ObjectiveEndovascular surgery has revolutionized the treatment of aortic aneurysms; however, these improvements have come at the cost of increased radiation and contrast exposure, particularly for more complex procedures. Three-dimensional (3D) fusion computed tomography (CT) imaging is a new technology that may facilitate these repairs. The purpose of this analysis was to determine the effect of using intraoperative 3D fusion CT on the performance of fenestrated endovascular aortic repair (FEVAR).MethodsOur institutional database was reviewed to identify patients undergoing branched or FEVAR. Patients treated using 3D fusion CT were compared with patients treated in the immediate 12-month period before implementation of this technology whe...
ObjectivesThe endovascular management of abdominal aortic aneurysm (AAA) relies on accurate preopera...
ObjectiveTo evaluate exposure to radiation during endovascular aneurysm repair (EVAR) performed with...
Purpose: To validate a new 2D-3D registration method of fusion imaging during aortic repair in a sys...
ObjectiveEndovascular surgery has revolutionized the treatment of aortic aneurysms; however, these i...
Purpose: To systematically review and meta-analyze the added value of 3-dimensional (3D) image fusio...
ObjectivesTo evaluate the effect of intraoperative guidance by means of live fluoroscopy image fusio...
Purpose: To determine if image fusion will reduce contrast volume, radiation dose, and fluoroscopy a...
Objectives: To evaluate the effect of intraoperative guidance by means of live fluoroscopy image fus...
PURPOSE: To compare the accuracy of two-dimensional (2D) versus three-dimensional (3D) image fusion ...
Image fusion (IF) of preoperative computed tomography (CT) with intraoperative cone-beam CT (CBCT) i...
OBJECTIVES: Fenestrated endovascular aneurysm repair (FEVAR) exposes operators and patients to consi...
none8siImprovements in endovascular technologies and development of custom-made fenestrated and bran...
Practitioners of endovascular surgery have historically utilized two-dimensional (2D) intraoperative...
Imaging is an integral part of an aortic program. Careful preoperative planning is essential to succ...
Introduction: The use of image fusion in the hybrid operating room is increasingly used. Image fusio...
ObjectivesThe endovascular management of abdominal aortic aneurysm (AAA) relies on accurate preopera...
ObjectiveTo evaluate exposure to radiation during endovascular aneurysm repair (EVAR) performed with...
Purpose: To validate a new 2D-3D registration method of fusion imaging during aortic repair in a sys...
ObjectiveEndovascular surgery has revolutionized the treatment of aortic aneurysms; however, these i...
Purpose: To systematically review and meta-analyze the added value of 3-dimensional (3D) image fusio...
ObjectivesTo evaluate the effect of intraoperative guidance by means of live fluoroscopy image fusio...
Purpose: To determine if image fusion will reduce contrast volume, radiation dose, and fluoroscopy a...
Objectives: To evaluate the effect of intraoperative guidance by means of live fluoroscopy image fus...
PURPOSE: To compare the accuracy of two-dimensional (2D) versus three-dimensional (3D) image fusion ...
Image fusion (IF) of preoperative computed tomography (CT) with intraoperative cone-beam CT (CBCT) i...
OBJECTIVES: Fenestrated endovascular aneurysm repair (FEVAR) exposes operators and patients to consi...
none8siImprovements in endovascular technologies and development of custom-made fenestrated and bran...
Practitioners of endovascular surgery have historically utilized two-dimensional (2D) intraoperative...
Imaging is an integral part of an aortic program. Careful preoperative planning is essential to succ...
Introduction: The use of image fusion in the hybrid operating room is increasingly used. Image fusio...
ObjectivesThe endovascular management of abdominal aortic aneurysm (AAA) relies on accurate preopera...
ObjectiveTo evaluate exposure to radiation during endovascular aneurysm repair (EVAR) performed with...
Purpose: To validate a new 2D-3D registration method of fusion imaging during aortic repair in a sys...