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SCANCO USA INC animal ct scanner scanco medical ag vivact 80
Animal Ct Scanner Scanco Medical Ag Vivact 80, supplied by SCANCO USA INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scanco+vivact+80/animal+ct+scanner+scanco+medical+ag+vivact+80/pm40519000-509-24-27
Average 90 stars, based on 1 article reviews
animal ct scanner scanco medical ag vivact 80 - by Bioz Stars, 2026-09
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Article Title: Lowering circulating apolipoprotein E levels improves aged bone fracture healing
Article Snippet: Fracture calluses were dissected and fixed in 10% Zn-formalin at room temperature for 5 days. μCT analysis was conducted using a Scanco vivaCT 80 (Scanco Medical) at a scan resolution of 8 μm.

Article Title: The impact of age and sex on the inflammatory response during bone fracture healing
Article Snippet: For μCT analysis, fracture calluses were dissected and fixed in 10% Zn-formalin at room temperature for 5 days. μCT analysis was conducted using a Scanco vivaCT 80 (Scanco Medical, Brüttisellen, Switzerland) at a scan resolution of 8 μm.

Article Title: Complex Treatment of a Coronary Bifurcation Perforation With a Dual-Covered Stent Strategy
Article Snippet: Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional (3D) printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography (OCT) right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI).

Software:

Article Title: Visualization and quantitation of spine deformity in zebrafish models of scoliosis by micro-computed tomography.
Article Snippet: .. 1 Continued REAGENT or RESOURCE SOURCE IDENTIFIER Experimental models: Organisms/strains Zebrafish: AB strain University of Oregon ZFIN: ZDB-GENO-960809-7 Software and algorithms Scanco vivaCT 80 Scanco Medical 3D Slicer https://www.slicer.org Version 5.2.1 Other Corning 15 mL conical centrifuge tubes MilliporeSigma Cat #CLS430790 Dumont #5 fine forceps Fine Science Tools Cat #11254-20 ll OPEN ACCESS Protocol ..

Tomography:

Article Title: The broad spectrum mixed-lineage kinase 3 inhibitor URMC-099 prevents acute microgliosis and cognitive decline in a mouse model of perioperative neurocognitive disorders.
Article Snippet: .. Microcomputed tomography (microCT) analysis was conducted using a Scanco vivaCT 80 (Scanco Medical, Brüttisellen, Switzerland) at a scan resolution of 8 μm. ..



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Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional <t>(3D)</t> printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography <t>(OCT)</t> right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.
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Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional <t>(3D)</t> printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography <t>(OCT)</t> right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.
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Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional <t>(3D)</t> printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography <t>(OCT)</t> right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.
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Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional <t>(3D)</t> printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography <t>(OCT)</t> right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.
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Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional <t>(3D)</t> printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography <t>(OCT)</t> right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.
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Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional <t>(3D)</t> printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography <t>(OCT)</t> right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.
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Image Search Results


Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional (3D) printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography (OCT) right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.

Journal: JACC Case Reports

Article Title: Complex Treatment of a Coronary Bifurcation Perforation With a Dual-Covered Stent Strategy

doi: 10.1016/j.jaccas.2025.103382

Figure Lengend Snippet: Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional (3D) printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography (OCT) right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI). LAD = left anterior descending artery.

Article Snippet: Bench Setup and Illustration of Procedure (A1) Bench setup with covered stent implantation in a 3-dimensional (3D) printed phantom reconstructed from coronary computed tomography angiography connected to a pulsatile flow system with corresponding schematic illustration in A2. (B1) Rewiring of the jailed side branch (SB) with a stiff-tipped guidewire mounted in the side port of a double-lumen catheter with corresponding 3D optical coherence tomography (OCT) right after penetration in B2. (C1) SB reopening with a 2.0-mm NC balloon with corresponding 3D OCT immediately after dilatation in C2. (D1) Final kissing balloon inflation with corresponding final 3D OCT reconstruction in D2. (E) 3D microcomputed tomography with and without the coronary artery phantom (made with Scanco vivaCT 80, Scanco Medical AG), isotropic voxel size 10.4 μm, x-ray tube voltage 70 kVp and current of 114 μA, integration time 750 ms, data visualized in 3D using Amira (version 5.6, FEI).

Techniques: Computed Tomography, Tomography