Delta ระบบการทำลายเส้นประสาทไต
เอ คลื่นวิทยุระบบสายสวนแบบเฉพาะทางสำหรับ ซิมพาเทติกของไต การทำลายเส้นประสาทใน ความดันโลหิตสูงที่ต้านทาน, ลดการทำงานของเส้นประสาทเพื่อควบคุมความดันโลหิต
Delta Catheter: Pioneering Precision in Renal Denervation
- Helical Design: The Delta Renal Denervation Catheter sets itself apart through its innovative design and superior performance.
- Multi-Electrode: Tailored for the treatment of resistant hypertension, the catheter provides a precise and effective solution, ensuring that patients receive the best possible care.
Redefine Hypertension Treatment
with Delta Renal Denervation
- The Delta Catheter’s advanced design and tip technology facilitates targeted denervation, resulting in more efficient procedures and enhanced treatment outcomes.
- With its innovative tip technology, the Delta Catheter guarantees efficient energy delivery and procedural success, paving the way for improved patient outcomes.
RENAL
ARTERY
ABLATION
SYSTEM
Secure, Swift and Precise:
The Delta Difference in Renal Denervation
With its compatibility with standard systems and equipment, the Delta Catheter is both practical and easy to integrate into existing workflows.
- Material: Crafted from a state-of-the-art biocompatible ePTFE and a high-strength CoCr, ensuring longevity and stability.
- Diameter: Ranging from 2.8 mm to 4.8 mm, providing options for various patient needs.
- Length: Available from 18 mm to 29 mm, accommodating different arterial sizes.
- Cell Design: Innovatively engineered cell structure delivers exceptional radial strength and flexibility, ensuring the stent conforms securely to the arterial wall.
- Delivery System: Advanced delivery mechanism ensures precise deployment, easy navigation, and reduced procedure time, enhancing overall surgical efficiency.
A UNIQUE
MULTI-HELİCAL
ABLATION SYSTEM
FITS ALL
ELIGIBLE ANATOMY
6 F Guide Catheter Compatibility
- Streamlined Interventional Workflow: The Delta Modulator catheter is designed to pass seamlessly through a 6 F guide catheter, reducing procedure complexity.
- Familiar Access Approach: Maintains alignment with standard femoral arterial entry, minimizing additional training or specialized equipment.
Quadruple RF Monopolar Electrodes
- 1.5 mm Electrodes: Four distinct radio-opaque electrodes enable circumferential energy delivery, maximizing nerve disruption in fewer lesions.
- Optimized Positioning: เอ treatment length of 17–21 mm ensures overlapping energy zones if all electrodes are activated, catering to variable vessel lengths.
Integrated T-Type Thermocouple
- Real-Time Temperature Monitoring: Provides ต่อเนื่อง feedback for energy modulation, improving ablation efficacy while การลด thermal injury risks.
- Precision Control: The thermocouple’s platinum/iridium alloy ensures rapid temperature detection, promoting safe lesion formation.
Injection-Molded Sleeve
- Durable Shaft Support: The robust, molded sleeve maintains catheter integrity, resisting kinks and protecting internal components during complex manipulations.
- Ergonomic Maneuverability: Smooth transitions between sleeve segments facilitate stable positioning in the renal artery.
Radiopaque Markers for Accurate Localization
- Tip Marker at 1 mm Proximal of Distal Tip: Guides real-time fluoroscopic alignment.
- Femoral Shaft Marker at 55 cm: Assists in precise catheter advancement from the femoral access point to the renal artery ostium.
Versatile Vessel Diameter Range
- 3–8 mm Target: Designed to accommodate typical renal artery dimensions, ensuring broad patient candidacy for renal denervation therapy.
- Streamlined Interventional Workflow: The Delta Modulator catheter is designed to pass seamlessly through a 6 F guide catheter, reducing procedure complexity.
- Familiar Access Approach: Maintains alignment with standard femoral arterial entry, minimizing additional training or specialized equipment.
- 1.5 mm Electrodes: Four distinct radio-opaque electrodes enable circumferential energy delivery, maximizing nerve disruption in fewer lesions.
- Optimized Positioning: เอ treatment length of 17–21 mm ensures overlapping energy zones if all electrodes are activated, catering to variable vessel lengths.
- Real-Time Temperature Monitoring: Provides ต่อเนื่อง feedback for energy modulation, improving ablation efficacy while การลด thermal injury risks.
- Precision Control: The thermocouple’s platinum/iridium alloy ensures rapid temperature detection, promoting safe lesion formation.
- Durable Shaft Support: The robust, molded sleeve maintains catheter integrity, resisting kinks and protecting internal components during complex manipulations.
- Ergonomic Maneuverability: Smooth transitions between sleeve segments facilitate stable positioning in the renal artery.
- Tip Marker at 1 mm Proximal of Distal Tip: Guides real-time fluoroscopic alignment.
- Femoral Shaft Marker at 55 cm: Assists in precise catheter advancement from the femoral access point to the renal artery ostium.
- 3–8 mm Target: Designed to accommodate typical renal artery dimensions, ensuring broad patient candidacy for renal denervation therapy.
ข้อมูลจำเพาะทั่วไปของผลิตภัณฑ์
ข้อมูลจำเพาะ | รายละเอียด / มูลค่า |
ชื่อสินค้า | Delta ระบบการทำลายเส้นประสาทไต |
วัตถุประสงค์การใช้ | Catheter-based ablation of renal sympathetic nerves to treat resistant hypertension |
การออกแบบสายสวนปัสสาวะ | Multi-electrode or single-electrode RF ablation catheter with integrated temperature sensors |
วัสดุ | Pebax/Polyamide shaft with braided reinforcement, flexible tip |
Catheter Outer Diameter | Typically 6F or 7F |
ความยาวในการทำงาน | ~100–120 cm (depending on model) |
Electrode Configuration | 4 or 6 RF electrodes radially spaced, or single spiral electrode, plus temperature feedback |
RF Energy Range | ~5–15 W per electrode (depending on design) |
Frequency | ~460–500 kHz (common for RF ablation) |
Irrigation/Saline Port | Optional for cooling, if device design includes fluid infusion |
ความเข้ากันได้ของสายนำทาง | Typically 0.014” or 0.018” (check specific product line) |
ความปลอดเชื้อ | ปราศจากเชื้อ (เอทิลีนออกไซด์) |
ใช้ครั้งเดียว | ใช่ |
อายุการเก็บรักษา | 2–3 ปี หากเก็บไว้โดยไม่เปิดที่อุณหภูมิ 15–25 °C |
อุณหภูมิในการทำงาน | 15–25 °C recommended for storage |
ข้อบ่งชี้ทางคลินิก | Resistant arterial hypertension where lifestyle and medications fail, enabling reduction of sympathetic tone |
ข้อห้ามใช้ | Severe renal artery stenosis, multiple renal arteries unfit for ablation, or known intolerance to device materials |
6F Renal Denervation Catheters
ขนาดฝรั่งเศส | ความยาวในการทำงาน (ซม.) | Electrode Setup | Guidewire | รหัสสินค้า | หมายเหตุ |
ชั้น 6 | 100 | 4-electrode array | 0.014” | DLT-6F-100-4A | Standard length, radial 4-electrode configuration |
ชั้น 6 | 100 | Single spiral electrode | 0.014” | DLT-6F-100-SSP | Spiral coil design for circumferential ablation |
ชั้น 6 | 110 | 4-electrode array | 0.014” | DLT-6F-110-4A | Extended length for deeper renal artery access |
ชั้น 6 | 110 | 6-electrode array | 0.014” | DLT-6F-110-6A | More contact points for multi-spot ablation |
7F Renal Denervation Catheters
ขนาดฝรั่งเศส | ความยาวในการทำงาน (ซม.) | Electrode Setup | Guidewire | รหัสสินค้า | หมายเหตุ |
ชั้น 7 | 100 | 4-electrode array | 0.014” or 0.018” | DLT-7F-100-4A | Larger OD allows thicker integrated sensors or irrigation |
ชั้น 7 | 100 | 6-electrode array | 0.014” or 0.018” | DLT-7F-100-6A | Enhanced radial coverage in a single ablation pass |
ชั้น 7 | 110 | Single spiral electrode | 0.014” or 0.018” | DLT-7F-110-SSP | Extended length with spiral design for wide segments |
ชั้น 7 | 120 | 6-electrode array + Irrig. | 0.014” or 0.018” | DLT-7F-120-6Ai | Optional irrigation port for cooling during ablation |
8F
ขนาดฝรั่งเศส | ความยาวในการทำงาน (ซม.) | Electrode Setup | Guidewire | รหัสสินค้า | หมายเหตุ |
8F | 100 | 6-electrode radial array | 0.018” | DLT-8F-100-6A | Higher flow or stiffer design for tough anatomies |
8F | 110 | 6-electrode + irrigation | 0.018” | DLT-8F-110-6Ai | Cooling feature plus multiple electrodes for thorough ablation |
8F | 120 | Double spiral coil (rare) | 0.018” | DLT-8F-120-DSC | If your line includes unique double spiral layout (example) |