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Urology Surgical Instruments
Retrograde Bougies Hey Grooves
| Application | Urethral Dilation |
| Material | Stainless Steel |
| Sterile/ Non Sterile | Sterile |
| Disposable/ Reusable | Reusable |
| Usage/Application | Hospital |
SEMI RIGID BIOPSY FORCEP
| Material | Stainless Steel |
| Disposable/ Reusable | Reusable |
| Brand | Sculape India |
| Usage/ Application | Hospital |
| Country of Origin | Made in India |
A semi-rigid biopsy forceps is a specialized medical instrument used in various endoscopic procedures to obtain tissue samples for diagnostic and therapeutic purposes. It is a crucial tool for minimally invasive procedures where a balance between flexibility and control is required.
Here is a detailed description of its features and applications:
Key Features:
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Semi-Rigid Shaft: The defining characteristic is the shaft, which is not completely rigid like a traditional surgical instrument, but is not as flexible as a fully flexible endoscope. This design allows it to navigate the anatomical curves of internal organs while still providing enough rigidity for precise control and force transmission. This is particularly useful in urology, hysteroscopy, and other procedures where a degree of maneuverability is necessary but full flexibility is not required.
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Biopsy Jaws: The working end of the forceps features small jaws designed for grasping and excising tissue. These jaws come in various shapes and sizes to suit different applications:
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Cup Jaws: The most common type, resembling small cups that close to "bite" a small piece of tissue. They can be single-action (one jaw moves) or double-action (both jaws move) for more precise and effective cutting.
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Alligator Jaws: These jaws have a serrated or toothed design, providing a secure grip on tissue or for retrieving foreign bodies.
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Punch Jaws: These are used to obtain a cylindrical tissue sample, often in procedures like cervical biopsies.
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Operating Handle: The handle is designed for a secure, comfortable, and controlled grip. It typically features a thumb ring and a wide groove for the index and middle fingers, allowing the user to transmit force and manipulate the jaws with precision. Some models are rotatable, allowing the user to turn the jaws without having to twist the entire instrument.
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Material: Semi-rigid biopsy forceps are typically made from medical-grade stainless steel, ensuring durability, resistance to corrosion, and the ability to withstand repeated sterilization cycles (e.g., autoclaving).
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Size (French Scale): The diameter of the forceps is measured in French units (Fr), which is a common way to size endoscopic instruments. The size of the forceps must be compatible with the working channel of the endoscope being used (e.g., a 5 Fr forceps for a cystoscope with a 5 Fr channel).
Applications:
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Urology: Semi-rigid forceps are widely used in cystoscopy for taking biopsies from the bladder or urethra, as well as for removing small stones or foreign bodies.
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Gynecology: In hysteroscopy, they are used to perform biopsies of the uterine lining (endometrium) or to remove polyps and fibroids.
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ENT (Ear, Nose, and Throat): They can be used in procedures like laryngoscopy or bronchoscopy to obtain tissue samples from the respiratory tract.
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Nephroscopy: They are used in procedures for kidney biopsies (PCNL)
LISTERS URETHRAL DILATORS
| Material | Stainless Steel |
| Brand | Sculape India |
| Disposable/ Reusable | Reusable |
| Color | Silver |
| Usage/Application | Hospital |
Clutton Urethral Dilators (set of 12 pcs)
| Material | Stainless Steel |
| Brand | Sculape india |
| Disposable/ Reusable | Reusable |
| Color | Silver |
| Usage/Application | Hospital |
Lister Urethral Dilator
| Material | Stainless Steel |
| Brand | Sculape India |
| Disposable/ Reusable | Reusable |
| Color | Silver |
OPERATIVE SHEATH 2.9 MM
Product Brochure
| Usage/Application | Hospital |
| Brand | Sculape India |
| Categories | Hysteroscopes |
| Country of Origin | Made in India |
An operative sheath, particularly a 2.9mm model, is a specialized medical instrument used in operative hysteroscopy. While similar to a diagnostic sheath, its key feature is the presence of an additional channel designed to accommodate surgical tools. This allows a surgeon to not only view the inside of the uterus but also perform surgical procedures without having to remove the scope from the patient.
Key Features
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Diameter: The 2.9mm size refers to the diameter of the hysteroscope that fits inside the sheath. The outer diameter of the complete sheath with its channels for fluid and instruments will be larger than 2.9mm, often around 5mm or 5.5mm. This smaller size allows for a less traumatic insertion into the uterus, often without the need for significant cervical dilation.
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Working Channel: This is the defining feature of an operative sheath. It provides a dedicated passage for the insertion of various semi-rigid surgical instruments, such as:
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Scissors: For cutting polyps, adhesions, or fibroids.
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Graspers/Forceps: For grasping and removing tissue samples, polyps, or foreign bodies.
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Biopsy Instruments: For obtaining tissue samples for pathology.
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Fluid Channels: Like a diagnostic sheath, an operative sheath has channels for the continuous flow of a distention medium (usually saline). The inflow channel brings fluid into the uterus to distend the cavity for better visualization, while an outflow channel removes fluid, blood, and debris, ensuring a clear view throughout the procedure. Some models feature a "continuous-flow" design for optimized fluid management.
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Compatibility: The sheath is designed to be compatible with specific hysteroscope models, typically those with a 2.9mm diameter. Many are designed to be compatible with major brands like Karl Storz, allowing for versatility in a surgical setting.
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Material: Made from high-quality, medical-grade stainless steel for durability, corrosion resistance, and the ability to be sterilized through repeated autoclaving.
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Ergonomic Design: The instrument's design focuses on providing the surgeon with a comfortable, secure, and precise grip, which is essential for performing delicate surgical maneuvers.
Applications
The 2.9mm operative sheath is a versatile tool used in gynecological procedures, primarily for:
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Polypectomy: The removal of uterine polyps.
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Myomectomy: The removal of small uterine fibroids.
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Adhesiolysis: The cutting and removal of intrauterine adhesions (scar tissue), a condition known as Asherman's syndrome.
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Directed Biopsies: Taking precise tissue samples from suspicious areas within the uterus, such as the uterine lining (endometrium).
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Removal of Foreign Bodies: Such as displaced intrauterine devices (IUDs) or retained products of conception.
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 days
HYSTERSCOPE OPERATIVE SHEATH 4MM
Product Brochure
| Usage/Application | Hospital |
| Brand | Sculape India |
| Categories | Hysteroscopes |
| Country of Origin | Made in India |
An operative hysteroscopy sheath with a 4mm diameter is a crucial instrument in gynecology, designed to perform surgical procedures inside the uterus in a minimally invasive manner. It is distinct from a diagnostic sheath due to its dedicated channel for surgical tools, allowing a surgeon to operate while maintaining a clear view of the uterine cavity.
Key Features
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Integrated Working Channel: This is the most important feature. The sheath has a dedicated channel that allows for the passage of semi-rigid, flexible, or semi-flexible surgical instruments, such as scissors, graspers, or biopsy forceps. This eliminates the need to remove and re-insert the hysteroscope and sheath for each surgical maneuver, making the procedure more efficient and less traumatic for the patient. The size of this channel is often measured in French units (e.g., 5 Fr), indicating the compatibility with various instruments.
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Continuous Flow System: The sheath contains separate inflow and outflow channels for a distention medium (typically saline). This continuous flow is essential for operative hysteroscopy because it serves two vital functions:
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Distention: It inflates the uterine cavity, providing the surgeon with a clear working space.
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Clarity: It continuously flushes away blood, tissue debris, and mucus, ensuring a consistently clear, unobstructed view of the surgical site.
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Compatibility: A 4mm operative sheath is specifically designed to work with a 4mm hysteroscope telescope. The telescope is inserted into the main channel of the sheath, and the two components work together to provide both visualization and a platform for surgical action.
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Outer Diameter: While it accommodates a 4mm telescope, the outer diameter of the complete operative sheath, which includes the additional channels for instruments and fluid, is larger, often ranging from 5mm to 7.5mm. Despite this, its size is still considered minimally invasive, which can reduce the need for significant cervical dilation and patient discomfort.
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Material and Design: The sheath is made from high-grade medical stainless steel, ensuring it is durable, resistant to corrosion, and can be safely sterilized through autoclaving. The distal tip is often designed to be atraumatic to minimize tissue damage during insertion.
Applications
The 4mm operative sheath is an indispensable tool for a variety of in-office and outpatient hysteroscopic procedures, including:
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Polypectomy: The removal of uterine polyps.
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Myomectomy: The removal of small uterine fibroids.
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Adhesiolysis: The division of intrauterine adhesions (scar tissue), which can be a cause of infertility.
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Directed Biopsy: Obtaining a precise tissue sample from a suspicious area for pathological analysis.
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Foreign Body Removal: Such as the retrieval of a misplaced IUD (intrauterine device).
In summary, a 4mm operative hysteroscopy sheath is a sophisticated instrument that combines the ability to visualize the uterine cavity with the capacity to perform surgical procedures. Its multi-channel design enables surgeons to carry out a range of treatments safely and effectively in a minimally invasive setting.
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 days
Cluttion Urethral Dialators
| Material | Stainless Steel |
| Brand | Sculape India |
| Color | Silver |
| Usage/Application | Hospital |
Lister Urethral Dilator
| Material | Stainless Steel |
| Brand | Sculape India |
| Usage/Application | Hospital |
DIAGNOSTIC SHEATH 2.9MM
| Usage/Application | Hospital |
| Brand | Sculape India |
| Categories | Hysteroscopes |
| Country of Origin | Made in India |
A diagnostic sheath is a specialized medical instrument, and a 2.9mm diagnostic sheath is specifically designed for use in minimally invasive diagnostic procedures, most commonly hysteroscopy. Its primary function is to create a channel for the hysteroscope and other instruments to be introduced into the uterine cavity, allowing for safe and clear visualization.
Key Features
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Diameter: The 2.9mm refers to the outer diameter of the sheath. This size is considered "mini" or "micro" and is ideal for diagnostic procedures. Its small size is less traumatic and more comfortable for the patient, and can often be used without the need for cervical dilation.
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Material: Diagnostic sheaths are typically made from high-quality, medical-grade stainless steel. This material is chosen for its durability, resistance to corrosion, and ability to withstand repeated sterilization cycles, such as autoclaving.
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Channels: The sheath has a working channel through which a hysteroscope is passed. It may also have additional channels for the inflow and outflow of fluids. This is crucial for hysteroscopy, as continuous fluid flow distends the uterine cavity and clears away blood and debris, ensuring a clear and magnified view for the surgeon.
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Compatibility: A 2.9mm diagnostic sheath is specifically designed to be compatible with a 2.9mm hysteroscope. It is essential that the sheath and hysteroscope are a matched set to ensure proper function and avoid damage to the instruments or injury to the patient.
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Ergonomic Design: The sheath and its attached components are designed for easy handling and manipulation by the surgeon, ensuring smooth insertion and precise control during the procedure.
Applications
The 2.9mm diagnostic sheath is primarily used in hysteroscopy, a procedure to examine the inside of the uterus. Common applications include:
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Diagnosing Uterine Abnormalities: It is used to diagnose conditions such as uterine polyps, fibroids, adhesions (Asherman's syndrome), and congenital abnormalities.
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Investigating Abnormal Uterine Bleeding: A hysteroscope with a diagnostic sheath allows a surgeon to directly visualize the uterine lining and identify the cause of abnormal bleeding.
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Confirming Test Results: It can be used to confirm or further investigate the results of other diagnostic tests, such as ultrasound or hysterosalpingography (an X-ray dye test of the uterus and fallopian tubes).
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Assessing Infertility: It is an important tool in the investigation of infertility, helping to identify any intrauterine issues that may be preventing conception or leading to recurrent miscarriages.
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 days
HYSTERSCOPE DIAGNOSTIC SHEATH 4MM
| Usage/Application | Hospital |
| Brand | Sculape India |
| Categories | Hysteroscopes |
| Country of Origin | Made in India |
A Hysteroscopy Diagnostic Sheath with a 4mm diameter is a key instrument used in gynecological procedures for examining the uterine cavity. This specific size and type of sheath is designed to create a passage for a hysteroscope and is particularly suited for in-office or outpatient diagnostic procedures.
Key Features
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Diameter: The 4mm refers to the outer diameter of the sheath. This size is a good balance between the smaller "mini" or "micro" scopes (around 2.9mm) and larger operative sheaths. It is still considered minimally invasive, and its use may be more comfortable for the patient, often reducing the need for extensive cervical dilation.
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Purpose: As a diagnostic sheath, its primary function is to facilitate a clear view of the uterine cavity. Unlike an operative sheath, it does not have a separate channel for surgical instruments.
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Fluid Channels: The sheath is designed with at least two distinct channels: an inflow channel and an outflow channel.
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Inflow Channel: This channel allows for the continuous flow of a distention medium (typically saline) into the uterus. The fluid distends the uterine walls, providing a clear field of vision for the surgeon.
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Outflow Channel: This channel facilitates the exit of the fluid, along with any blood, mucus, or debris. The continuous circulation of fluid is essential for maintaining a clear and magnified view throughout the procedure. Some sheaths feature a "continuous-flow" design for highly efficient fluid management.
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Compatibility: A 4mm diagnostic sheath is specifically designed to be used with a 4mm hysteroscope telescope. The dimensions of the sheath and the telescope must match precisely for the system to work effectively and safely.
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Material: It is crafted from high-grade medical stainless steel, which ensures the instrument is durable, resistant to corrosion, and can withstand repeated sterilization cycles, such as autoclaving.
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Ergonomics: The sheath is designed with an ergonomic handle to provide the surgeon with a secure, comfortable, and precise grip, which is crucial for the delicate maneuvers required during a hysteroscopy.
Applications
The 4mm diagnostic sheath is a cornerstone of diagnostic hysteroscopy. It is used for:
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Diagnosis of Abnormalities: To visualize and diagnose conditions like uterine polyps, fibroids, intrauterine adhesions, or a uterine septum.
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Investigating Abnormal Uterine Bleeding: To identify the cause of irregular or heavy menstrual bleeding.
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Infertility Work-up: To assess the uterine cavity for any issues that could be preventing a successful pregnancy.
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Confirmation of Other Test Results: To confirm or further investigate findings from other diagnostic tests, such as an ultrasound or a hysterosalpingogram (HSG).
In summary, a 4mm diagnostic sheath is a highly specialized, non-surgical instrument that is indispensable for performing safe and effective diagnostic hysteroscopy, providing clear visualization of the uterine cavity to help diagnose a variety of gynecological conditions.
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 days
HYSTERSCOPE (TELESCOPE) AUTOCLAVABLE 4MM 30 DEGREE
Product Brochure
| Usage/Application | Hospital |
| Sterility | Non Sterile |
| Country of Origin | Made in India |
A hysteroscopy telescope is the optical component of a hysteroscope, which is a key instrument in gynecological procedures. A "4mm 30 degree autoclavable" telescope has specific characteristics that define its function and use.
Key Features
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Diameter (4mm): The 4mm measurement refers to the outer diameter of the telescope itself. This size is commonly used in both diagnostic and operative hysteroscopy. It is a good balance between providing a wide, clear image and being small enough for minimally invasive procedures.
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Angle of View (30 Degrees): This is a crucial optical feature. A 30-degree angle of view, also known as a "fore-oblique" view, means the lens is angled at 30 degrees from the long axis of the telescope. This angle offers a panoramic and wide field of view, which is highly beneficial for scanning the entire uterine cavity. Unlike a 0-degree straight-ahead scope, a 30-degree scope allows the surgeon to visualize areas that might be obscured in a straight view, such as the uterine cornua (where the fallopian tubes enter) and around the back of polyps or fibroids.
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Autoclavable: This is a vital feature for a reusable surgical instrument. "Autoclavable" means the telescope can withstand the high-temperature and high-pressure steam sterilization process (typically at 134°C or 273°F) required to kill all microorganisms and ensure the instrument is sterile for the next procedure. This durability is achieved through the use of high-quality materials and construction, such as German stainless steel and special sealing processes.
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Optics: High-quality hysteroscopes, especially from leading manufacturers, utilize advanced optical systems like the Hopkins rod-lens system. This technology uses glass rods to transmit light and image, providing a superior, brighter, and higher-resolution image compared to older systems. The lens at the tip is often made of sapphire to be highly scratch-resistant and durable.
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Compatibility: The 4mm 30-degree telescope is designed to be used in conjunction with a corresponding sheath—either a diagnostic or operative sheath—that provides channels for fluid management and, in operative sheaths, for surgical tools. The telescope fits precisely into the sheath to form the complete hysteroscope.
Applications
The 4mm 30-degree autoclavable hysteroscopic telescope is a versatile tool used in a variety of gynecological procedures, including:
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Diagnostic Hysteroscopy: For evaluating the uterine cavity to diagnose conditions such as abnormal uterine bleeding, infertility, or recurrent miscarriages. The wide field of view is excellent for a comprehensive survey of the endometrium.
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Operative Hysteroscopy: When paired with an operative sheath, this telescope allows for the performance of a wide range of in-office surgical procedures, such as the removal of polyps, small fibroids, or intrauterine adhesions. The 30-degree angle helps in navigating around obstructions to perform precise surgical maneuvers.
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 days
SS Foleys Adaptor
Minimum Order Quantity: 6 Piece
| Surface Finish | Polished |
| Features | leak-proof connection |
| Country of Origin | Made in India |
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 days
- Packaging Details: Individual and bulk packaging is available
HYSTERSCOPE TELESCOPE 2.9MM 40 DEGREE
| Type | Telescope |
| Usage/Application | Hospital |
| Sterility | Non Sterile |
| Country of Origin | Made in India |
A hysteroscopic telescope is the primary component of a hysteroscope system, providing the crucial visualization needed for gynecological procedures. The specific designation "2.9mm 40 degree" refers to its key technical specifications: its diameter and its field of view.
Key Features
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2.9mm Diameter: This measurement refers to the outer diameter of the telescope itself. This size is considered "mini" or "micro," and is designed for minimally invasive, often office-based hysteroscopy. Its narrow profile allows for atraumatic insertion into the uterus, frequently without the need for cervical dilation, which enhances patient comfort and can reduce the need for anesthesia.
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40-Degree Angle of View: This is a critical optical feature. The "angle of view" or "direction of view" describes the angle at which the telescope's lens looks relative to the long axis of the scope. A 40-degree angle provides a wide, oblique or "fore-oblique" view. This panoramic perspective is highly advantageous because it allows the surgeon to visualize a large area of the uterine cavity and to look around anatomical curves, such as at the corners (cornua) where the fallopian tubes enter the uterus. While a 0-degree scope provides a straight-ahead view, a 40-degree angle offers superior visualization for scanning the entire endometrial cavity for pathology like polyps or fibroids.
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High-Quality Optics: Modern hysteroscopes, especially those from reputable manufacturers, utilize advanced optical systems (e.g., Hopkins rod lens system) to deliver a clear, high-resolution, and bright image. The telescope's internal lenses and fiber-optic bundles work together to transmit light from an external source and the image back to the eyepiece or a video camera.
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Rod Lens System: Many high-quality rigid telescopes, including those used in hysteroscopy, employ a rod lens system. This technology uses a series of glass rods instead of conventional lenses, allowing for superior image resolution, brightness, and color rendition.
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Compatibility: A 2.9mm hysteroscope telescope is designed to be used in conjunction with a corresponding diagnostic or operative sheath. The sheath provides the necessary channels for fluid management (inflow/outflow) and, in the case of operative sheaths, for the insertion of surgical instruments.
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Sterilization: The telescope is made from durable, medical-grade materials, and it is fully autoclavable, meaning it can withstand the high-temperature and high-pressure steam sterilization process required for reusable surgical instruments.
Applications
The 2.9mm 40-degree hysteroscope telescope is a versatile instrument primarily used in office-based hysteroscopy for a wide range of diagnostic and operative procedures, including:
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Diagnostic Procedures:
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Evaluating the uterine cavity in cases of abnormal uterine bleeding.
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Investigating infertility or recurrent miscarriages.
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Visualizing uterine abnormalities such as polyps, fibroids, or a uterine septum.
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Minimally Invasive Operative Procedures:
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Targeted biopsies of suspicious lesions.
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Removal of small polyps or adhesions.
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These procedures are performed by inserting surgical tools through the working channel of an operative sheath that is used with the telescope.
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In summary, a 2.9mm 40-degree hysteroscope telescope is a specialized, high-precision optical instrument that is a cornerstone of modern gynecology. Its small diameter and wide field of view make it an ideal tool for comfortable, safe, and effective diagnosis and treatment of a variety of intrauterine conditions.
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 days
SS Curcumcision Device
Product Brochure
| Diameter | 15 mm |
A circumcising device, also known as a circumcision clamp or ring, is a medical instrument used to perform a male circumcision procedure. These devices are designed to simplify the procedure, reduce bleeding, and often eliminate the need for sutures. They are an alternative to the traditional surgical method of using a scalpel and sutures.
Key Features and Types:
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Plastibell: This device consists of a plastic bell-shaped ring that fits over the glans (the head of the penis). The foreskin is then tied over the bell with a ligature. The foreskin tissue outside the ligature dies and falls off within a week, along with the bell.
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Mogen Clamp: This is a hinged metal clamp that is used to crush and sever the foreskin. The foreskin is pulled through the clamp, and the clamp is then closed to apply pressure and cut the tissue.
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Gomco Clamp: Similar to the Mogen clamp, this is a hinged metal clamp that uses a bell-shaped part to protect the glans. The foreskin is pulled over the bell, and a plate is used to apply pressure to the foreskin, which is then cut.
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Tara Klamp: A newer, single-use device that is similar to the Gomco and Mogen clamps. It consists of a plastic ring and a clamp that is used to apply pressure to the foreskin, which is then cut.
How They Work:
Circumcision devices typically work by one of two methods:
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Crushing and Cutting: Devices like the Gomco and Mogen clamps crush the foreskin tissue, which prevents bleeding, and then a scalpel or other cutting tool is used to remove the tissue.
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Ischemia and Necrosis: Devices like the Plastibell create a tight ligature around the foreskin, which cuts off the blood supply. The foreskin tissue then dies (necrosis) and falls off on its own.
Advantages:
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Reduced Bleeding: Most devices are designed to minimize blood loss during the procedure.
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Faster Procedure Time: The use of a device can often shorten the duration of the circumcision compared to traditional methods.
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No Sutures (in some cases): Devices like the Plastibell do not require sutures, as the foreskin is not surgically cut with a scalpel.
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Standardized Procedure: The use of a device can make the procedure more consistent and predictable.
Additional Information:
- Production Capacity: 10,000
- Delivery Time: 5-6 Days
- Packaging Details: Individual and Bulk Packaging is available