Model NO. | HF2001.6 |
Medical Device Regulatory Type | Type 2 |
Medical Devices Reg./Record No. | Zxzz20152220371 |
OEM | Acceptable |
ODM | Acceptable |
Size | Φ10×330mm |
Transport Package | Standard Export Packing |
Specification | Steel |
Trademark | Vanhur |
Origin | Tonglu, Zhejiang, China |
HS Code | 9018909099 |
Supply Ability | 300 PCS/Month |
Type | Surgical Clamp |
Application | Abdominal |
Material | Steel |
Feature | Reusable |
Group | Adult |
Customization | Available | Customized Request |
Certification | CE, FDA, ISO13485 |
View Detail Information
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Product Specification
Model NO. | HF2001.6 | Medical Device Regulatory Type | Type 2 |
Medical Devices Reg./Record No. | Zxzz20152220371 | OEM | Acceptable |
ODM | Acceptable | Size | Φ10×330mm |
Transport Package | Standard Export Packing | Specification | Steel |
Trademark | Vanhur | Origin | Tonglu, Zhejiang, China |
HS Code | 9018909099 | Supply Ability | 300 PCS/Month |
Type | Surgical Clamp | Application | Abdominal |
Material | Steel | Feature | Reusable |
Group | Adult | Customization | Available | Customized Request |
Certification | CE, FDA, ISO13485 | ||
High Light | steel laparoscopic surgery instruments ,steel laparoscopic surgical instruments ,type 2 laparoscopic surgery instruments |
Package detail: | Poly bag and special shockproof paper box. |
Delivery detail: | By air |
FAQ
Laparoscopic surgical equipment failure does complicate the examination. Laparoscopic surgical equipment consists of multiple precision instruments, including display camera system, cold light source system, pneumoperitoneum machine, etc. The normal operation of these devices is crucial to the success of the operation. If the equipment fails, it may cause problems such as monitor image distortion, no image display, blurred image, etc., which will affect the smooth progress of the operation.
In addition, equipment failure may also lead to prolonged operation time and increase the risk and burden of patients. In some cases, equipment failure may even require the rescheduling of surgery or the completion of surgery without image guidance. Therefore, it is particularly important to perform good maintenance of laparoscopic equipment on a daily basis to reduce the incidence of intraoperative failures and ensure the smooth progress of the operation.
In short, laparoscopic surgical equipment failure will not only affect the normal progress of the operation, but also increase the additional risks and burdens of patients, so it is necessary to pay attention to the maintenance and management of the equipment.
Common types of laparoscopic surgical equipment failures mainly include the following:
Endoscopic camera system failure: This includes problems such as deep distortion of the monitor image and horizontal bar clutter interference. For example, the deep distortion of the monitor image may be caused by the monitor setting parameters or the monitor itself is damaged.
Cold light source system failure: The cold light source system often fails to start the power supply, has no light output, or the light turns on and off during the operation.
Light source system failure: Light source system failure may lead to insufficient lighting during the operation, affecting the operation.
Multifunctional single-polar and bipolar high-frequency electrosurgical system failure: This system failure may affect the accuracy and safety of the operation.
C02 pneumoperitoneum machine failure: Pneumoperitoneum machine failure may cause unstable pneumoperitoneum pressure during the operation, affecting the operation process.
Operating instrument failure: Surgical instrument failures include mechanical failures and electronic failures, which may affect the smooth progress of the operation.
These types of failures cover all aspects from hardware to software, and each failure may have a significant impact on the results of the operation.
Effectively preventing laparoscopic surgical equipment failures requires multiple aspects, including the use, management, maintenance and care of the equipment. The following are detailed measures:
Standardized use process: Develop detailed instrument and instrument operating procedures and strictly implement them. Before surgery, the equipment and instruments should be fully inspected to ensure their good performance.
Establish a management system: Establish a special management system and file system to record the use of equipment and instruments. Every time the equipment is received, the operating room instrument nurse in charge, the equipment department and the clinical department head will jointly count and register the relevant information.
Regular maintenance: After surgery, the surgical instruments are thoroughly cleaned, rust-proofed, oiled and sterilized. Full-time nurses are responsible for the terminal disinfection and maintenance of external equipment such as laparoscopic displays. The responsible nurses will conduct regular inspections of the instruments every week to check the rust and lubrication of the instruments and equipment. If rust is found, rust removal and lubrication will be carried out in time.
Professional personnel management: Set up laparoscopic surgery specialist circulating nurses and hand-washing nurses to ensure the correct use of instruments and instruments during surgery. Equipment engineers regularly check the operation of the instruments and local inspections, dust-proof and refuel the instruments and equipment, and cover the instruments with protective covers after cleaning.
Fine management system: Introduce a fine management system for medical equipment, and use the data acquisition system to query the use status of medical equipment, analyze the use efficiency, cost-effectiveness, quality control analysis and equipment warranty and maintenance management.
Training and education: Regular training is provided to medical staff to ensure that they master the correct use and maintenance methods to avoid equipment failure due to improper operation.
Image distortion and blur in laparoscopic surgery will have a serious impact on the surgical process. The specific impacts and solutions are as follows:
Specific impact
Surgical safety and accuracy: Image blur will reduce the visibility of observed organs and tissues, thereby increasing surgical risks. For example, when identifying gauze, image blur will increase the false alarm rate, affecting the safety of surgery.
Surgical efficiency: Image distortion and blur will prolong the operation time and affect the efficiency of surgery. For example, wearing polarized glasses in 3D laparoscopic surgery will cause light attenuation, further exacerbating image distortion.
Operator fatigue: Wearing polarized glasses for a long time will cause visual fatigue of the operator, affecting their concentration and operation accuracy.
Solution
Environmental control: During surgery, maintaining good environmental conditions is key. For example, check whether the pressure of the pneumoperitoneum machine is sufficient and the water pressure is appropriate to ensure image clarity.
Image preprocessing technology: Use image preprocessing technology based on variational methods to remove smoke from laparoscopic images, thereby improving image quality.
Deep learning and artificial intelligence technology: Using deep learning technology for real-time image processing can effectively reduce the problem of image blur and distortion. For example, neural network models can be used to identify gauze and other important structures to reduce false positives and false negatives.
Hardware improvement: Use high-quality endoscopic equipment and regularly maintain and calibrate to ensure image quality.
3D laparoscopic technology optimization: Improve 3D laparoscopic technology to reduce the effects of light attenuation and visual fatigue. For example, optimize the design of polarized glasses to reduce light attenuation.
Risk assessment of rescheduling surgery or completing surgery without image guidance.
Risk assessment of rescheduling surgery or completing surgery without image guidance requires comprehensive consideration of multiple factors.
Rescheduling surgery may bring non-medical risks. For example, some patients may need to reschedule elective surgery for non-medical reasons (such as family emergencies, work arrangements, etc.), which may increase the complexity and risk of surgery. In addition, diabetic patients have a higher risk of surgery and postoperative recovery due to their complications when undergoing surgery.
There is also a great risk of completing the surgery without image guidance. Image guidance systems play a vital role in surgery, helping surgeons locate the lesion area more accurately and reduce the occurrence of surgical complications. For example, in radiofrequency ablation treatment of lung tumors, image guidance can significantly improve the accuracy and safety of surgery. Without image guidance, surgical path planning and risk assessment will become very difficult, which may lead to surgical failure or complications.
Rescheduling the surgery or completing the surgery without image guidance will increase the risk of surgery.
The maintenance and management of laparoscopic equipment is key to ensuring the quality of surgery and extending the service life of the equipment. Here are some best practices:
Dedicated management: Laparoscopic equipment should be managed by a dedicated person and regularly repaired and maintained, and the head of the department should regularly check the integrity of the equipment.
Daily cleaning and disinfection: After each use, the laparoscope needs to be thoroughly cleaned and disinfected to prevent cross infection.
Correct disassembly and installation: The instrument must be disassembled according to the instructions, and it is not allowed to be disassembled and installed at will.
Protect the lens and cold light source: Carefully protect the lens, mirror and cold light source during the operation to avoid collision and damage that blurs the lens and affects clarity.
Correct storage method: The camera, cold light source and electrocoagulation line should be wiped dry with soft, absorbent gauze after the operation. They should not be folded and should be rotated in their trays without angles.
Avoid violent operation: Avoid using violence during the operation, handle with care, do not rub or collide with each other, and hold multiple instruments in one hand at the same time, keep the shaft joints flexible, the tips closed well, and the instruments sharp.
Standard operation: Use correct sterilization, cleaning and maintenance methods, standardize operation, formulate and implement strict laparoscopic management system, reduce the consumption of instruments and equipment, greatly reduce medical costs, and ensure surgical quality and medical safety.
Postoperative sorting and inspection: After each operation, the instruments should be disassembled in the correct way first. When sorting the instruments after the operation, check whether they are damaged, and tighten the loose joints of the components.
For more photos and details please contact me:
Company Name: Tonglu Wanhe Medical Instruments Co., Ltd.
Sales: Emma
Tel:+86 571 6991 5082
Mobile: +86 13685785706
Company Details
Business Type:
Manufacturer
Year Established:
2010
Total Annual:
5,000,000-10,000,000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
Vanhur Medical was founded in 2010 and is headquartered in Tonglu, a city renowned as the "Chinese Special Endoscopy Instruments Town". Located just a 2-hour high-speed train ride from Shanghai, Tonglu is a hub for endoscopy innovation and production. Vanhur's core team bo... Vanhur Medical was founded in 2010 and is headquartered in Tonglu, a city renowned as the "Chinese Special Endoscopy Instruments Town". Located just a 2-hour high-speed train ride from Shanghai, Tonglu is a hub for endoscopy innovation and production. Vanhur's core team bo...
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