๐Ÿงช Lab Test (Point-of-Care Coagulation) ๐Ÿงซ Whole blood (device-specific point-of-care sample)

Activated Clotting Time (ACT): Nursing Guide

Bedside activated clotting time supports high-dose unfractionated heparin monitoring during cardiopulmonary bypass, coronary angioplasty, ECMO, and selected dialysis settings โ€” where nurses must obtain immediate whole-blood samples, follow device-specific targets, and escalate bleeding or clotting trends that do not match the clinical picture.

13 min read
Updated June 20, 2026
Medically Reviewed

Quick Facts

Category
Point-of-care coagulation
Why it is ordered
Monitor high-dose unfractionated heparin during procedures
Main nursing risk
Subtherapeutic ACT โ†’ clotting
Turnaround
Minutes

Key Takeaway

ACT reflects how long whole blood takes to clot after an activator is added โ€” higher seconds mean greater heparin effect.

Specimen & Collection Details

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

Tube / container

Device-specific cartridge or sample cup

Per analyzer instructions (not a standard central-lab vacutainer)

Specimen type

Whole blood (device-specific point-of-care sample)

Volume required

Small whole-blood volume per device cartridge โ€” follow manufacturer and local point-of-care protocol

Collection timing

After heparin bolus, at ordered intervals during the procedure, and until stabilized post-procedure per institutional protocol

Fasting required

No special preparation is usually required

Transport / storage

Test immediately at point of care; sample is not stable for routine central-lab transport

Turnaround time

Minutes at bedside

Lab section

Point-of-care coagulation (operating room, cath lab, ICU, dialysis unit)

What is Activated Clotting Time (ACT)?

Activated Clotting Time (ACT) is a point-of-care coagulation test that measures how many seconds it takes whole blood to clot after an intrinsic-pathway activator (such as celite, kaolin, or glass beads) is added. It reflects the inhibitory effect of high-dose unfractionated heparin โ€” and some direct thrombin inhibitors โ€” on clot formation, rather than measuring heparin concentration directly.

Overview

Nurses most often encounter ACT in perioperative cardiac care, the catheterization laboratory, ECMO circuits, and selected dialysis settings where heparin doses are high enough that standard laboratory aPTT monitoring is not clinically useful or is too slow. The test must be performed immediately beside the patient because results are time-critical and the specimen is not suitable for routine transport to a central laboratory.

Because different analyzers use different activators and detection methods, ACT values are not interchangeable between devices or institutions. A result that meets target on one machine may not translate to another. Nurses support safe anticoagulation by confirming the correct protocol, documenting device and timing, communicating trends, and watching for bleeding or thrombosis even when the numeric ACT appears acceptable.

Clinical Nursing Focus

Before and during ACT monitoring, confirm the correct patient, heparin infusion or bolus plan, and institution-specific ACT target for the procedure and analyzer in use. Obtain the sample immediately at the point of care, communicate subtherapeutic or supratherapeutic trends to the perfusionist, anesthesiologist, or prescriber per protocol, and escalate active bleeding or new clotting concerns according to facility policy.

Perioperative Anticoagulation Monitoring Safety

ACT guides high-stakes anticoagulation where both clotting and bleeding can cause rapid harm. A single subtherapeutic value during bypass or ECMO may precede circuit thrombosis; supratherapeutic values with hemorrhage require urgent team response. Never equate ACT seconds across different devices or with aPTT results.

Highest-risk scenarios
  • Subtherapeutic ACT during cardiopulmonary bypass, PCI, or ECMO with circuit pressure changes or thrombosis signs
  • Supratherapeutic ACT with active bleeding, falling hemoglobin, or hemodynamic instability
  • Invalid or delayed sample sent to wrong analyzer while heparin decisions are pending
  • Using ACT to monitor low-dose ward heparin when aPTT or anti-Xa is the ordered assay

Document: device and cartridge, sample time and site, ACT in seconds, institutional target used, heparin dose context, who was notified, and bleeding or clotting observations.

What ACT Can and Cannot Tell You

This test can help identify:

  • Whether high-dose unfractionated heparin is exerting sufficient anticoagulant effect at the bedside
  • Trends in anticoagulation during bypass, PCI, ECMO, and selected dialysis protocols
  • When repeat sampling or heparin adjustment discussion is needed relative to institutional targets
  • Response context for some direct thrombin inhibitor protocols when ACT is used per local policy

This test cannot:

  • Measure actual heparin concentration or replace anti-Xa when that is the ordered assay
  • Be compared directly to aPTT values or converted between different point-of-care devices
  • Diagnose thrombosis or bleeding alone โ€” clinical and circuit monitoring remain essential
  • Serve as the primary monitor for routine low-dose IV heparin on general wards per reviewed references

POC Device and Line Checks Before ACT

Verify

โœ“Correct patient, procedure, and ACT monitoring order
โœ“Correct point-of-care device, cartridges, and institutional target range
โœ“Heparin bolus/infusion documented and timing aligned with sample plan
โœ“Quality-control status of analyzer per point-of-care policy
โœ“Vascular access patency and sample technique readiness
โœ“Bleeding and clotting baseline assessment documented

Clarify before proceeding when:

  • Order specifies aPTT or anti-Xa but team is using ACT without protocol approval
  • Wrong analyzer or expired cartridge is available at bedside
  • Heparin infusion rate change is undocumented or conflicting among team members
  • Prior ACT invalid because of air bubble, clot, or insufficient sample volume
  • ACT result conflicts with visible bleeding, circuit clotting, or pressure alarms
  • Patient temperature or hemodilution changed significantly during bypass without protocol review
  • Attempt is made to send ACT sample to central laboratory instead of immediate bedside testing

ACT Values With Heparin and Bleeding Context

Integrate ACT with heparin dose and timing, device-specific targets, circuit or access observations, hemoglobin trend, platelet count, temperature, and procedural phase. Serial trends on the same analyzer matter more than one isolated value.

Clinical contextPair with ACT trendNursing focus
CPB on bypassACT below target with rising line pressuresUrgent perfusionist notification; prepare for authorized heparin adjustment
Post-protamine reversalACT not shortening toward baselineEscalate bleeding risk; surgical hemostasis and repeat coagulation assessment
PCI / cath labACT above target with groin oozingAccess-site monitoring; communicate to cardiologist per protocol
ECMO maintenanceStable ACT within target; patient stableContinue ordered interval monitoring; still assess circuit and perfusion
โ†” On a small screen, swipe or scroll sideways to see the full table.

Point-of-Care ACT at the Bedside

Bedside pointNursing note
Same device ruleNever compare today’s Hemochron ACT to yesterday’s i-STAT ACT โ€” trends must use one analyzer
Sample immediacyDelayed cartridge insertion falsely shortens ACT; draw and run sample without interruption
ACT vs aPTTCommon NCLEX trap: they monitor heparin effect differently and are not interchangeable
Ward heparin dripACT is usually wrong test for standard IV heparin titration โ€” verify aPTT order
Hypothermia on bypassCool blood may affect ACT; follow cardiac protocol rather than guessing correction factors
Protamine timingDocument ACT after reversal โ€” prolonged ACT with bleeding triggers surgical escalation
โ†” On a small screen, swipe or scroll sideways to see the full table.

Perioperative ACT Monitoring Workflow

Diagnostic safety badge: Critical-result test โ€” prompt review and escalation may be required during high-dose heparin procedures.

Check-before-test protocol

  1. Identity + procedure + correct ACT device and target
  2. Heparin bolus/infusion verified with perfusion or prescriber
  3. Point-of-care quality control current
  4. Sample plan aligned with protocol intervals
  5. Bleeding and circuit baseline documented

Critical teach-back questions

  • “Can you tell me why we are checking your blood clotting time during this procedure?”
  • “What access-site or bleeding changes should you report after surgery?”
  • “Why might the team take several small blood samples while you are on the bypass machine?”

Care coordination: perfusionist, anesthesiologist, cardiothoracic surgery, cath-lab team, ECMO team, laboratory/point-of-care services, nephrology for dialysis, and rapid response per institutional protocol.

ACT Quick Practice Checklist

  • Is this the correct monitoring test for the heparin dose and clinical setting?
  • Am I using the institution-approved device and target for this procedure?
  • Was the sample obtained and run immediately without pre-analytic delay?
  • Does the ACT trend match circuit observations, access sites, and hemodynamics?
  • Who must be notified now if ACT is out of range or invalid?

Why Activated Clotting Time (ACT) is Ordered

ACT is ordered when clinicians need rapid bedside assessment of high-dose heparin effect during procedures that require intense, short-term anticoagulation.

Clinical Indication What the Test Answers Nursing Rationale
Cardiopulmonary bypass surgery Is heparin anticoagulation adequate to prevent clotting in the bypass circuit? Supports heparin bolus and infusion titration before and during bypass; ACT monitoring is commonly used in this setting per institutional cardiac surgery protocols.
Percutaneous coronary intervention (PCI) Is anticoagulation sufficient during the intervention without excess bleeding risk? Allows rapid dose adjustment in the catheterization laboratory when high-dose heparin is required and aPTT turnaround is too slow.
Extracorporeal membrane oxygenation (ECMO) Is circuit anticoagulation maintained within protocol while limiting hemorrhage? Frequent bedside monitoring supports circuit patency and bleeding surveillance in critically ill patients on extracorporeal support.
Hemodialysis with heparin anticoagulation Is heparin effect adequate for the dialysis session and reversal plan? May guide heparin dosing and protamine reversal in selected dialysis protocols โ€” always follow local dialysis and nephrology policy.
โ†” On a small screen, swipe or scroll sideways to see the full table.

Contraindications and Precautions

ACT is a monitoring test rather than a standalone treatment decision. Nurses focus on situations requiring clarification before relying on the result or proceeding with anticoagulation changes.

When ACT may be unreliable or unsafe to act on alone
  • Wrong analyzer, expired cartridge, or incorrect sample technique โ€” repeat per point-of-care quality protocol before dose changes.
  • Active hemorrhage, hemodynamic instability, or suspected circuit clotting despite apparently therapeutic ACT โ€” escalate clinically, not by number alone.
  • Attempt to use ACT to monitor low- or moderate-dose ward heparin when institutional policy requires aPTT or anti-Xa โ€” clarify the ordered monitoring test.
Pre-analytic and patient factors
  • Heparin-induced thrombocytopenia, severe thrombocytopenia, or platelet dysfunction may prolong ACT independently of heparin dose.
  • Hypothermia, hemodilution, and blood temperature changes during bypass may affect ACT and device performance.
  • Lupus anticoagulant and other coagulation abnormalities may complicate interpretation when ACT is used outside standard high-dose heparin settings.
Escalate If
  • ACT below institutional target during bypass, ECMO, or PCI with signs of circuit clotting or thrombosis.
  • ACT above target with active bleeding, falling hemoglobin, hemodynamic instability, or surgical site hemorrhage.
  • Rapidly changing ACT trend that does not match clinical status, or inability to obtain a valid point-of-care result when anticoagulation decisions are pending.

Patient Preparation

Most ACT testing requires no fasting or special patient preparation. Preparation focuses on correct device setup, heparin orders, and point-of-care competency per institutional policy.

Pre-test checks
โœ“Verify patient identity, procedure, and heparin/anticoagulation orders.
โœ“Confirm the correct ACT analyzer, cartridge lot, and institutional target range.
โœ“Review allergy history, bleeding risk, and recent anticoagulant or antiplatelet medicines.
โœ“Ensure point-of-care device calibration and quality-control checks are current per policy.
โœ“Prepare arterial or venous access site per protocol; maintain sterile technique when required.
โœ“Communicate baseline ACT timing relative to heparin bolus to the procedural team.
Medications to Review or Hold

Review unfractionated heparin infusion rate, recent boluses, protamine availability, direct thrombin inhibitors (e.g., bivalirudin when ACT is used per protocol), antiplatelet agents, and other anticoagulants. Do not independently change prescribed anticoagulation without authorization โ€” communicate ACT trends to the responsible clinician or perfusion team.

Performance โ€” nursing procedure guide

This page is a Tests & Diagnostics guide for Activated Clotting Time (ACT). 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

ACT is reported in seconds. A higher ACT generally indicates greater anticoagulation (longer time to clot). Targets are procedure- and institution-specific; nurses apply the local protocol rather than memorizing universal thresholds.

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 expected range or therapeutic target Non-heparinized baseline varies by analyzer โ€” Turnaround and screening rules vary by institution; follow local institutional policy as a single universal range Little or no heparin effect on clotting at time of sample Expected before heparin bolus; after reversal, confirm protamine effect per protocol
Near therapeutic target / borderline Near institutional lower or upper protocol limit May require repeat ACT, heparin adjustment, or additional clinical assessment Communicate trend to procedural team; repeat sample if pre-analytic error suspected
Prolonged / above target Above institutional therapeutic target Greater anticoagulation than protocol goal โ€” increased bleeding risk Notify prescriber/perfusion team per protocol; intensify bleeding surveillance
Shortened / below target Below institutional therapeutic target Insufficient anticoagulation for the procedure โ€” increased clotting risk in circuit or access Escalate immediately per bypass/ECMO/PCI protocol; prepare for additional heparin only as ordered
โ†” On a small screen, swipe or scroll sideways to see the full table.

Protocol Targets, Critical Results and Escalation

Critical ACT thresholds are institution- and device-specific. The clinical context โ€” active bleeding, circuit clotting, or hemodynamic change โ€” often matters more than a single second value.

Critical Finding Threshold / Value Immediate Action
Subtherapeutic ACT during high-dose heparin procedure Below institutional target with procedural anticoagulation required Notify perfusionist/prescriber immediately; monitor for circuit or access thrombosis per protocol
Supratherapeutic ACT with hemorrhage Above target with active bleeding or hemodynamic compromise Escalate according to facility policy; prepare for reversal agents only as authorized
ACT not returning toward baseline after reversal Persistent prolongation after protamine or heparin cessation per protocol Communicate to surgical/anesthesia team; continue bleeding surveillance and repeat testing as ordered
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 develops uncontrolled bleeding, suspected circuit clotting, stroke or limb ischemia signs, or when ACT results conflict strongly with the clinical picture.

Factors Affecting Results

ACT is highly device- and technique-dependent. Pre-analytic errors and patient factors can mislead anticoagulation decisions if not recognized.

False Positives
  • Prolonged ACT from thrombocytopenia or platelet dysfunction rather than excess heparin
  • Prolonged ACT after hypothermia or hemodilution during bypass without true supratherapeutic heparin
  • Different analyzer or cartridge type compared with prior values โ€” apparent change may be methodological
False Negatives
  • Short ACT from inadequate sample volume, clots in line, or delayed cartridge insertion
  • ACT within target while clinical clotting develops in circuit โ€” test does not replace visual and pressure monitoring
  • Using ACT to assess low-dose heparin when aPTT or anti-Xa is the appropriate assay
Interfering Factors
  • Heparin dose and timing relative to sample collection
  • Platelet count, platelet function, and antiplatelet medicines
  • Temperature, hematocrit, and analyzer-specific activator system
Test Limitations

ACT and aPTT are not interchangeable; correlation is poor in overlapping ranges. Different point-of-care devices produce different results for the same blood sample. ACT is generally reserved for high-dose heparin settings and is not recommended as the primary monitor for low- to moderate-dose heparin in general ward or ICU patients per reviewed references.

Nursing Responsibilities

Nursing responsibilities center on immediate sampling, accurate device use, trend communication, and bleeding or clotting surveillance during high-risk anticoagulation.

Before the Test
โœ“Review indication, heparin orders, and institutional ACT target for the procedure
โœ“Verify point-of-care device readiness, cartridges, and quality-control status
โœ“Confirm vascular access and coordinate baseline ACT timing after heparin bolus
โœ“Assess bleeding risk, antiplatelet therapy, protamine availability per protocol, and recent anticoagulant history
During the Test
โœ“Obtain samples at ordered intervals without delay to analyzer
โœ“Report ACT trends and invalid results to the procedural team immediately
โœ“Monitor perfusion pressures, circuit observations, access sites, and hemodynamics
After the Test
โœ“Continue ACT or aPTT monitoring per reversal protocol until stabilized
โœ“Monitor for bleeding from surgical sites, lines, and mucosal surfaces
โœ“Document serial ACT values, heparin adjustments, protamine reversal when ordered, and all notifications
โœ“Reinforce symptom reporting if patient is awake during recovery

Documentation

Documentation should support anticoagulation traceability and communication during high-risk procedures.

Example Nursing Note

“ACT 412 sec at 0914 (Hemochron cartridge; met institutional CPB target per protocol) drawn from arterial line 3 min after weight-based heparin bolus. Result communicated to perfusionist; no heparin change ordered. Patient hemodynamically stable; no active bleeding observed. Next ACT due per protocol.”

Key Documentation Points
  • Date, time, access site, device, and cartridge type
  • ACT result in seconds and institutional target range used
  • Heparin bolus/infusion rate and time since last dose change
  • Who was notified and response per protocol
  • Bleeding or clotting observations and hemodynamic trends
  • Repeat or invalid sample actions and quality-control notes

Patient and Family Education

Many ACT patients are anesthetized during testing; teaching applies to awake cath-lab or ECMO patients and family when appropriate.

โœ“Explain that ACT is a quick bedside clotting test used to keep blood thin enough during the procedure
โœ“Describe that repeated small blood samples are normal during bypass or ECMO monitoring
โœ“After procedure, explain that bruising at access sites may occur and should be reported if expanding
โœ“Teach signs of bleeding to report: dizziness, swelling at groin/wrist access, bloody drainage, confusion
โœ“Clarify that nurses and doctors adjust heparin based on trends, not one number alone
โœ“Reinforce that protamine or other reversal agents are given only by the care team per protocol
๐Ÿ“š

Activated Clotting Time (ACT) NCLEX practice questions

Practice NCLEX-style clinical judgment focused on Activated Clotting Time (ACT) 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: ACT โ€” point-of-care, serial monitoring during cardiopulmonary bypass
  • Indication: Coronary artery bypass surgery; unfractionated heparin per CPB protocol
  • Timing: Baseline ACT due 3 minutes after heparin bolus; q30min per protocol
  • Related orders: Weight-based heparin bolus per CPB protocol; ACT target per institutional nomogram; CBC post-bypass
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 before routine monitoring continues? Select all that apply

Question 3 โ€” Trend interpretation

Which trends should the nurse recognize as concerning during bypass ACT monitoring?

Trend snapshot
Downward ACT trend over 30 minutes; heparin infusion rate unchanged

Select all that apply

Question 4 โ€” Matrix judgment

Classify each finding for this bypass patient:

Finding Expected โ€” document and continue monitoring Requires follow-up โ€” notify team / repeat test Urgent โ€” immediate escalation
ACT within protocol target; stable hemodynamics
ACT below target with rising circuit pressure
One rejected sample due to air bubble; immediate repeat drawn
Active hemorrhage from surgical site with supratherapeutic ACT

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

Question 5 โ€” Clinical judgment

The perfusionist asks whether the nurse can compare today’s ACT to yesterday’s ICU aPTT to guide heparin. What is the best response?

Question 6 โ€” Documentation (cloze)

Which documentation element is highest priority immediately after a valid subtherapeutic ACT during bypass?

The highest-priority documentation action is .

Question 7 โ€” Workflow (ordered response)

During bypass, ACT is subtherapeutic. Rank nursing actions (1 = first).

  1. Notify perfusionist and prescriber with ACT value, time, and circuit observations
  2. Document subtherapeutic ACT, notification, and repeat plan per protocol
  3. Obtain repeat ACT on the same device without delay when ordered
  4. Reassess the patient, verify the order and identity, and prepare for prescriber follow-up
Question 8 โ€” Evaluate outcomes

After bypass, ACT remains prolonged and surgical site oozing increases. What is the best action?

Answer key & rationale

Frequently Asked Questions

FAQ

Why is ACT used instead of aPTT during cardiopulmonary bypass?

At high heparin doses used during bypass and similar procedures, aPTT may be too prolonged to be clinically useful and central-lab turnaround is too slow. ACT is a rapid point-of-care test designed for bedside monitoring when intense anticoagulation is required.

Does the patient need to fast before ACT testing?

No special test preparation is usually required. Per clinical laboratory references, fasting is not required for ACT. Follow procedural NPO orders and institutional point-of-care policy separately.

What does a higher ACT result mean?

ACT is measured in seconds. A higher value generally means longer time to clot and greater heparin anticoagulant effect at the time of sampling. Interpret using institutional targets for the specific procedure and analyzer.

Can nurses use ACT to monitor routine IV heparin on a medical ward?

Generally no. Reviewed references indicate ACT is reserved for high-dose heparin settings such as bypass, PCI, ECMO, and selected dialysis contexts. Low- to moderate-dose heparin is usually monitored with aPTT or anti-Xa per hospital protocol.

Are ACT results the same on every machine?

No. Different point-of-care devices and activators produce different ACT values for the same sample. Institutions must use device-specific protocols and targets validated for each analyzer.

When should nurses escalate ACT results?

Escalate when ACT is below or above institutional target with clotting or bleeding concerns, when trends change rapidly, when samples are invalid, or when results conflict with the patient’s clinical status โ€” according to facility policy.

Is ACT ever sent to the central laboratory?

Rarely. The sample must be tested immediately at the point of care because it is not stable for routine transport to a central laboratory. ACT is a bedside or operating-room test in most practice settings.

References

References
  1. Association for Clinical Biochemistry and Laboratory Medicine. Activated coagulation time (ACT). Lab Tests Online UK.
    https://labtestsonline.org.uk/tests/act
  2. Desai, S. S.; et al. Heparin. StatPearls [Internet]. Treasure Island (FL): StatPearls Publishing; 2026.
    https://www.ncbi.nlm.nih.gov/books/NBK538247/
  3. Olson JD; et al. Laboratory monitoring of unfractionated heparin therapy. Arch Pathol Lab Med. 1998;122(9):782-798.
    https://pubmed.ncbi.nlm.nih.gov/9740136/
  4. Panigada M; et al. Comparison of Point-of-Care Activated Clotting Time Systems Utilized in a Single Pediatric Institution. J Extra Corpor Technol. 2015.
    https://pmc.ncbi.nlm.nih.gov/articles/PMC4557434/
  5. Levy JH; et al. Activated clotting time versus activated partial thromboplastin time for therapeutic monitoring of heparin. Ann Pharmacother. 1996.
    https://pubmed.ncbi.nlm.nih.gov/8845539/
  6. De Waele JJ; et al. The use of the activated clotting time for monitoring heparin therapy in critically ill patients. Intensive Care Med. 2003.
    https://pubmed.ncbi.nlm.nih.gov/12594595/
  7. Schaden E; et al. Activated Clotting Time (ACT) for Monitoring of Low-Dose Heparin: Performance Characteristics in Healthy Adults and Critically Ill Patients. Clin Appl Thromb Hemost. 2020.
    https://pmc.ncbi.nlm.nih.gov/articles/PMC7758671/
  8. A comparison of anti-coagulation monitoring tests in ICU patients receiving a continuous infusion of unfractionated heparin. Sci Rep. 2025.
    https://pmc.ncbi.nlm.nih.gov/articles/PMC11704084/

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 Activated Clotting Time (ACT).

Policies: Medical Review Process ยท Editorial Policy ยท Correction Policy