2d en face octa angiograms Search Results


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Medis qangioxa 7.3
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MathWorks Inc r2019a version
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Philips Healthcare 2d perfusion angiography allura xper fd20
2d Perfusion Angiography Allura Xper Fd20, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Cardialysis bv 2d angiograms
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Respiratory Motion xcat phantom-based 2d desa pulmonary angiograms
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
Xcat Phantom Based 2d Desa Pulmonary Angiograms, supplied by Respiratory Motion, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Siemens Healthineers 2d coronary mr angiogram
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
2d Coronary Mr Angiogram, supplied by Siemens Healthineers, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Siemens AG 2d angiography
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
2d Angiography, supplied by Siemens AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Philips Healthcare 2d perfusion angiography
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
2d Perfusion Angiography, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Wolters Kluwer Health 2d phase-contrast angiograms
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
2d Phase Contrast Angiograms, supplied by Wolters Kluwer Health, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Philips Healthcare interventional workspot
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
Interventional Workspot, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Siemens AG 2d biplane angiography data siemens axiom artis zee angio
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
2d Biplane Angiography Data Siemens Axiom Artis Zee Angio, supplied by Siemens AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Quantificare Inc planar radionuclide angiography (rna)
Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography <t>(DESA)</t> using kV switching (right). In conventional <t>2D</t> mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.
Planar Radionuclide Angiography (Rna), supplied by Quantificare Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography (DESA) using kV switching (right). In conventional 2D mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.

Journal: Proceedings of SPIE--the International Society for Optical Engineering

Article Title: Prototype system for interventional dual-energy subtraction angiography

doi: 10.1117/12.2512956

Figure Lengend Snippet: Data acquisition for conventional time-subtracted DSA (left) versus dual-energy subtraction angiography (DESA) using kV switching (right). In conventional 2D mode, an early mask is subtracted from later contrast-enhanced frames. In conventional 3D mode, a mask rotation is followed by a contrast-enhanced rotation and images are subtracted angle-wise before volume reconstruction. In 2D DESA, mask data is not acquired and subtraction images are formed from low/high energy frame pairs acquired during contrast enhancement. In 3D DESA, the mask rotation is eliminated, and a subtraction volume can be generated either in image space after reconstructing high and low energy volumes, or by reconstructing a set of 2D DESA images formed in projection space.

Article Snippet: Evaluation of inter-frame respiratory motion shows the XCAT phantom-based 2D DESA pulmonary angiograms for 30 frame/s imaging (15 energy pairs/s) with a 60/120 kV switching technique in the cases of the greatest and least severe respiratory motion (t = 0.75 s and t = 4.75 s).

Techniques: Generated

Calculated kV and ms switching techniques for constant iodine CNR in 2D DESA versus background water thickness. The same tube current (right) is used for both frames in a low/high energy pair.

Journal: Proceedings of SPIE--the International Society for Optical Engineering

Article Title: Prototype system for interventional dual-energy subtraction angiography

doi: 10.1117/12.2512956

Figure Lengend Snippet: Calculated kV and ms switching techniques for constant iodine CNR in 2D DESA versus background water thickness. The same tube current (right) is used for both frames in a low/high energy pair.

Article Snippet: Evaluation of inter-frame respiratory motion shows the XCAT phantom-based 2D DESA pulmonary angiograms for 30 frame/s imaging (15 energy pairs/s) with a 60/120 kV switching technique in the cases of the greatest and least severe respiratory motion (t = 0.75 s and t = 4.75 s).

Techniques: