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Volcano Corporation visions® pv catheters
Visions® Pv Catheters, supplied by Volcano Corporation, 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/visions%C2%AE+pv+catheters/visions++pv/us12310796-113-30-35
Average 90 stars, based on 1 article reviews
visions® pv catheters - by Bioz Stars, 2026-09
90/100 stars

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Related Articles

other:

Article Title: Dynamic resource reconfiguration for patient interface module (PIM) in intraluminal medical ultrasound imaging
Article Snippet: In some embodiments, the intraluminal imaging device 102 includes some features similar to traditional solid-state IVUS catheters, such as the EagleEye® Platinum, Eagle Eye® Platinum ST, Eagle Eye® Gold, and Visions® PV catheters available from Volcano Corporation and those disclosed in U.S. Pat.



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(A) Initial venogram demonstrating an occluded iliofemoral venous stent; (B) Successful wire recanalization around the pre-existing stent; (C) <t>Intravascular</t> <t>ultrasound</t> <t>(IVUS)</t> confirmation of entry into caudal inferior vena cava; (D) Sequential angioplasty of endobypass tract; (E) Fluoroscopic image depicting the configuration of the original stent and the new conduit around it. (F) Completion venogram depicting a patent endobypass conduit of Wallstent-Z stent combination with orange arrow depicting the occluded original stent column.
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Volcano Corporation ivus catheter visions pv .035
(A) Initial venogram demonstrating an occluded iliofemoral venous stent; (B) Successful wire recanalization around the pre-existing stent; (C) <t>Intravascular</t> <t>ultrasound</t> <t>(IVUS)</t> confirmation of entry into caudal inferior vena cava; (D) Sequential angioplasty of endobypass tract; (E) Fluoroscopic image depicting the configuration of the original stent and the new conduit around it. (F) Completion venogram depicting a patent endobypass conduit of Wallstent-Z stent combination with orange arrow depicting the occluded original stent column.
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(A) Initial venogram demonstrating an occluded iliofemoral venous stent; (B) Successful wire recanalization around the pre-existing stent; (C) <t>Intravascular</t> <t>ultrasound</t> <t>(IVUS)</t> confirmation of entry into caudal inferior vena cava; (D) Sequential angioplasty of endobypass tract; (E) Fluoroscopic image depicting the configuration of the original stent and the new conduit around it. (F) Completion venogram depicting a patent endobypass conduit of Wallstent-Z stent combination with orange arrow depicting the occluded original stent column.
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Volcano Corporation volcano visions pv 0.014p ivus catheter
A case of intraprocedural plaque protrusion. ( A ) Angiogram of the right common carotid artery (lateral view). Severe stenosis is evident at the origin of the right internal carotid artery (arrow). ( B ) Preoperative MRI of the plaque with a 3-T scanner and 2-dimensional T1-weighted black-blood method. A high-intensity signal is evident at the origin of the right internal carotid artery (arrow), suggesting the presence of unstable plaque. ( C ) Live image of the right common carotid artery (lateral view). Postdilatation was performed with a balloon catheter (4 mm × 40 mm) (arrow) after Casper/Roadsaver stent (CRS) placement under proximal protection provided by the Mo.Ma Ultra and filter protection by the Filterwire EZ. ( D ) Live image of the right common carotid artery (lateral view). A second stent (CRS 8 mm × 20 mm) is guided inside the first stent because <t>intravascular</t> <t>ultrasound</t> after postdilatation shows apparent plaque protrusion (see panel A). ( E ) Live image of the right common carotid artery (lateral view). The second stent (CRS 8 mm × 20 mm) is deployed inside the first stent. ( F ) <t>Intravascular</t> <t>ultrasound</t> at the minimum lumen diameter of the lesion site after the second stent placement confirms the absence of plaque protrusion. ( G ) Right common carotid angiogram (lateral view). The final angiogram shows good dilation at the stenotic site with no obvious plaque protrusion.
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Image Search Results


IVUS Catheter Advancing Into Distal LPA Target, With a Second Adjacent “Buddy Wire” Conferring Additional Support IVUS = intravascular ultrasound; LPA = left pulmonary artery.

Journal: JACC Case Reports

Article Title: IVUS-Guided Pulmonary Artery Hemodynamic Sensor Implantation

doi: 10.1016/j.jaccas.2025.105227

Figure Lengend Snippet: IVUS Catheter Advancing Into Distal LPA Target, With a Second Adjacent “Buddy Wire” Conferring Additional Support IVUS = intravascular ultrasound; LPA = left pulmonary artery.

Article Snippet: Visions PV 0.018-inch digital IVUS catheter (Philips).

Techniques:

Measurement of LPA Segment Diameter Using IVUS IVUS = intravascular ultrasound; LPA = left pulmonary artery.

Journal: JACC Case Reports

Article Title: IVUS-Guided Pulmonary Artery Hemodynamic Sensor Implantation

doi: 10.1016/j.jaccas.2025.105227

Figure Lengend Snippet: Measurement of LPA Segment Diameter Using IVUS IVUS = intravascular ultrasound; LPA = left pulmonary artery.

Article Snippet: Visions PV 0.018-inch digital IVUS catheter (Philips).

Techniques:

(A) Initial venogram demonstrating an occluded iliofemoral venous stent; (B) Successful wire recanalization around the pre-existing stent; (C) Intravascular ultrasound (IVUS) confirmation of entry into caudal inferior vena cava; (D) Sequential angioplasty of endobypass tract; (E) Fluoroscopic image depicting the configuration of the original stent and the new conduit around it. (F) Completion venogram depicting a patent endobypass conduit of Wallstent-Z stent combination with orange arrow depicting the occluded original stent column.

Journal: Journal of Vascular Surgery Cases, Innovations and Techniques

Article Title: Endovenous bypass is an option in symptomatic patients with unsalvageable iliac vein stents

doi: 10.1016/j.jvscit.2025.101785

Figure Lengend Snippet: (A) Initial venogram demonstrating an occluded iliofemoral venous stent; (B) Successful wire recanalization around the pre-existing stent; (C) Intravascular ultrasound (IVUS) confirmation of entry into caudal inferior vena cava; (D) Sequential angioplasty of endobypass tract; (E) Fluoroscopic image depicting the configuration of the original stent and the new conduit around it. (F) Completion venogram depicting a patent endobypass conduit of Wallstent-Z stent combination with orange arrow depicting the occluded original stent column.

Article Snippet: Intravascular ultrasound (IVUS) (Visions PV .035 digital IVUS catheter, Philips) was used to confirm our location within the stent.

Techniques:

A case of intraprocedural plaque protrusion. ( A ) Angiogram of the right common carotid artery (lateral view). Severe stenosis is evident at the origin of the right internal carotid artery (arrow). ( B ) Preoperative MRI of the plaque with a 3-T scanner and 2-dimensional T1-weighted black-blood method. A high-intensity signal is evident at the origin of the right internal carotid artery (arrow), suggesting the presence of unstable plaque. ( C ) Live image of the right common carotid artery (lateral view). Postdilatation was performed with a balloon catheter (4 mm × 40 mm) (arrow) after Casper/Roadsaver stent (CRS) placement under proximal protection provided by the Mo.Ma Ultra and filter protection by the Filterwire EZ. ( D ) Live image of the right common carotid artery (lateral view). A second stent (CRS 8 mm × 20 mm) is guided inside the first stent because intravascular ultrasound after postdilatation shows apparent plaque protrusion (see panel A). ( E ) Live image of the right common carotid artery (lateral view). The second stent (CRS 8 mm × 20 mm) is deployed inside the first stent. ( F ) Intravascular ultrasound at the minimum lumen diameter of the lesion site after the second stent placement confirms the absence of plaque protrusion. ( G ) Right common carotid angiogram (lateral view). The final angiogram shows good dilation at the stenotic site with no obvious plaque protrusion.

Journal: Journal of the Society for Cardiovascular Angiography & Interventions

Article Title: Intraprocedural and Delayed Plaque Protrusion in Carotid Artery Stenting Using a Dual-Layer Metallic Stent

doi: 10.1016/j.jscai.2024.102285

Figure Lengend Snippet: A case of intraprocedural plaque protrusion. ( A ) Angiogram of the right common carotid artery (lateral view). Severe stenosis is evident at the origin of the right internal carotid artery (arrow). ( B ) Preoperative MRI of the plaque with a 3-T scanner and 2-dimensional T1-weighted black-blood method. A high-intensity signal is evident at the origin of the right internal carotid artery (arrow), suggesting the presence of unstable plaque. ( C ) Live image of the right common carotid artery (lateral view). Postdilatation was performed with a balloon catheter (4 mm × 40 mm) (arrow) after Casper/Roadsaver stent (CRS) placement under proximal protection provided by the Mo.Ma Ultra and filter protection by the Filterwire EZ. ( D ) Live image of the right common carotid artery (lateral view). A second stent (CRS 8 mm × 20 mm) is guided inside the first stent because intravascular ultrasound after postdilatation shows apparent plaque protrusion (see panel A). ( E ) Live image of the right common carotid artery (lateral view). The second stent (CRS 8 mm × 20 mm) is deployed inside the first stent. ( F ) Intravascular ultrasound at the minimum lumen diameter of the lesion site after the second stent placement confirms the absence of plaque protrusion. ( G ) Right common carotid angiogram (lateral view). The final angiogram shows good dilation at the stenotic site with no obvious plaque protrusion.

Article Snippet: A Volcano Visions PV 0.014P IVUS catheter (Volcano Corp.) was used.

Techniques:

Intraprocedural plaque protrusion and delayed plaque protrusion in carotid artery stenting (CAS). ( A ) Intraprocedural plaque protrusion immediately after postdilatation; intravascular ultrasound shows plaque protrusion (arrows). ( B ) Delayed plaque protrusion immediately after postdilatation; intravascular ultrasound shows no evidence of plaque protrusion. ( C ) Delayed plaque protrusion 3 days after CAS; intravascular ultrasound shows plaque protrusion (arrows).

Journal: Journal of the Society for Cardiovascular Angiography & Interventions

Article Title: Intraprocedural and Delayed Plaque Protrusion in Carotid Artery Stenting Using a Dual-Layer Metallic Stent

doi: 10.1016/j.jscai.2024.102285

Figure Lengend Snippet: Intraprocedural plaque protrusion and delayed plaque protrusion in carotid artery stenting (CAS). ( A ) Intraprocedural plaque protrusion immediately after postdilatation; intravascular ultrasound shows plaque protrusion (arrows). ( B ) Delayed plaque protrusion immediately after postdilatation; intravascular ultrasound shows no evidence of plaque protrusion. ( C ) Delayed plaque protrusion 3 days after CAS; intravascular ultrasound shows plaque protrusion (arrows).

Article Snippet: A Volcano Visions PV 0.014P IVUS catheter (Volcano Corp.) was used.

Techniques:

A case of delayed plaque protrusion. ( A ) Angiogram of the right common carotid artery (frontal view). Severe stenosis is seen at the origin of the right internal carotid artery (arrow). ( B ) Live image of the right common carotid artery (lateral view). Carotid artery stenting (CAS) using the Casper/Roadsaver stent (CRS) (8 mm × 30 mm) with postdilatation performed using a balloon catheter (4 mm × 40 mm) with OPTIMO and Filterwire EZ to treat internal carotid artery stenosis with unstable plaque. ( C ) Angiogram of the right common carotid (lateral view). The final angiogram shows good dilatation at the stenotic site, with no obvious plaque protrusion. Intravascular ultrasound at the minimum lumen diameter of the lesion site after stent placement does not show any plaque protrusion. ( D ) Ultrasound 3 days after CAS shows plaque protrusion (arrow). ( E ) Angiogram of the right common carotid artery 3 days after CAS (lateral view). Plaque protrusion is evident (arrow). ( F ) Live image of the right common carotid artery (lateral view). A second stent (CRS 6 mm × 30 mm) is guided inside the first stent because intravascular ultrasound at the minimum lumen diameter of the lesion site 3 days after CAS shows plaque protrusion. ( G ) Live image of the right common carotid artery (lateral view). The second stent (CRS 6 mm × 30 mm) is positioned in a stent-in-stent manner (arrows). ( H ) Intravascular ultrasound at the minimum lumen diameter of the lesion site after the second stent placement confirms the absence of plaque protrusion. ( I ) Angiogram of the right common carotid (lateral view). The final angiogram shows good dilatation at the stenotic site, with no obvious plaque protrusion.

Journal: Journal of the Society for Cardiovascular Angiography & Interventions

Article Title: Intraprocedural and Delayed Plaque Protrusion in Carotid Artery Stenting Using a Dual-Layer Metallic Stent

doi: 10.1016/j.jscai.2024.102285

Figure Lengend Snippet: A case of delayed plaque protrusion. ( A ) Angiogram of the right common carotid artery (frontal view). Severe stenosis is seen at the origin of the right internal carotid artery (arrow). ( B ) Live image of the right common carotid artery (lateral view). Carotid artery stenting (CAS) using the Casper/Roadsaver stent (CRS) (8 mm × 30 mm) with postdilatation performed using a balloon catheter (4 mm × 40 mm) with OPTIMO and Filterwire EZ to treat internal carotid artery stenosis with unstable plaque. ( C ) Angiogram of the right common carotid (lateral view). The final angiogram shows good dilatation at the stenotic site, with no obvious plaque protrusion. Intravascular ultrasound at the minimum lumen diameter of the lesion site after stent placement does not show any plaque protrusion. ( D ) Ultrasound 3 days after CAS shows plaque protrusion (arrow). ( E ) Angiogram of the right common carotid artery 3 days after CAS (lateral view). Plaque protrusion is evident (arrow). ( F ) Live image of the right common carotid artery (lateral view). A second stent (CRS 6 mm × 30 mm) is guided inside the first stent because intravascular ultrasound at the minimum lumen diameter of the lesion site 3 days after CAS shows plaque protrusion. ( G ) Live image of the right common carotid artery (lateral view). The second stent (CRS 6 mm × 30 mm) is positioned in a stent-in-stent manner (arrows). ( H ) Intravascular ultrasound at the minimum lumen diameter of the lesion site after the second stent placement confirms the absence of plaque protrusion. ( I ) Angiogram of the right common carotid (lateral view). The final angiogram shows good dilatation at the stenotic site, with no obvious plaque protrusion.

Article Snippet: A Volcano Visions PV 0.014P IVUS catheter (Volcano Corp.) was used.

Techniques: