Splenic Artery Embolization: Tips, Tricks, and Current Standards of Practice

Эмболизация селезёночной артерии: советы, приёмы и современные стандарты практики
Lena Khanolkar, Brian M Fagel, Demetrios J Geanon, Claire White-Dzuro, LeAnn S. Stokes, Anthony J. Borgmann, Reza Imani-Shikhabadi, Nicholas Voutsinas
2026-03-12

nontraumatic indications (hypersplenism, thrombocytopenia, portal hypertension)periprocedural technical considerations (vascular access, embolic type, vaccination, imaging, antibiotics)proximal vs distal embolizationsplenic aneurysms and upper gastrointestinal bleedingsplenic artery embolization
The spleen is a vital intra-abdominal organ that provides a role in hematopoietic and immunologic functions. It is highly vascular and is the most commonly injured organ in the setting of blunt trauma, potentially leading to life-threatening hemoperitoneum. Splenic artery embolization (SAE) serves as an alternative to operative management of patients with splenic trauma and has quickly become popular given the infectious risks associated with splenectomy. Since its inception, indications for SAE have evolved beyond the management of traumatic injury. The authors discuss splenic artery anatomy and the importance of maintaining critical collateral pathways when SAE is performed to preserve splenic and distal pancreatic arterial flow and minimize complication risks. An in-depth and evidence-based review of SAE in the setting of trauma is provided, including a comparison between proximal and distal embolization techniques. Nontraumatic indications for splenic embolization to induce splenic involution are covered, including for the treatment of hypersplenism, thrombocytopenia, portal hypertension, and complications of liver transplant such as the small-for-size syndrome and splenic artery steal syndrome. The use of SAE for the treatment of splenic aneurysms and upper gastrointestinal bleeding is also discussed. Periprocedural and intraprocedural technical considerations are covered, such as the routes of vascular access, type of embolic used, role of vaccination, preprocedural imaging, antibiotic therapy, and postprocedural management and complications. <sup>©</sup>RSNA, 2026 Supplemental material is available for this article. See the invited commentary by Montgomery and Elliott in this issue.
1
Indications for SAE have expanded beyond trauma to include hypersplenism, thrombocytopenia, portal hypertension, and post–liver transplant complications (small-for-size syndrome, splenic artery steal syndrome).
2
Peri- and intraprocedural technical factors—vascular access routes, embolic agent choice, vaccination, preprocedural imaging, antibiotics, and postprocedural management—significantly influence SAE outcomes and complication risk.
3
Preserving critical collateral pathways during SAE is important to maintain splenic and distal pancreatic arterial flow and minimize complications.
4
SAE is used for treatment of splenic aneurysms and selected causes of upper gastrointestinal bleeding.
5
Splenic artery embolization (SAE) is an established alternative to operative management for splenic trauma, reducing infectious risks associated with splenectomy.
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The abstract provides an evidence-based comparison of proximal versus distal embolization techniques for traumatic splenic injury.

Splenic artery embolization (SAE) procedures for the spleen

Technical practices, indications, procedural approaches (proximal vs distal), preservation of collateral flow, periprocedural/intraprocedural considerations, complications, and outcomes of SAE for traumatic and nontraumatic splenic conditions

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2026-03-12
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Lena Khanolkar
Brian M Fagel
Demetrios J Geanon
Claire White-Dzuro
LeAnn S. Stokes
Anthony J. Borgmann
Reza Imani-Shikhabadi
Nicholas Voutsinas
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