@inproceedings{3b0f1a80613a4a1282e0c173c8844c83,
title = "Progress in the development of a new angiography suite including the high resolution Micro-Angiographic Fluoroscope (MAF), a Control, Acquisition, Processing, and Image Display System (CAPIDS), and a new detector changer integrated into a commercial C-arm angiography unit to enable clinical use",
abstract = "Due to the high-resolution needs of angiographic and interventional vascular imaging, a Micro-Angiographic Fluoroscope (MAF) detector with a Control, Acquisition, Processing, and Image Display System (CAPIDS) was installed on a detector changer which was attached to the C-arm of a clinical angiographic unit. The MAF detector provides high-resolution, high-sensitivity, and real-time imaging capabilities and consists of a 300 μm-thick CsI phosphor, a dual stage micro-channel plate light image intensifier (LII) coupled to a fiber optic taper (FOT), and a scientific grade frame-transfer CCD camera, providing an image matrix of 1024×1024 35 μm square pixels with 12 bit depth. The Solid-State X-Ray Image Intensifier (SSXII) is an EMCCD (Electron Multiplying charge-coupled device) based detector which provides an image matrix of 1k×1k 32 μm square pixels with 12 bit depth. The changer allows the MAF or a SSXII region-of-interest (ROI) detector to be inserted in front of the standard flat-panel detector (FPD) when higher resolution is needed during angiographic or interventional vascular imaging procedures. The CAPIDS was developed and implemented using LabVIEW software and provides a user-friendly interface that enables control of several clinical radiographic imaging modes of the MAF or SSXII including: fluoroscopy, roadmapping, radiography, and digital-subtraction-angiography (DSA). The total system has been used for image guidance during endovascular image-guided interventions (EIGI) using prototype self-expanding asymmetric vascular stents (SAVS) in over 10 rabbit aneurysm creation and treatment experiments which have demonstrated the system's potential benefits for future clinical use.",
keywords = "CAPIDS, DA, DSA, Detector-changer, Fluoroscope, LabVIEW, MAF, Roadmap, SSXII, SYS",
author = "Weiyuan Wang and Ionita, \{Ciprian N.\} and Christos Keleshis and Andrew Kuhls-Gilcrist and Amit Jain and Daniel Bednarek and Stephen Rudin",
year = "2010",
doi = "10.1117/12.844909",
language = "English",
isbn = "9780819480231",
series = "Progress in Biomedical Optics and Imaging - Proceedings of SPIE",
number = "PART 3",
booktitle = "Medical Imaging 2010",
edition = "PART 3",
note = "Medical Imaging 2010: Physics of Medical Imaging ; Conference date: 15-02-2010 Through 18-02-2010",
}