreatinine, BUN, potassiumRenal disease alters sodium and potassium โ€” trend with urine output
Heart failure on diureticsSodium, potassium, weight, I&OHypokalemia or hyponatremia may accompany diuretic therapy โ€” review medicines
โ†” On a small screen, swipe or scroll sideways to see the full table.

Hemolysis, Diuretics, and Panel Traps at the Bedside

Bedside pointNursing note
Hemolysis checkUnexpected hyperkalemia after difficult draw โ€” confirm specimen integrity before treatment
Vomiting patternLow Kโบ with high COโ‚‚ after GI losses โ€” suspect metabolic alkalosis; do not wait for severe symptoms
Normal sodium trapPotassium may be critically low while sodium appears acceptable โ€” review full panel
Trend beats one valueCompare current panel to admission results; evaluate outcomes after fluids
Diuretic reviewHome or inpatient diuretics commonly shift potassium and chloride โ€” document medicines
I&O disciplineNG output, diarrhea volume, and urine output explain electrolyte trends better than one lab value
โ†” On a small screen, swipe or scroll sideways to see the full table.

Electrolyte Panel Monitoring in Acute Care Workflow

Diagnostic safety badge: Critical-result test โ€” prompt review and escalation may be required when potassium, sodium, or acid-base patterns are markedly abnormal.

Check-before-test protocol

  1. Identity + panel orders + GI loss and diuretic review
  2. Fasting and medicine check completed when BMP bundled
  3. Venous panel collected per venipuncture protocol with hemolysis prevention
  4. Results reviewed with Naโบ, Kโบ, Clโป, COโ‚‚, creatinine, and volume status
  5. Prescriber notified; repeat panel per protocol

Critical teach-back questions

  • “Can you tell me why we are checking your electrolytes today?”
  • “What vomiting, weakness, or muscle cramp changes should you report immediately?”
  • “Do you understand we may repeat blood tests to see if fluids are working?”

Care coordination: prescriber, laboratory, pharmacy, nephrology, gastroenterology, and rapid response per institutional protocol.

Electrolyte Panel Quick Safety Checklist

  • Have I reviewed sodium, potassium, chloride, and bicarbonate on the same panel?
  • Does the GI loss, diarrhea, or diuretic history match the electrolyte trend?
  • Is volume status (I&O, mucous membranes) consistent with the result?
  • Could hemolysis explain an unexpected potassium value?
  • Is the trend improving after treatment โ€” or worsening?
  • Who was notified for critical or unexpected electrolyte findings?

Why Electrolyte Panel is Ordered

Electrolyte panels are ordered when fluid balance, acid-base status, or mineral disturbance is suspected โ€” interpreted as a pattern across sodium, potassium, chloride, and bicarbonate.

Clinical Indication What the Test Answers Nursing Rationale
Symptoms suggesting electrolyte imbalance Does the patient have nausea, vomiting, weakness, cramps, confusion, or arrhythmia? standard clinical references lists these symptoms as reasons to check electrolytes when minerals may be out of balance.
Fluid gain or loss Is dehydration, diarrhea, diuretic therapy, or IV fluid resuscitation shifting electrolytes? In practice, water intake and loss must stay balanced; vomiting, diarrhea, or fluid shifts can raise or lower multiple electrolytes.
Renal or metabolic disease monitoring Is kidney function, diabetes, or heart failure altering sodium, potassium, or bicarbonate? Kidney disease, heart disease, and diabetes appear in standard references differential lists for abnormal electrolyte results.
Medicine or treatment monitoring Are diuretics, chemotherapy, or electrolyte-altering medicines in use? standard clinical references lists diuretics, antacids, steroids, antibiotics, and chemotherapy as medicines that may affect electrolytes.
โ†” On a small screen, swipe or scroll sideways to see the full table.

Contraindications and Precautions

Venous electrolyte panel testing has no absolute patient contraindications. Nurses focus on correct specimen collection, medicine review, and interpreting the full panel rather than isolated values.

When electrolyte panel results require urgent clinical attention
  • Critical laboratory potassium or sodium flags per institutional policy โ€” possible arrhythmia or neurologic risk.
  • Hypokalemia with metabolic alkalosis pattern after vomiting or NG losses โ€” weakness and cardiac risk may worsen.
  • Panel trend conflicts with clinical picture (e.g. severe dehydration with unexpected normal sodium) โ€” clarify volume status and repeat testing.
Interpretation and pre-analytic factors
  • Hemolysis during collection may falsely elevate potassium โ€” follow laboratory rejection and recollection policy.
  • Diuretics, vomiting, and diarrhea shift multiple electrolytes โ€” review medicines and GI losses.
  • Expanded panels may add calcium, magnesium, or phosphate โ€” confirm which components were ordered.
Escalate If
  • Critical potassium or sodium per institutional limits with weakness, cramps, or ECG changes.
  • Markedly abnormal bicarbonate with altered mental status, deep rapid breathing, or hypotension.
  • Critical laboratory flags on electrolyte panel โ€” complete critical-value read-back per policy.

Patient Preparation

no special preparation is usually required for an electrolyte panel. When bundled with fasting chemistry, follow NPO instructions. Many medicines can affect results โ€” do not stop medicines without prescriber instruction.

Pre-test checks
โœ“Verify patient identity, electrolyte panel order, and fasting status if BMP/CMP bundled.
โœ“Confirm NPO status when fasting panel ordered; document last intake.
โœ“Review diuretics, antacids, steroids, antibiotics, and chemotherapy with prescriber.
โœ“Assess symptoms: vomiting, diarrhea, weakness, confusion, muscle cramps, palpitations.
โœ“Document intake and output, NG output, or estimated GI losses.
โœ“Plan paired renal markers or blood gas when acid-base or kidney injury is suspected.
Medications to Review or Hold

Review diuretics, antacids (large doses), steroids, antibiotics, and chemotherapy electrolyte panel guidance. Never adjust prescription medicines without prescriber authorization. Document vomiting, diarrhea, and diuretic use because they commonly shift chloride, potassium, and bicarbonate together.

Performance โ€” nursing procedure guide

This page is a Tests & Diagnostics guide for Electrolyte Panel. It emphasizes why the test is ordered, how to interpret results, when to escalate, and preparation factors that affect validity โ€” not step-by-step performance technique (those live under Nursing Procedures when available).

How the test is performed

Step-by-step technique, supplies, infection prevention, and immediate post-procedure monitoring for this test are covered in:

Venipuncture

Use the Patient preparation, Results and interpretation, and Nursing responsibilities sections on this page for order verification, pre-analytic checks, result follow-up, critical-value escalation, and documentation.

Result follow-up at a glance

Nursing workflow on this page โ€” from order to safe action on results:

1
Confirm indication & correct order
2
Coordinate performance per nursing procedure guide (see above)
3
Document pre-analytic preparation & timing
4
Review result with trend & clinical picture
5
Escalate critical or discordant findings
6
Document communication & patient teaching

Results and Interpretation

Each electrolyte is reported with the laboratory’s units (often mEq/L or mmol/L) and reference interval. standard clinical references emphasize results depend on which electrolyte is affected and whether levels are too low or too high โ€” always use the reporting laboratory range.

Reference Range Disclaimer

Reference ranges, critical values, and protocols may vary by laboratory, institution, patient population, and testing method. Always follow local policy and the reporting laboratory’s reference range.

Result Range / Finding Clinical Meaning Nursing Action
Within reference interval Each component within its laboratory reference interval โ€” intervals vary by electrolyte, age, and analyzer Electrolyte pattern within reference intervals for that laboratory when clinically stable Continue monitoring if symptomatic โ€” normal panel does not exclude evolving imbalance without trend and clinical assessment
Borderline / near reference limit One or more electrolytes near reference limit May warrant repeat panel when vomiting, diuretics, dehydration, or renal disease present Notify prescriber per protocol; trend with prior values and treatment response
High / above reference interval Above reference interval for one or more electrolytes May suggest hypernatremia, hyperkalemia, hyperchloremia, or metabolic alkalosis patterns โ€” cause depends on which electrolyte is elevated Review full panel, medicines, volume status; notify prescriber; monitor cardiac rhythm when potassium elevated
Low / below reference interval Below reference interval for one or more electrolytes May suggest hyponatremia, hypokalemia, hypochloremia, or metabolic acidosis patterns โ€” interpreted with symptoms and paired values Review bicarbonate, creatinine, intake and output; notify prescriber; monitor weakness and arrhythmia risk
โ†” On a small screen, swipe or scroll sideways to see the full table.

Critical Results and Escalation

Institution-specific critical electrolyte thresholds are not standardized in reviewed clinical references. Markedly abnormal potassium or sodium, metabolic acidosis or alkalosis patterns with clinical deterioration, or critical laboratory flags require urgent response per local policy.

Critical Finding Threshold / Value Immediate Action
Critical potassium or sodium flag Laboratory-critical potassium or sodium per institutional limits with symptoms or ECG changes Complete critical-value notification and read-back; implement cardiac monitoring and replacement protocols per orders; escalate according to facility policy
Metabolic alkalosis pattern with hypokalemia Low potassium with elevated bicarbonate, vomiting or NG losses, and weakness Notify prescriber immediately; assess volume status; implement fluid and electrolyte replacement per orders; monitor cardiac rhythm
Worsening trend despite treatment Electrolytes not improving or bicarbonate remains abnormal after fluids and antiemetics Communicate trend to prescriber; evaluate outcomes and repeat panel per protocol
โ†” On a small screen, swipe or scroll sideways to see the full table.
Stop and Escalate

Stop routine workflow and escalate according to facility policy when the patient has seizures, coma, cardiac arrhythmia with severe electrolyte abnormality, or hemodynamic collapse โ€” regardless of whether a prior panel appeared stable.

Factors Affecting Results

Electrolyte panels reflect combined kidney, GI, cardiac, and fluid effects. Nurses document factors that shift interpretation before calling a result benign or critical.

False Positives
  • Hemolysis falsely elevating potassium while other electrolytes appear plausible
  • Isotonic fluid resuscitation transiently normalizing sodium without correcting alkalosis
  • Laboratory reference range applied to wrong age group โ€” pediatric intervals differ
False Negatives
  • Normal sodium while potassium and bicarbonate show clear metabolic alkalosis pattern
  • Assuming euvolemia because one electrolyte is mid-range without intake and output review
  • Single panel without trend after antiemetics, diuretics, or IV fluid therapy
Interfering Factors
  • Vomiting, NG suction, or diuretics โ€” commonly lower chloride and potassium while affecting bicarbonate
  • Diarrhea or dehydration โ€” may shift sodium, potassium, and chloride
  • Medicines: diuretics, antacids, steroids, antibiotics, chemotherapy per standard clinical guidance
Test Limitations

An electrolyte panel cannot diagnose a specific cause alone โ€” standard clinical references lists many conditions from kidney disease to acid-base disorders. It does not measure total body water distribution without clinical assessment. Expanded components (calcium, magnesium, phosphate) may not be included unless specifically ordered.

Nursing Responsibilities

Nursing responsibilities emphasize reading the full panel with volume status, trending values during GI losses or diuretic therapy, and escalating electrolyte emergencies promptly.

Before the Test
โœ“Review indication, symptoms, renal or heart failure history, and fasting needs if BMP bundled
โœ“Confirm electrolyte panel components; verify IV access for replacement if volume depleted
โœ“Check medicines affecting electrolytes (diuretics, antacids, steroids, chemotherapy)
โœ“Obtain baseline vitals, mental status, intake and output, and mucous membrane assessment
During the Test
โœ“Collect venous sample using correct tubes per venipuncture protocol; minimize hemolysis
โœ“Label specimens at bedside; expedite stat processing when clinically indicated
โœ“Monitor for vasovagal symptoms and patient comfort during and after draw
After the Test
โœ“Review sodium, potassium, chloride, bicarbonate, creatinine, and trend
โœ“Escalate critical values; document read-back and prescriber orders implemented
โœ“Continue volume and cardiac monitoring; evaluate outcomes after fluid or electrolyte therapy
โœ“Teach warning signs: worsening vomiting, weakness, muscle cramps, confusion, palpitations

Documentation

Documentation should support pre-analytic quality and timely communication when abnormal electrolytes are identified.

Example Nursing Note

“Electrolyte panel collected 0815 โ€” K+ 2.7 mEq/L (L), Na+ 134 mEq/L, Clโป 90 mEq/L, COโ‚‚ 31 mEq/L (H). Patient vomiting ร—36 h, 1.2 L NG output, dry mucous membranes. Dr. Okonkwo notified 0822 โ€” IV fluids and potassium replacement per protocol. Repeat panel ordered q6h; evaluate outcomes documented at 1500 with K+ 3.4 mEq/L.”

Key Documentation Points
  • Date, time, panel components, fasting status, and volume assessment findings
  • Each electrolyte with laboratory reference interval and critical flags
  • Symptoms (GI losses, weakness) and vital signs at notification
  • Related results: creatinine, glucose, magnesium or calcium if on expanded panel
  • Prescriber communication, read-back, and orders implemented
  • Trending plan and patient teaching on when to report worsening symptoms

Patient and Family Education

Explain that the blood test measures minerals that help balance fluids, support muscles and nerves, and keep the heart rhythm steady.

โœ“Describe the panel as a routine blood test checking electrolyte balance in the body
โœ“Review fasting instructions only when the panel is bundled with fasting chemistry
โœ“Explain venipuncture sensations; brief pressure afterward reduces bruising
โœ“Teach to report persistent vomiting, weakness, muscle cramps, confusion, or palpitations promptly
โœ“Clarify repeat blood tests may be needed to see if fluids or medicines are working
โœ“Reinforce prescribed fluids and antiemetics are managed by the care team โ€” do not skip doses without orders
๐Ÿ“š

Electrolyte Panel NCLEX practice questions

Practice NCLEX-style clinical judgment focused on Electrolyte Panel safety and nursing judgment. Use the case tabs (orders, results, assessment, nursing notes), then answer eight Next Genโ€“style items (including an ordered workflow step) and evaluate outcomes with the answer key.

Select a tab to view orders, results, assessment, and nursing note details for this case.

  • Order: Electrolyte panel โ€” STAT; magnesium level; repeat panel q6h; IV fluids and potassium per protocol if ordered
  • Indication: Small-bowel obstruction โ€” prolonged vomiting; NG to low intermittent suction; home furosemide
  • Timing: Panel resulted 20 minutes ago; repeat electrolytes due in six hours
  • Related orders: IV normal saline per protocol; ondansetron PRN; strict intake and output; cardiac monitor if ordered
Question 1 โ€” Priority action

After reviewing the case tabs, what is the nurse’s priority action?

Question 2 โ€” Recognize cues

Which findings from the case tabs should prompt clarification or escalation? Select all that apply

Question 3 โ€” Trend interpretation

Which trends should the nurse recognize as concerning in this case?

Trend snapshot
Admission panel 14 h ago: K+ 3.9 mEq/L, COโ‚‚ 26 mEq/L; now worsening with continued vomiting

Select all that apply

Question 4 โ€” Matrix judgment

Classify each finding for this patient:

Finding Expected โ€” document and continue monitoring Requires follow-up โ€” notify team / repeat test Urgent โ€” immediate escalation
K+ 2.7 mEq/L with COโ‚‚ 31 mEq/L, Clโป 90, and 1.1 L NG output
Prescriber not yet notified of resulted electrolyte panel
SpOโ‚‚ 97% on room air
Creatinine 0.9 mg/dL within reference

On a small screen, swipe or scroll sideways to see the full table.

Question 5 โ€” Clinical judgment

A colleague says only potassium matters on an electrolyte panel when sodium is normal. What is the best nursing response?

Question 6 โ€” Documentation (cloze)

Complete the priority documentation after reviewing the electrolyte panel in this case:

The highest-priority documentation action is .

Question 7 โ€” Workflow (ordered response)

After critical hypokalemia on an electrolyte panel with NG losses, rank nursing actions (1 = first).

  1. Assess cardiac rhythm, weakness, intake and output, and NG output; continue monitoring per orders
  2. Notify prescriber with potassium, bicarbonate, chloride, symptoms, and volume assessment; initiate critical-value protocol
  3. Document critical results, read-back, and replacement plan in the chart
  4. Reassess the patient, verify the order and identity, and prepare for prescriber follow-up
Question 8 โ€” Evaluate outcomes

Repeat electrolyte panel six hours later shows K+ 3.5 mEq/L (up from 2.7), COโ‚‚ 28 mEq/L, and improved urine output. What is the best nursing conclusion?

Answer key & rationale

Frequently Asked Questions

FAQ

What is an electrolyte panel?

it as a blood test measuring main electrolytes โ€” sodium, chloride, potassium, and bicarbonate โ€” to check for fluid, acid-base, or mineral imbalances. Expanded panels may include calcium, magnesium, and phosphate.

Does the patient need to fast before an electrolyte panel?

no special preparations are needed for an electrolyte panel. Fasting may apply when the test is part of a fasting BMP or CMP โ€” follow provider and laboratory instructions.

What symptoms may prompt an electrolyte panel?

standard clinical references lists nausea, vomiting, confusion, weakness, irregular heartbeat, diarrhea, fatigue, headaches, muscle cramps, and numbness or tingling as possible imbalance symptoms.

Should nurses interpret one electrolyte in isolation?

No. standard clinical references emphasize electrolytes are usually measured together and work as a system for fluid balance, acid-base status, and muscle and nerve function. Review the full panel with symptoms and trends.

What conditions can cause abnormal electrolyte results?

standard clinical references lists dehydration, kidney disease, heart disease, diabetes, acidosis, alkalosis, liver disease, and malabsorption among possible causes โ€” more testing is often needed to confirm a specific diagnosis.

When should nurses escalate electrolyte panel results?

Escalate when potassium or sodium is critically abnormal, trends are worsening with vomiting or weakness, metabolic acidosis or alkalosis patterns appear with instability, or critical laboratory flags are present โ€” according to facility policy.

Can medicines affect electrolyte panel results?

Yes. standard clinical references lists diuretics, antacids, steroids, antibiotics, and chemotherapy among medicines that may affect electrolytes. Never stop medicines without prescriber guidance.

References

References
  1. U.S. National Library of Medicine. Electrolyte Panel. MedlinePlus Medical Test.
    https://medlineplus.gov/lab-tests/electrolyte-panel/
  2. Lewis JL; Bienstock JL; Montano ET. Overview of Electrolytes. Merck Manual Professional Edition.
    https://www.merckmanuals.com/professional/endocrine-and-metabolic-disorders/electrolyte-disorders/overview-of-electrolytes
  3. Seifter JL. Acid-Base Disorders. StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing.
    https://www.ncbi.nlm.nih.gov/books/NBK482124/
  4. National Heart, Lung, and Blood Institute. Blood Tests. U.S. Department of Health and Human Services.
    https://www.nhlbi.nih.gov/health/blood-tests
  5. National Institute of Diabetes and Digestive and Kidney Diseases. Acute Kidney Injury. NIH.
    https://www.niddk.nih.gov/health-information/kidney-disease/acute-kidney-injury
  6. National Institute of Diabetes and Digestive and Kidney Diseases. Diabetic Ketoacidosis. NIH.
    https://www.niddk.nih.gov/health-information/diabetes/overview/whos-at-risk-type-2-diabetes/diabetic-ketoacidosis
  7. Kraut JA, Madias NE. Metabolic Acidosis. StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing.
    https://www.ncbi.nlm.nih.gov/books/NBK482146/
  8. National Institute of Diabetes and Digestive and Kidney Diseases. Chronic Kidney Disease Tests & Diagnosis. NIH.
    https://www.niddk.nih.gov/health-information/kidney-disease/chronic-kidney-disease-ckd/tests-diagnosis

Editorial Standards & Medical Review

About the author: Sid A. Abdala Balal, RN, writes evidence-based nursing education focused on diagnostic safety, clinical interpretation, and bedside nursing judgment.

Medical review: This guide is reviewed by Dr. Adam Sayedi, MD, for clinical accuracy, diagnostic safety, and alignment with current standards for Electrolyte Panel.

Policies: Medical Review Process ยท Editorial Policy ยท Correction Policy