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HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications

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HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications

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Model NO. :HA1106.2
OEM :Acceptable
ODM :Acceptable
Transport Package :Standard Export Packing
Specification :Double channel
Trademark :Vanhur
Origin :Tonglu, Zhejiang, China
HS Code :9018909010
Supply Ability :300 PCS/Month
Type :Endoscope Bridge
Application :Anorectal, Urology, Urology
Material :Steel
Feature :Reusable
Certification :CE, FDA, ISO13485
Group :Adult
Customization :Available | Customized Request
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Double Channel Bridge Urology Cystoscope HA1106.2 for Reusable Applications

1 Introduction:
If you are looking for minimally invasive surgery medical instruments with good quality, competitive price and reliable service. Wanhe medcal is manufaturing these for you. We provide general and professional laparoscopic instruments with CE, FDA approved.

2 Specifications
1 Adopt optinum stainless steel material
2 Corrosion resistant
3 Tough construct
4 Superb workmanship


3 Various Type For Your Reference

Model Name Specifications
HA1106.1 Endoscope bridge single channel
HA1106.2 Endoscope bridge double channel
HA1106.3 Endoscope bridge without valve
4 Packing & Shipping:
Package detail: Poly bag and special shockproof paper box.
Delivery detail: By air

5 Company Show
HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications
HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications
HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications
HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications
HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications
HA1106.2 Double Channel Bridge Urology Cystoscope for Reusable Applications


FAQ


What are the main types of urological surgical instruments?

Urological surgical instruments mainly include the following categories:

Forceps: used to clamp, pull and fix tissues or organs. For example, bladder tumor forceps are used to clamp tumors or polyps in the bladder; percutaneous nephroscopic bladder biopsy forceps are used to clamp a small amount of diseased tissue for biopsy under cystoscopy.

Scissors: used to cut tissues and sutures. For example, intestinal scissors, cystectomy scissors and prostate scissors, etc.

Hooks: used to pull and fix tissues. For example, prostate retractors are used to expose the prostate for removal surgery.

Forceps: used to clamp small objects or tissues. For example, there are many types of forceps, including 2/3 claw forceps and spoon forceps.

Blades: used to cut tissues. For example, surgical blades of various specifications.

Endoscopes and related equipment: used to observe and manipulate internal structures. For example, fiber ureteronephroscopes, multi-channel single-port laparoscopic surgical punctures, bladder laser resectoscopes, etc.

Stents and guidewires: used for support and guidance. For example, ureteral stents and various coated guidewires.

Other special instruments: such as urethral retractors for urethral surgery and certain minor surgeries for incision exposure, and stone baskets for residual stone treatment after lithotripsy.

These instruments are widely used in various urological surgeries, ranging from traditional open surgery to modern minimally invasive intracavitary surgery, according to their functions and usage scenarios.


What are the latest technologies or development trends in urological surgical instruments?

According to the results, the latest urological surgical instrument technologies or development trends include:

Minimally invasive robotic surgery: It is mentioned that the field of urology is moving towards a more precise and intelligent "minimally invasive robotic surgery" era. For example, the Tumai® robot shined at the 2024 National Urological Robot Special Conference and Urological Micro-Innovation Technology Forum, which shows that robotic surgery is the current innovation theme.

Fluorescence imaging technology: It is pointed out that fluorescence-guided surgery (FGS) is gradually being used in clinical practice, especially in the field of urology, due to its advantages such as high resolution, good safety and strong operability.

New technology for prostate puncture guided by holographic images: A new technology for prostate puncture based on holographic images was reported. This technology was first reported at home and abroad by Peking University Shougang Hospital and was highly recommended by the Chinese Journal of Urology.

Ultra-remote robotic urological surgery: It was mentioned that the team of Academician Zhang Xu successfully implemented ultra-remote robotic urological surgery, which promoted the application of new remote surgical technologies.

Single-port laparoscopic surgical robot: It was reported that China's laparoscopic surgical robot went overseas for the first time and appeared at AUA2023. The single-port technology represents the future development trend of minimally invasive surgery.

Endoscopic minimally invasive surgery: It was pointed out that various types of endoscopic minimally invasive surgeries are gradually replacing traditional surgical modes and are widely used in clinical practice, becoming a new generation of mainstream surgical modes.

The latest urological surgical instrument technologies or development trends include minimally invasive robotic surgery, fluorescent imaging technology, new holographic image-guided prostate puncture technology, ultra-remote robotic urological surgery, single-port laparoscopic surgical robots, and endoscopic minimally invasive surgery.


How to choose appropriate surgical instruments according to different types of urinary system diseases?


Choosing the right surgical instrument for different types of urinary tract diseases requires a comprehensive consideration of multiple factors, including the type of disease, the patient's specific situation, and the available equipment and surgeon's experience. The following are some recommendations for surgical instrument selection for several common urinary tract diseases:

Kidney disease:

Laparoscopic renal surgery: This is the most widely used traditional method, providing the largest operating space and suitable for most kidney surgeries.

Robotic-assisted surgery: For complex kidney surgeries, such as tumor resection or the treatment of complex anatomical structures, robotic surgery can provide greater precision and flexibility.
Lone-port laparoscopic surgery (LESS) and natural orifice laparoscopic surgery (NOTES): These new technologies are suitable for patients with extremely high trauma requirements, reducing postoperative recovery time and complications.
Upper urinary tract diseases:

Percutaneous renal puncture kit: used for the diagnosis and treatment of kidney stones, renal cysts, etc., to introduce guide wires and catheters into the kidneys for treatment or examination through puncture.
Ultrasound diagnostic instrument or X-ray fluoroscopy machine: used to guide the puncture process to ensure accuracy and safety.
Different types of drainage catheters: Select the appropriate size and type of fistula according to the purpose of drainage.
Lower urinary tract symptoms (LUTS):

Prostate surgery: Choose the appropriate surgical method based on prostate size, comorbidities, anesthesia ability and other factors, such as transurethral electrosurgical resection, microwave lithotripsy or laser lithotripsy.
Bladder surgery: Including bladder exploration, cystolithotomy, bladder neck suspension, etc. The specific choice depends on the patient's specific condition.
Auxiliary equipment:

Auxiliary equipment for the convenience of hemodialysis and peritoneal dialysis: Improve the operational efficiency and safety of these treatments.
New renal replacement therapy (CRRT) and plasma exchange (TPE) equipment: Used for the treatment of severe kidney disease.



How to evaluate and select the most suitable type of instrument in urological surgery?


In urological surgery, evaluating and selecting the most suitable type of instrument requires comprehensive consideration of multiple factors, including surgical conditions, patient conditions and specific operational needs. The following are detailed steps and suggestions:

Understand the surgical conditions:

First, a detailed assessment of the static and dynamic anatomical information of the urogenital system and collecting system is required.
For percutaneous nephrolithotomy (PNL) to retrograde endoscopic renal surgery (RIRS), appropriate access bone, dilation technique, penetrating tube size, etc. should be selected according to the specific situation.
Diagnostic procedures:

Before surgery, preliminary diagnostic procedures are performed, such as evaluating stone movement, elasticity, and renal pelvic shape, to ensure the selection of the most appropriate instrument.
Selecting the appropriate instrument:

According to different surgical types and needs, the corresponding instrument is selected. For example, in circumcision plastic surgery, conventional urogenital surgical instruments are required, and electrocoagulation cutting systems are used.
Blue laser knife is an emerging technology, and its 450nm wavelength is suitable for soft tissue cutting in saline, which can be used as the preferred tool in specific situations.
Clinical trials and safety evaluation:

The results of clinical trials, such as the safety and effectiveness evaluation of the single-port laparoscopic system, can be referred to to determine the applicability and reliability of new instruments.
Experienced physician selection:

The operation is usually performed by experienced surgeons, who can strictly select appropriate instruments and equipment based on their actual operating experience.
Management and maintenance:

Use the PDCA management model to standardize the management of urological surgical instruments and equipment in the operating room, reduce the number of failures, and extend the service life of the instruments.


What are the latest research advances in urological surgical instruments?

The latest research advances in urological surgical instruments are mainly concentrated in the following aspects:

Application of laser equipment: Laser equipment has shown high efficiency in the treatment of prostatic hyperplasia and urinary stones. This technology reduces operation time and recovery time by cutting and vaporizing tissue with precise beams.

Use of surgical robots: Since the introduction of the da Vinci robot in 2006, robotic surgery has been widely used in the field of urology. Especially in complex operations such as adrenal tumors, kidney tumors, bladder tumors and prostate tumors, robotic surgery provides higher precision and safety.

Development of single-port laparoscopic technology: Single-port laparoscopic technology has developed rapidly since it was introduced to China in 2008. This technology performs all operations through a small incision, greatly reducing surgical trauma and recovery time. In the future, with the accumulation of surgical skills and the development of new surgical instruments, single-port laparoscopic surgery will gradually overcome existing difficulties and improve surgical efficiency.

Development of blue laser surgical system: The world's first blue laser surgical system has been successfully developed and is planned to be used for surgery of superficial diseases in the cavity and the treatment of other diseases such as urology. This new laser system is expected to further improve the accuracy and safety of surgery.

Minimally invasive and precise surgical techniques: Modern urological surgery emphasizes minimally invasive and precise surgery to reduce patient pain and improve surgical results. For example, Bons Medical is constantly exploring how to accurately, efficiently and safely remove lesions in the field of urological surgery.


What is the role of surgical instruments in improving the success rate of surgery?


The role of surgical instruments in improving the success rate of surgery is mainly reflected in the following aspects:

Accurately execute the doctor's operating intentions: Surgical instruments are carefully designed with high professionalism and precision to ensure that every action of the doctor during the operation can be accurately executed. These instruments are an extension of the surgeon's skills and expertise, ensuring precise operation, incision and removal.

Provide tools with high precision, high reliability and high safety: Specialized tools such as neurological and cardiovascular surgical instruments have these characteristics, which can help doctors perform delicate surgical operations and improve the success rate of operations.

Meet different surgical needs: Doctors will choose instruments of different specifications and models according to the type and size of the operation to meet the needs of the operation. For example, vascular surgeons usually use blades of specific sizes to puncture the aorta.

Improve surgical experience and healing effect: New technologies such as minimally invasive surgical systems, 4K ultra-high-definition displays, portable medical imaging equipment, and new laser lithotripsy instruments provide surgeons with a more precise and controllable surgical experience, improving the success rate and healing effect of the operation.

Reduce postoperative complications: Perioperative auxiliary devices such as ECMO, IABP, LVAD, etc., can be used to assist at the right time, which can reduce the occurrence of postoperative complications, improve the patient's cardiac function, and effectively reduce the patient's mortality rate.

Ensure the smooth progress of the operation: Sterilized and sterilized surgical instruments can ensure the smooth progress of the operation and improve the success rate of the operation. Unsterilized and unsterilized surgical instruments may cause the operation time to be prolonged or even make certain surgical operations impossible.


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