1.Closed-Circuit Dual-Port Injector System for Fully Automated Contrast Delivery in Diagnostic Cerebral Angiography
Mohammad RASHAD ; Om GANDHI ; Sami ALMASRI ; Suraj DUMASIA ; Nathan YU ; Warda AHMED ; Jaeha KIM ; Giuseppe LANZINO ; Linda BAGLEY ; Omar CHOUDHRI
Neurointervention 2026;21(2):92-102
Purpose:
During diagnostic cerebral angiography, catheter navigation requires manual contrast “puff” injections, while subsequent 2D/3D runs often use automated power injectors. Using power injectors for navigation puffs has not been described. We present a closed-circuit dual-port injector system (Nemoto Press Duo Elite) that integrates both navigation puff delivery and diagnostic run injection into a single automated platform, eliminating all manual tableside contrast handling. A foot pedal interface enables operator-controlled puff timing, potentially reducing contrast waste and air embolism risk while improving single-operator ergonomics with future remote robotic implications.
Materials and Methods:
This retrospective comparative cohort study compared 19 consecutive patients undergoing diagnostic cerebral angiography with foot pedal-controlled puff injections (June–July 2023) to 19 historical controls using manual hand injections (May 2021). Both groups used 90% contrast concentration. Fluoroscopy time, radiation dose, contrast utilization, and safety outcomes were compared.
Results:
Groups were demographically matched (mean age 52.1±14.2 vs. 50.2±12.9 years; 73.7% female). All 38 procedures achieved diagnostic adequacy with no complications. The foot pedal group demonstrated significantly shorter procedure time per vessel (11.5±4.4 vs. 18.9±10.5 min/vessel, P=0.010) with no significant differences in fluoroscopy time (P=0.171), radiation dose (P=0.690), or contrast delivered (88.7±30.9 vs. 88.2±42.5 mL, P=0.966). A trend toward improved contrast efficiency was observed (23.4±9.4 vs. 27.4±10.4 mL/vessel, P=0.226). Despite undergoing significantly more 3D rotational runs (1.3±1.0 vs. 0.6±0.7, P=0.030), the foot pedal group maintained comparable safety metrics, strengthening the non-inferiority findings.
Conclusion
A closed-circuit dual-port injector system integrating automated navigation puff delivery with diagnostic run injection demonstrates non-inferiority to manual injection for diagnostic cerebral angiography, with shorter procedure time per vessel (39% reduction, P=0.010), though interpretation is limited by differences in indication distribution. By eliminating manual tableside contrast handling, this approach enables precise digital contrast accounting and reduces air embolism risk, establishing a foundation for remote and robotic angiography applications.
2.Transulnar Arterial Access for Intra-Operative Cerebral Angiography during Prone Cerebrovascular Surgery
Hasan AHMAD ; Om GANDHI ; Jaskeerat GUJRAL ; Rashad JABARKHEEL ; Sartaaj WALIA ; Sandeep KANDREGULA ; Omar CHOUDHRI
Neurointervention 2026;21(1):35-43
We reviewed our experience using transulnar access (TUA) to obtain intraoperative cerebral angiography during prone surgery for vascular pathology, where conventional transfemoral and transradial access can be difficult. Ten consecutive patients treated between April 2020 and August 2025 were included. Ulnar artery access was obtained in the supine position before the patient was turned prone for surgery, and angiography was performed after the procedure without repositioning. Eight patients had arteriovenous malformations and 2 had dural arteriovenous fistulas. In all cases, intraoperative angiography was successfully completed through the ulnar artery. The mean ulnar artery diameter was 2.4 mm, indicating adequate vessel size for catheterization, and mean fluoroscopy time was 7.5 minutes. No immediate access-site complications occurred, and no case required conversion to another access route. These findings suggest that TUA is technically feasible and may provide a practical option for intraoperative cerebral angiography when prone positioning limits access to traditional arterial sites. Although the study is limited by its small sample size and retrospective design, the consistent procedural success supports further investigation.
3.Vessel Wall Imaging in Angiogram-Negative Diffuse Subarachnoid Hemorrhage Reveals a Ruptured Lenticulostriate Aneurysm
Huy Quang PHI ; Suehyb Ghazi ALKHATIB ; Scott Bruce RAYMOND ; Omar Aftab CHOUDHRI ; Jae Won SONG
Neurointervention 2024;19(2):118-122
A patient presented with acute onset headache and subsequent unconsciousness. The neurologic exam showed left-sided myoclonic jerking and right flaccid hemiparalysis. Noncontrast computed tomography revealed diffuse subarachnoid hemorrhage (SAH) with acute hydrocephalus. Initial digital subtraction angiography (DSA) showed no culprit source for SAH. Repeat DSA on day 7 after initial presentation raised suspicion for left internal carotid artery ophthalmic segment and left lateral lenticulostriate artery (LSA) aneurysms. A magnetic resonance vessel wall imaging (VWI) exam was performed given the presence of multiple potential culprit aneurysms. Vessel wall enhancement around the dome of the left LSA aneurysm suggested rupture, which then facilitated treatment with surgical clipping. LSA aneurysms are exceedingly rare and challenging to treat. Given the associated high degree of morbidity, expedient diagnosis is critical to direct management. VWI could be a valuable tool for detecting ruptured aneurysms in the setting of angiogram-negative SAH.
4.Complications Following Transradial Cerebral Angiography : An Ultrasound Follow-Up Study
Wonki YOON ; Woo Keun KWON ; Omar CHOUDHRI ; Jaegeun AHN ; Hanyong HUH ; Choel JI ; Huy M DO ; Aditya MANTHA ; Sin Soo JEUN
Journal of Korean Neurosurgical Society 2018;61(1):51-59
OBJECTIVE: The feasibility and usefulness of transradial catheterization for coronary and neuro-intervention are well known. However, the anatomical change in the catheterized radial artery (RA) is not well understood. Herein, we present the results of ultrasonographic observation of the RA after routine transradial cerebral angiography (TRCA).METHODS: Patients who underwent routine TRCA with pre- and post-procedure Doppler ultrasonography (DUS) of the catheterized RA were enrolled. We then recorded and retrospectively reviewed the diameter and any complicated features of the RA observed on DUS, and the factors associated with the diameter and complications were analyzed.RESULTS: A total of 223 TRCAs across 181 patients were enrolled in the current study. The mean RA diameter was 2.48 mm and was positively correlated with male gender (p < 0.001) and hypertension (p < 0.002). The median change in diameter after TRCA was less than 0.1 mm (range, -1.3 to 1.2 mm) and 90% of changes were between -0.8 and +0.7 mm. Across 228 procedures, there were 12 cases (5.3%) of intimal hyperplasia and 22 cases (9.6%) of asymptomatic local vascular complications found on DUS. Patients with abnormal findings on the first procedure had a smaller pre-procedural RA diameter than that of patients without findings (2.26 vs. 2.53 mm, p=0.0028). There was no significant difference in the incidence of abnormal findings for the first versus subsequent procedures (p=0.68).CONCLUSION: DUS identified the pre- and post-procedural diameter and local complications of RA. Routine TRCA seems to be acceptable with regard to identifying local complications and changes in RA diameter.
Catheterization
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Catheters
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Cerebral Angiography
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Follow-Up Studies
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Humans
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Hyperplasia
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Hypertension
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Incidence
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Male
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Radial Artery
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Retrospective Studies
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Ultrasonography
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Ultrasonography, Doppler

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