Related Experiment Video
Updated: Jan 8, 2026

Nasolacrimal Lavage as a Treatment for Ocular Surface Toxic Soup Syndrome
Published on: April 25, 2025
Noninvasive diagnosis of deep venous thrombosis. McMaster Diagnostic Imaging Practice Guidelines Initiative
Insights
Noninvasive tests like venous ultrasonography are effective for diagnosing deep venous thrombosis (DVT) in symptomatic patients. However, their accuracy varies in asymptomatic or pregnant individuals, and venography may be needed if results are unclear.
Area of Science:
- Vascular Medicine
- Diagnostic Imaging
- Thrombosis Research
Background:
- Deep venous thrombosis (DVT) diagnosis relies on various methods, with a need for accurate noninvasive techniques.
- Evaluating diagnostic accuracy and safety of withholding anticoagulation for DVT is crucial for patient management.
Purpose of the Study:
- To review noninvasive diagnostic methods for first and recurrent deep venous thrombosis (DVT).
- To provide evidence-based recommendations for DVT diagnosis in symptomatic, asymptomatic, and pregnant patients.
Main Methods:
- Systematic review of accuracy and management studies identified via MEDLINE, personal files, and bibliographies.
- Inclusion of prospective cohort and randomized comparison studies meeting predefined methodologic criteria.
- Analysis of sensitivity, specificity, predictive values, and rates of venous thromboembolism.
Main Results:
- Venous ultrasonography is the most accurate noninvasive test for symptomatic proximal DVT.
- Noninvasive tests show limited accuracy in asymptomatic postoperative patients and for distal DVT.
- Withholding anticoagulation is safe for symptomatic patients with normal serial noninvasive test results.
Conclusions:
- Noninvasive testing is generally sufficient for managing suspected deep venous thrombosis (DVT).
- Consider venography if noninvasive test results are nondiagnostic or conflict with clinical assessment.
Purpose:
To review noninvasive methods for diagnosis of first and recurrent deep venous thrombosis and provide evidence-based recommendations for the diagnosis of deep venous thrombosis in symptomatic, asymptomatic, and pregnant patients.
Data Sources:
Accuracy (comparison with contrast venography) and management (safety of withholding anticoagulants when results were normal) studies that evaluated tests for diagnosis of deep venous thrombosis were identified from a MEDLINE search, personal files, and bibliographies of reviews and original studies.
Study Selection:
Prospective cohort studies (accuracy and management studies) and randomized comparisons (management studies) that satisfied predefined methodologic criteria were included.
Data Extraction:
Sensitivity, specificity, and positive and negative predictive values were determined for accuracy studies. Rates of venous thromboembolism during long-term follow-up of patients with normal results were determined for management studies.
Data Synthesis:
Data from individual studies were combined under a random-effects model. The accuracy of noninvasive tests was compared, with emphasis on within-study comparisons. Recommendations for diagnosis of deep venous thrombosis were developed by a multidisciplinary group and graded according to the strength of the supporting evidence. Venous ultrasonography is the most accurate noninvasive test for the diagnosis of a first symptomatic proximal deep venous thrombosis. However, neither ultrasonography nor impedance plethysmography is accurate in asymptomatic postoperative patients. Venous ultrasonography is less accurate for symptomatic isolated distal (calf) deep venous thrombosis than for proximal deep venous thrombosis, and the clinical utility of venous ultrasonography of the distal veins is uncertain. Withholding anticoagulant therapy in symptomatic patients with suspected deep venous thrombosis who have normal results on serial venous ultrasonography or impedance plethysmography is safe. Diagnosis of recurrent deep venous thrombosis requires evidence of new thrombus formation, such as a new noncompressible venous segment detected by venous ultrasonography, conversion of a normal result on impedance plethysmography to abnormal, or presence of an intraluminal filling defect on venography. Suspected deep venous thrombosis in pregnant patients can usually be managed with serial venous ultrasonography or impedance plethysmography. In symptomatic patients with a suspected first episode of deep venous thrombosis, clinical assessment and D-dimer testing are complementary to testing with venous ultrasonography and impedance plethysmography.
Conclusions:
Patients with suspected deep venous thrombosis can usually be managed with noninvasive testing. However, if the results of this testing are nondiagnostic or are discordant with the clinical assessment, venography should be considered.
Related Concept Videos
05:12Murine Nasal Lavage Fluid Collection without Blood Contamination
03:40Nasolacrimal Lavage as a Treatment for Ocular Surface Toxic Soup Syndrome
04:35Saline Lavage for Sampling of the Canine Nasal Immune Microenvironment
08:47Symptom Assessment of Patients with Allergic Rhinitis Using an Allergen Exposure Chamber
06:49Reduced Itraconazole Concentration and Durations Are Successful in Treating Batrachochytrium dendrobatidis Infection in Amphibians
07:15Intranasal Administration of CNS Therapeutics to Awake Mice

