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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The ICP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino and Licox series of monitors to 3rd party manufacture bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The cable is provided non-sterile.
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-46
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-39
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-33
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-22
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-19
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-18
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-17
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Licox®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Licox®, Intracranial Pressure, ICP-16
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The AP adapter cable is a medical device accessory designed to support the interconnection of the Integra Camino series of monitors to 3rd party manufacturer bedside monitors in the non-sterile field. The reusable device consists of a signal connector (PMIO end), compatible with the Integra PMIOMPM-1 cable and a signal connector (monitor end) compatible with the 3rd party bedside monitor. The device is provided non-sterile.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Camino® Patient Monitor Cable
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The Integra Camino PMIOMPM-1 cables are accessories for the Integra Camino Monitor range MPM-1, CAM01, CAM02 monitors and the Integra Licox PtO monitoring system. They are intended to be used to interface these monitors with 3rd Party patient bedside monitors. The device is a reusable product.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
Camino® Single Parameter Monitoring Cable
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The Integra Fiber Optic Catheter Cable (CAMCABL) is used to support the direct and continuous measurement of intracranial pressure (ICP) and intracranial temperature (ICT) when connected to a Camino ICP monitor. The Integra CAMCABL is intended for use with Camino ICP monitors and Camino Flex Catheter products. The CAMCABL is a reusable product, and is intended for use by a qualified clinician.
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Camino®
INTEGRA LIFESCIENCES (IRELAND) LIMITED
The Integra Camino ICP Monitor is a compact, portable device that provides tools for continuously determining and monitoring intracranial pressure (ICP) and intracranial temperature (ICT) directly in the brain, depending on which catheters are connected to the system. This monitor supports Integra Camino Fiber Optic Catheters for measuring both ICP and temperature, and Integra Camino Flex Catheter for measuring ICP values.
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Straight Ventricular Catheter
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra NeuroSciences Ventricular Catheter is a 25 cm silicone elastomer tubing with full barium impregnation. Numbered length markers are located 5 and 10 cm from the proximal end. Length marker dots are located at 1 cm increments 3 to 14 cm from the proximal end. The proximal end presents fourty (40) flow holes. The proximal tip is constructed of molded, barium sulfate impregnated silicone to provide smooth, consistent end, which aid catheter placement. A stainless steel stylet and a right angle guide are provided.
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Peritoneal Catheter
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra NeuroSciences Peritoneal Catheter is a 91 cm silicone elastomer barium sulfate striped tubing. Numbered length markers are located 5, 10, 15, 20, 25 and 30 cm from the distal end to assist catheter placement. The distal end of the catheter has four staggered rows of 5.5-mm slits, which are not easily visible. If the distal outlet hole of the catheter becomes obstructed, the slits open for drainage.
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Integra®
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The OCS2PND is a bipolar stimulating probe for cortical stimulation with malleable tips for precise localization. The probe has 2 mm diameter polished balls, spaced 5 mm apart, at the tip of the stimulator probe. It has a 310 cm cord with two electrically shrouded banana plugs for attachment to the OCS2 Ojemann Cortical Stimulator. It is reusable, is supplied non-sterile and must be sterilized before use.
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Integra®
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra Sphenoidal Electrode is designed for investigative intraoperative monitoring of cortical electrical activity specifically at the undersurface of the temporal lobe. It has one platinum contact and is supplied with an insertion needle.
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Contour-Flex Valve and Shunt System
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra Contour-Flex Valve is a multi-function membrane valve with occluders and integral connectors. It is used in treatment of patients with hydrocephalus when shunting cerebrospinal fluid (CSF) from ventricles of the brain. The Contour-Flex Valve design includes a flat silicone membrane, which provides resistance to CSF flow. The Contour-Flex Valve is available in two sizes: Regular and Small. Both sizes are available in 3 pressure/flow characteristics ranges: low, medium, and high.
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Contour-Flex Valve and Shunt System
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra Contour-Flex Valve is a multi-function membrane valve with occluders and integral connectors. It is used in treatment of patients with hydrocephalus when shunting cerebrospinal fluid (CSF) from ventricles of the brain. The Contour-Flex Valve design includes a flat silicone membrane, which provides resistance to CSF flow. The Contour-Flex Valve is available in two sizes: Regular and Small. Both sizes are available in 3 pressure/flow characteristics ranges: low, medium, and high.
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Contour-Flex Valve and Shunt System
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra Contour-Flex Valve is a multi-function membrane valve with occluders and integral connectors. It is used in treatment of patients with hydrocephalus when shunting cerebrospinal fluid (CSF) from ventricles of the brain. The Contour-Flex Valve design includes a flat silicone membrane, which provides resistance to CSF flow. The Contour-Flex Valve is available in two sizes: Regular and Small. Both sizes are available in 3 pressure/flow characteristics ranges: low, medium, and high.
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Contour-Flex Valve and Shunt System
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra Contour-Flex Valve is a multi-function membrane valve with occluders and integral connectors. It is used in treatment of patients with hydrocephalus when shunting cerebrospinal fluid (CSF) from ventricles of the brain. The Contour-Flex Valve design includes a flat silicone membrane, which provides resistance to CSF flow. The Contour-Flex Valve is available in two sizes: Regular and Small. Both sizes are available in 3 pressure/flow characteristics ranges: low, medium, and high.
0
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Contour-Flex Valve and Shunt System
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra Contour-Flex Valve is a multi-function membrane valve with occluders and integral connectors. It is used in treatment of patients with hydrocephalus when shunting cerebrospinal fluid (CSF) from ventricles of the brain. The Contour-Flex Valve design includes a flat silicone membrane, which provides resistance to CSF flow. The Contour-Flex Valve is available in two sizes: Regular and Small. Both sizes are available in 3 pressure/flow characteristics ranges: low, medium, and high.
0
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Contour-Flex Valve and Shunt System
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Integra Contour-Flex Valve is a multi-function membrane valve with occluders and integral connectors. It is used in treatment of patients with hydrocephalus when shunting cerebrospinal fluid (CSF) from ventricles of the brain. The Contour-Flex Valve design includes a flat silicone membrane, which provides resistance to CSF flow. The Contour-Flex Valve is available in two sizes: Regular and Small. Both sizes are available in 3 pressure/flow characteristics ranges: low, medium, and high.
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The AURAGEN™ Cortical Surface Electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are placed on the exposed cortical surface or inserted into the subdural space to contact the cortical surface. Cortical Electrodes are available with platinum contacts and vary in size according to the number of contacts. The type of cortical electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Auragen™ depth electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are inserted stereotaxically into the brain. Depth electrodes are available with 4 to 12 platinum/iridium contacts. The type of depth electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Auragen™ depth electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are inserted stereotaxically into the brain. Depth electrodes are available with 4 to 12 platinum/iridium contacts. The type of depth electrode used is dependent on the procedure and the size of area being tested.
0
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Auragen™
INTEGRA NEUROSCIENCES IMPLANT (FRANCE)
The Auragen™ depth electrodes are designed for intraoperative monitoring of cortical electrical activity in order to define the location of epileptogenic foci. They are inserted stereotaxically into the brain. Depth electrodes are available with 4 to 12 platinum/iridium contacts. The type of depth electrode used is dependent on the procedure and the size of area being tested.
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