The disclosure relates to an endoscopic cannula.
A cannula is a tube that can be inserted into the body for the delivery or removal of fluid. In simple terms, a cannula can surround the inner or outer surfaces of a trocar needle thus extending the effective needle length by at least half the length of the original needle. Conventional endoscope cannula for ureteroscopy is flexible. This leads to the difficulty of moving forward when encountering obstacles. As a result, the flexible cannula may not be able to reach the pathological site.
The disclosure provides an endoscopic cannula that comprises a hard sheath or a hard sheath and a soft sheath.
Provided is an endoscopic cannula, comprising: a handle; a sheath; a core rod disposed in the sheath and capable of sliding along an axial direction of the sheath. The core rod comprises a first channel, a second channel, and a third channel which are sequentially connected to one another. The handle comprises a first joint configured to guide a lead wire into the first channel, a second joint configured to guide water into the second channel, and a third joint configured to guide an endoscope into the third channel. The sheath comprises a first end and a second end, and the second end is disposed in the handle.
The sheath is a hard sheath; the hard sheath comprises a first end exposed out of the handle and a second end disposed in the handle; the hard sheath comprises an axial straight hole, and the core rod is in clearance fit with the axial straight hole.
The sheath is a combination of a soft sheath and a hard sheath; the hard sheath comprises a first end exposed out of the handle and a second end disposed in the handle; the soft sheath comprises a first end and a second end, and the second end of the soft sheath is coaxial and integrated with the first end of the hard sheath; an inner diameter and an outer diameter of the soft sheath are the same as that of the hard sheath; the soft sheath and the hard sheath each comprise an axial straight hole, and the core rod is in clearance fit with the axial straight hole; the soft sheath is provided with a steering wire, and the handle comprises a steering mechanism on which the steering wire is fixed.
The first end of the soft sheath is provided with a locking cap; the locking cap comprises a metal material and is coaxial with the soft sheath; one end of the steering wire is fixed on the locking cap, and the other end of the steering wire passes through the soft sheath and the hard sheath to fixedly connect to the steering mechanism.
One side of the handle comprises a hand shank; the steering mechanism is disposed on the hand shank; and the hand shank comprises a plurality of grooves.
The handle comprises a sleeve; the sleeve comprises a first end, a second end, and an axial through hole disposed between the first end and the second end; the axial through hole comprises a first section, a second section, and a third section; the hard sheath sequentially passes through the first section, the second section, and the third section and is fixed on the sleeve; the third section is a taper hole; the second end of the sleeve is provided with a location column, and the first joint, the second joint and the third joint are disposed on the location column.
The location column comprises a casing; the casing comprises a counter bore configured to receive the core rod; the counter bore comprises a first hole communicating with the first channel, a second hole communicating with the second channel, and a third hole communicating with the third channel; the first joint, the second joint and the third joint communicate with the first hole, the second hole, and the third hole, respectively; two sides of the casing each are provided with a connection plate and a fastener; two sides of the second end of the sleeve each are provided with a locating slot; and the locating slot matches the fastener in shape to lock the sleeve and the casing.
The second end of the sleeve is provided with a disc; the disc is coaxial with the sleeve and comprises a via hole communicating and coaxial with the third section of the axial through hole; the disc comprises a circumferential flange, and the locating slot is disposed on the circumferential flange.
Two connection rods are connected to the circumferential flange, and one end of each of the two connection rods is provided with a string bag for accommodating broken stones.
One side of the sleeve is provided with a suction channel; the suction channel comprises a first opening communicating with the third section of the axial through hole and a second opening configured to connect to a vacuum machine; the first opening of the suction channel is disposed between the via hole and the first section of the axial through hole.
The first channel shares one channel with the second channel, and the third channel is an independent channel.
The first channel, the second channel, and the third channel of the core rod are independent from each other.
The hard sheath and/or the soft sheath a head end provided with a plurality of circular holes.
Advantages of the endoscopic cannula according to embodiments of the disclosure are summarized as follows. As a transitional guiding device, the core rod can be used in the urological surgery with existing endoscopes to guide the ureteroscope to reach the operative site accurately. Specifically, the core rod and the sheath are guided by the lead wire to the operative site. The ureter can be observed under the endoscope, and when the ureter is blocked, the water can be injected into the axial through hole to remove the obstacle. When the core rod and the sheath reach the operative site, the core rod is withdrawn, a ureteroscope is inserted in the sheath to perform flexible ureteroscopy. During the operation, the position of the ureteroscope can be adjusted by turning the steering mechanism, so that the soft and hard sheath can enter the renal pelvis and calyces and can be positioned. The ureteroscope, together with the operation instrument, breaks the stones in the renal pelvis and calyces. A vacuum machine is connected to the suction channel of the handle. When the broken stones are observed, the vacuum machine is started, and the front end of the ureteroscope exits from the soft sheath. The negative pressure in the soft sheath will suck the broken stones out of the body. The broken stones are placed in the string bag. After the operation, the broken stones in the string bag are treated. Based on the endoscopic cannula comprising the core rod and the location column of the disclosure, the ureteroscope can move to the operative site accurately. The operation is easy and convenient, can reduce the amount of bleeding and the pain of the patients, and improves the operation efficiency and success rate.
In the drawings, the following reference numbers are used: 1. Handle; 1.1. Sleeve; 1.2. Disc; 1.3. Hand shank; 2. Sheath; 2.1. Hard sheath; 2.2. Soft sheath; 3. Core rod; 4. Location column; 4.1. Casing; 4.2. Counter bore; 5. First channel; 6. Second channel; 7. Third channel; 8. First joint; 9. Second joint; 10. Third joint; 11. Steering wire; 12. Steering mechanism; 13. First section; 14. Third section; 15. Locating slot; 16. First hole; 17. Second hole; 18. Third hole; 19. Fastener; 20. Locking cap; 21. Via hole; 22. Circumferential flange; 23. Connection rod; 24. String bag; 25. First opening; 26. Groove; 27. Connection plate; 28. Location blocks; 29. Groove; 30. Second opening; 31. Seal plug; 32. Second section.
To further illustrate, embodiments detailing an endoscopic cannula are described below. It should be noted that the following embodiments are intended to describe and not to limit the disclosure.
The sheath 2 is a hard sheath 2.1 or a combination of a soft sheath 2.2 and a hard sheath 2.1.
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The use method of the endoscopic cannula is described as follows. The sheath 2 and the core rod 3 are combined. The location column 4 and the handle 1 are combined (or the location column 4 and the handle 1 are not combined; one person holds the location column 4 for water injection operation, the other holds the handle 1 to make the sheath 2 enter the human body and control the direction of the sheath; the two persons operate the handle 1 and the location column 4 separately, thus reducing the difficulty and improving the operation efficiency). The endoscope is inserted into the third channel 7 of the core rod 3 (optionally, the endoscope can be fixed in the third channel 7 in advance), and the lead wire is inserted into the first channel 5. The core rod 3 and the sheath 2 are guided by the lead wire to the operative site. The ureter can be observed under the endoscope, and when the obstacle occurs, the water can be injected into the second channel 6 to remove the obstacle. When the core rod 3 and the sheath 2 reach the operative site, the core rod 3 is extracted, a ureteroscope is inserted in the sheath 2 to perform flexible ureteroscopy. During the operation, the position of the ureteroscope can be adjusted by turning the steering mechanism 12, so that the soft and hard sheath can enter the renal pelvis and calyces and can be positioned. The ureteroscope, together with the operation instrument, breaks the stones in the renal pelvis and calyces. A vacuum machine is connected to the suction channel of the handle. When the broken stones are observed, the vacuum machine is started, and the front end of the ureteroscope exits from the soft sheath 2.2. The negative pressure in the soft sheath 2.2 will suck the broken stones out of the body. The broken stones are placed in the string bag 24. After the operation, the broken stones in the string bag 24 are treated. Based on the endoscopic cannula comprising the core rod 3 and the location column 4 of the disclosure, the ureteroscope can move to the operative site accurately. The operation is easy and convenient, can reduce the amount of bleeding and the pain of the patients, and improves the operation efficiency and success rate.
It will be obvious to those skilled in the art that changes and modifications may be made, and therefore, the aim in the appended claims is to cover all such changes and modifications.
This application is a continuation-in-part of International Patent Application No. PCT/CN2017/096214 with an international filing date of Aug. 7, 2017, designating the United States, now pending, the contents of which, including any intervening amendments thereto, are incorporated herein by reference. Inquiries from the public to applicants or assignees concerning this document or the related applications should be directed to: Matthias Scholl P. C., Attn.: Dr. Matthias Scholl Esq., 245 First Street, 18th Floor, Cambridge, Mass. 02142.
Number | Date | Country | |
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Parent | PCT/CN2017/096214 | Aug 2017 | US |
Child | 16784224 | US |