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Objective: Ruptured blister, dissecting, and iatrogenic pseudoaneurysms are rare pathologies that pose significant challenges from a treatment standpoint. Endovascular treatment via flow diversion represents an increasingly popular option; however, drawbacks include the requirement for dual antiplatelet therapy and the potential for thromboembolic complications, particularly acute complications in the ruptured setting. The Pipeline Flex embolization device with Shield Technology (PED-Shield) offers reduced material thrombogenicity, which may aid in the treatment of ruptured internal carotid artery pseudoaneurysms.
Methods: The authors conducted a multi-institution, retrospective case series to determine the safety and efficacy of PED-Shield for the treatment of ruptured blister, dissecting, and iatrogenic pseudoaneurysms of the internal carotid artery. Clinical, radiographic, treatment, and outcomes data were collected.
Results: Thirty-three patients were included in the final analysis. Seventeen underwent placement of a single device, and 16 underwent placement of two devices. No thromboembolic complications occurred. Four patients were maintained on aspirin alone, and all others were treated with long-term dual antiplatelet therapy. Among patients with 3-month follow-up, 93.8% had a modified Rankin Scale score of 0-2. Complete occlusion at follow-up was observed in 82.6% of patients.
Conclusions: PED-Shield represents a new option for the treatment of ruptured blister, dissecting, and iatrogenic pseudoaneurysms of the internal carotid artery. The reduced material thrombogenicity appeared to improve the safety of the PED-Shield device, as this series demonstrated no thromboembolic complications even among patients treated with only single antiplatelet therapy. The efficacy of PED-Shield reported in this series, particularly with placement of two devices, demonstrates its potential as a first-line treatment option for these pathologies.
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http://dx.doi.org/10.3171/2023.2.FOCUS233 | DOI Listing |
Interv Neuroradiol
September 2025
J.J. Merland Department of Therapeutic Neuroangiography, University General Hospital of Catalonia and Hospital del Mar, Barcelona, Spain.
Background and purposeThis study presents our initial experience using Obtura, a novel nonadhesive liquid embolic agent with extra-low viscosity variants, in transvenous curative embolization of brain arteriovenous malformations (bAVMs). We assess the agent's performance and compare its advantages with other extra-low viscosity options currently available.Materials and methodsFive patients (three females, two males; mean age, 33 years; range, 20-55 years) with ruptured bAVMs were treated using the transvenous retrograde pressure cooker technique (TVRPCT).
View Article and Find Full Text PDFInterv Neuroradiol
September 2025
Department of Neuroradiology, Queen's Hospital, Greater London, UK.
The Nautilus intrasaccular system (EndoStream Medical, Israel) is a spiral-shaped neck-bridging endovascular device designed to support coiling of intracranial aneurysms [1-3]. It is deployed into the aneurysm sac through a 0.0165" or 0.
View Article and Find Full Text PDFJ Neurosurg Anesthesiol
September 2025
Anesthesiology, University of Michigan, Ann Arbor, MI.
Background: Carotid blowout syndrome (CBS) is a life-threatening emergency involving the rupture of the carotid arteries and/or branches, often following surgery and radiotherapy for head and neck cancer. Our case series aimed to describe airway management strategies, endovascular and surgical approaches, perioperative resuscitation management, and clinical outcomes in a cohort of patients with CBS at a tertiary referral academic health center.
Methods: We retrospectively identified patients presenting with CBS between 2017 and 2021.
Background: Achilles tendon ruptures are common, particularly in active individuals, and significantly affect function. Controversy persists over whether conservative or surgical treatment offers superior outcomes.
Objective: To compare conservative and surgical treatments for Achilles tendon rupture regarding rerupture rates, functional recovery, and complication incidence.
Front Oncol
August 2025
The First Clinical School of Nanjing University of Chinese Medicine, Nanjing, China.
Ferroptosis is a regulated, non-apoptotic form of cell death marked by the accumulation of iron-dependent lipid peroxides. This process causes rapid rupture of the plasma membrane and the release of intracellular contents. Ferroptosis acts as an intrinsic tumor-suppressive mechanism.
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