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Updated: Jul 10, 2025

A Novel Method: Super-selective Adrenal Venous Sampling
Published on: September 15, 2017
Incidence, Presentation, and Natural History of Adrenal Hemorrhage: An Institutional Analysis
Mustafa N Shakir1, Alexis L Woods2, Kiyomi A Sun2
1University of California Davis School of Medicine, Sacramento, California.
Insights
Adrenal hemorrhage (AH) is rare and may indicate an underlying adrenal mass, especially when not caused by trauma. Most cases resolve spontaneously, but follow-up imaging is recommended to rule out neoplasms.
Area of Science:
- Radiology
- Endocrinology
- Oncology
Background:
- Adrenal hemorrhage (AH) is uncommon and can mimic adrenal neoplasms on imaging.
- Existing literature and guidelines for AH management are limited.
- Understanding AH prevalence, causes, and outcomes is crucial.
Purpose of the Study:
- To determine the prevalence and etiology of adrenal hemorrhage (AH).
- To analyze follow-up imaging and the incidence of underlying adrenal neoplasms.
- To evaluate the clinical course and outcomes of patients with AH.
Main Methods:
- Retrospective review of institutional database from January 2006 to October 2021.
- Inclusion criteria: patients with AH on imaging, excluding known malignancies or prior adrenal surgery.
- Data collected: demographics, history, hematoma characteristics, biochemical results, interventions, and follow-up imaging.
Main Results:
- 530 cases (0.11%) of AH identified from 490,301 imaging reports.
- Most AH (91.5%) occurred during trauma evaluations.
- 11% of patients with follow-up showed evidence of an adrenal mass, more common in non-trauma cases (23.1% vs 7.6%).
Conclusions:
- Adrenal hemorrhage (AH) is rare but associated with a higher incidence of underlying adrenal mass, particularly in non-trauma cases.
- The majority of AH cases resolve spontaneously without intervention.
- Follow-up imaging, ideally at 6 months, aids in differentiating mass-associated AH from simple hemorrhage.
Introduction:
Adrenal hemorrhage (AH) can occur due to multiple etiologies with variable radiographic appearance, often indistinguishable from underlying adrenal neoplasms. There is a lack of AH literature and evidence-based guidelines. Our study aimed to understand the prevalence and etiology of AH, follow-up, and incidence of underlying neoplasm.
Methods:
An institutional database was queried from January 2006 to October 2021 for patients with AH on imaging, excluding patients with known malignancies, adrenal masses, or prior adrenal surgery. Demographics, medical history, hematoma size, laterality, biochemical evaluation, intervention, and additional imaging were reviewed.
Results:
Of 490,301 imaging reports queried, 530 (0.11%) with AH met inclusion criteria. Most imaging (n = 485, 91.5%) was performed during trauma evaluation. Two patients underwent dedicated intervention at presentation. Interval imaging was performed in 114 (21.5%) patients at a median of 2.6 (interquartile range 0.99-13.4) mo, with resolution (n = 84, 73.7%) or decreased size of AH (n = 21, 18.4%) in most patients. Only 10 patients (1.9%) saw an outpatient provider in our system to address AH or evaluate for underlying mass, and 9 (1.7%) underwent biochemical screening. Thirteen patients (11% of 118 patients with any follow-up) had evidence of an adrenal mass, confirmed on serial imaging (n = 10) or adrenalectomy (n = 3). Scans performed for nontrauma indications were significantly more likely to have an underlying mass (n = 6/26 [23.1%]) than those performed for trauma evaluation (n = 7/92 [7.6%], P = 0.04).
Conclusions:
AH is a rare finding associated with an increased rate of underlying adrenal mass, particularly when unrelated to trauma. Most AH resolves spontaneously without intervention. Follow-up imaging at 6 mo can help distinguish mass-associated AH from simple hemorrhage.
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