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Stryker target detachable coil nano
Target Detachable Coil Nano, supplied by Stryker, 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/target+detachable+coil+nano/target+nano+detachable+coils/pm40538232-22-36-30
Average 90 stars, based on 1 article reviews
target detachable coil nano - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Early experience with Target Tetra coils for treatment of small and very small ruptured intracranial aneurysms.
Article Snippet: Background: Endovascular treatment of small (< 5 mm) and very small (≤ 3 mm) ruptured intracranial aneurysms remains technically challenging, historically carrying elevated procedural risks.. Advances in coil technology, such as the Target Tetra Detachable Coil (TTDC), aim to improve embolization safety and efficacy.. However, limited data exist on outcomes using TTDC coils specifically for ruptured aneurysms.



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Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the <t>detachable</t> coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.
Detachable Coil Target 360 Nano, supplied by Stryker, 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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Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the <t>detachable</t> coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.
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Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the <t>detachable</t> coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.
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Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the <t>detachable</t> coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.
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Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the <t>detachable</t> coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.
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Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the <t>detachable</t> coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.
Target Nano™ 360 Detachable Coils, supplied by Stryker, 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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Stryker microcoils target 360 nano detachable coils
Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the <t>detachable</t> coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.
Microcoils Target 360 Nano Detachable Coils, supplied by Stryker, 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


Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the detachable coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.

Journal: Surgical Neurology International

Article Title: Targeted transvenous embolization of a dural arteriovenous fistula at the jugular tubercle venous complex

doi: 10.25259/SNI_1087_2022

Figure Lengend Snippet: Endovascular treatment of dural arteriovenous fistula (a-d) and postoperative imaging (e-h) (a) Working angle view of the left external carotid angiography through a 4 Fr. guiding sheath (as seen in panel c: *) showing a dural arteriovenous fistula. (b and c) A microcatheter (single arrowhead) is guided to the shunt point using a 45° pre-shaped distal access catheter (double arrowhead) through a 6 Fr guiding sheath (triple arrowhead) which is placed in the left internal jugular vein. Another 6 Fr guiding sheath (double arrow) is also placed in the left internal jugular vein to guide a balloon catheter (single arrow) near the shunt. (d) The balloon catheter is inflated to support the microcatheter and to avoid deviation of the coil to the jugular vein. Coiling into the shunt pouch is performed through the catheter. (e and f) Axial and coronal view from cone-beam computed tomography images showing the detachable coils implanted in the shunt pouch within the bone. (g and h) Frontal and lateral view of the left external carotid angiography showing that the shunt is completely occluded.

Article Snippet: The first detachable coil (Target 360 nano, 2.5 mm secondary diameter, 4 cm length; Stryker, Athens, MI, USA) passed through the shunt point and reached the feeder side; hence, it was anchored to the arterial side and coiled continuously to the venous side.

Techniques: Imaging, Computed Tomography