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1.
Neurosurgery ; 87(4): E445-E453, 2020 09 15.
Artigo em Inglês | MEDLINE | ID: mdl-32392300

RESUMO

BACKGROUND: Three-dimensional (3D) printing has revolutionized training, education, and device testing. Understanding the design and physical properties of 3D-printed models is important. OBJECTIVE: To systematically review the design, physical properties, accuracy, and experimental outcomes of 3D-printed vascular models used in neurointervention. METHODS: We conducted a systematic review of the literature between January 1, 2000 and September 30, 2018. Public/Publisher MEDLINE (PubMed), Web of Science, Compendex, Cochrane, and Inspec databases were searched using Medical Subject Heading terms for design and physical attributes of 3D-printed models for neurointervention. Information on design and physical properties like compliance, lubricity, flow system, accuracy, and outcome measures were collected. RESULTS: A total of 23 articles were included. Nine studies described 3D-printed models for stroke intervention. Tango Plus (Stratasys) was the most common material used to develop these models. Four studies described a population-representative geometry model. All other studies reported patient-specific vascular geometry. Eight studies reported complete reconstruction of the circle of Willis, anterior, and posterior circulation. Four studies reported a model with extracranial vasculature. One prototype study reported compliance and lubricity. Reported circulation systems included manual flushing, programmable pistons, peristaltic, and pulsatile pumps. Outcomes included thrombolysis in cerebral infarction, post-thrombectomy flow restoration, surgical performance, and qualitative feedback. CONCLUSION: Variations exist in the material, design, and extent of reconstruction of vasculature of 3D-printed models. There is a need for objective characterization of 3D-printed vascular models. We propose the development of population representative 3D-printed models for skill improvement or device testing.


Assuntos
Modelos Anatômicos , Procedimentos Neurocirúrgicos/tendências , Impressão Tridimensional/tendências , Próteses e Implantes/tendências , Desenho de Prótese/tendências , Humanos , Procedimentos Neurocirúrgicos/métodos , Desenho de Prótese/métodos
2.
J Neurointerv Surg ; 7(6): 453-7, 2015 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-24789594

RESUMO

BACKGROUND: Artificial stroke models can be used for testing various thrombectomy devices. OBJECTIVE: To determine the value of combined stentriever-aspiration thrombectomy compared with the stentriever-alone approach. METHODS: We designed an in vitro model of the intracranial circulation with a focus on the middle cerebral artery (MCA) that closely resembles the human intracranial circulation. After introducing fresh clot in the MCA, we used conventional biplane angiography and microangiographic fluoroscopy to compare recanalization rates and occurrence of emboli in new, unaffected territory for thrombectomy approaches in which a stentriever (Solitaire flow restoration stentriever, Covidien) was used alone or in combination with continuous manual aspiration through a Navien catheter (Covidien). RESULTS: In a total of 22 experiments (11 for each approach), successful clot delivery to the MCA was achieved in all cases. Successful angiographic recanalization (thrombolysis in cerebral infarction score of 2b-3) was achieved more frequently with the combined stentriever-aspiration approach than with the stentriever-alone approach (in 10 vs 4 experiments, p=0.023). Emboli in new territory occurred in three experiments with the stentriever-alone approach, and none were seen with the combined approach (p=0.21). CONCLUSIONS: The combined stentriever-aspiration approach to thrombectomy leads to better angiographic recanalization rates than use of the stentriever alone. Further experiments are needed to test the value of balloon-guide catheters and aspiration performed using other types of catheters and modes of aspiration.


Assuntos
Circulação Cerebrovascular/fisiologia , Artéria Cerebral Média/patologia , Modelos Neurológicos , Stents , Acidente Vascular Cerebral/terapia , Trombectomia/instrumentação , Trombectomia/métodos , Trombose/terapia , Angiografia , Humanos
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