The present invention relates to apparatus and methods for endoluminal, transluminal procedures, including per-oral, transgastric and/or per-anal, transcolonic procedures. More particularly, the present invention relates to methods and apparatus for performing therapeutic and/or diagnostic procedures on various digestive or other organs or body regions, conducted via instruments inserted endoluminally and transgastrically/transcolonically.
In an effort to reduce the invasiveness of treatments for gastrointestinal (“GI”) disorders, gastroenterologists, GI surgeons and others are pursuing minimally inivasive endoluminal treatments for such disorders. Treatments through natural GI passageways are being pursued utilizing instruments advanced per-orally and/or per-anally. See, for example, Applicant's co-pending U.S. patent application Ser. No. 10/734,547, filed Dec. 12, 2003, which is incorporated herein by reference in its entirety.
In view of advances in methods and apparatus for minimally invasive endoluminal GI treatment, it would be desirable to provide methods and apparatus for diagnostic or therapeutic treatment of organs of the digestive system or other parts of the body via instruments advanced per-orally and transgastrically and/or per-anally and transcolonically, or a combination thereof. Transgastric procedures from the interior of the stomach to the exterior have been described previously in U.S. patent application Publication No. 2003/0216613 (application Ser. No. 10/390,443, filed Mar. 17, 2003) to Suzuki et al. However, while that reference discusses curvable overtubes that may be maintained in a curve, it does not describe an overtube or guide that may be shape-locked or rigidized along its length.
Methods and apparatus are provided for accessing digestive or other organs (as well as other parts of the body) endoluminally and transluminally via instruments passed into the GI tract per-orally and/or per-anally. The instruments may, for example, pass transluminally out of the stomach or the colon for performing diagnostic or therapeutic surgical procedures.
In one aspect of the invention, apparatus comprising a flexible, rigidizable overtube is provided that may be inserted per-orally or per-anally within the lumen of a patient's GI tract. The overtube preferably is flexible, rigidizable and maneuverable to allow other tools or devices to be inserted through the overtube body. A proximal region of the overtube may serve as a per-oral access platform from, e.g., the mouth to the esophageal, gastric or intestinal lumen. Alternatively, the proximal region may provide a per-anal access platform from, e.g., the rectum to the colon. A distal region of the overtube optionally may be configured to breach the GI lumen from the interior to the exterior and/or to secure against a wall of the lumen, e.g., to facilitate transluminal passage of tools or devices out of the lumen. When the distal region reversibly secures the overtube to the wall of the GI lumen in the vicinity of the luminal breach, a lumen of the overtube may be aligned with the luminal breach.
As will be apparent, the distal region optionally may be provided as a separate instrument utilized in conjunction with the overtube. Furthermore, the distal region may simply secure the overtube to the wall of the GI lumen without puncturing or breaching the lumen. In such a configuration, the GI lumen optionally may be breached by additional apparatus used in conjunction with the overtube and distal region, such as a guide or tool described hereinafter. As yet another option, the overtube may not be secured to the wall of the GI lumen at all; rather, the overtube may pass transluminally therethrough.
The apparatus optionally also may comprise a guide advanceable through the lumen of the overtube, past the distal region, and transluminally out of the GI tract from the interior to the exterior of the GI lumen. Diagnostic and/or therapeutic tools or instruments may be advanced through or along the guide for diagnostic purposes or for performing various therapeutic surgical procedures. The tools/instruments alternatively may be advanced transluminally directly through the overtube without use of an intermediary guide. As yet another alternative, the overtube may be advanced transluminally out of the GI lumen and may serve as a guide for the tools/instruments.
Once the guide has been advanced within the lumen of the overtube and passed transluminally, e.g., out of the stomach or the colon, the guide may provide an access platform for transluminal insertion of tools, instruments, devices, etc., through the overtube body to target organs or other areas of interest in the patient's body external to the GI lumen. The guide optionally may comprise articulating arms that facilitate maneuvering around obstacles.
The tools and instruments advanced through the guide provide means for diagnosing and/or performing functions on tissue at regions of interest within the patient's body. These functions include, but are not limited to, visualizing, characterizing, sampling, grasping, maneuvering, folding, piercing, suturing, approximating, and securing tissue. Additional functions, such as performing gastroenterostomy, will be apparent.
Methods of using the apparatus are also provided.
The present invention relates to apparatus and methods for endoluminal, transluminal procedures, including per-oral, transgastric and/or per-anal, transcolonic procedures. More particularly, the present invention relates to methods and apparatus for performing therapeutic and/or diagnostic procedures on various digestive or other organs or body regions, conducted via instruments inserted endoluminally and transgastrically/transcolonically.
With reference to
In
In
As seen in
As described hereinafter with respect to
As seen in
Referring now to
In
Inflatable members 10 and 20 optionally may comprise multiple balloon members, such as triple balloon members 30 of
As seen in
Referring now to
With reference now to
Camera member 107 is an articulating visualization element for capturing live images of the area on which tools 4 are operating. The camera member illustratively is provided on the distal end of guide 3. Camera member 107 may be deployed by articulating the member off-axis from the longitudinal axis of guide 3. This may also serve to expose the distal opening(s) of lumen(s) within guide 3 to allow advancement of instruments 4 distal to the guide. Articulating visualization elements, as well as articulating lumens and tools, are described, for example, in Applicant's co-pending U.S. patent application Ser. No. 10/824,936, filed Apr. 14, 2004, which is incorporated herein by reference in its entirety.
Referring again to
Referring again to
Referring now to
As seen in
In
In
With reference now to
Instrument 200 is configured to engage, fold and/or secure tissue. The assembly illustratively comprises a catheter or tubular body 212, which may be sufficiently flexible as to facilitate advancement into a body lumen, e.g., transorally, endoluminally, percutaneously, laparoscopically, etc. Tubular body 212 may be configured to be torqueable through various methods, e.g., utilizing a braided tubular construction. Tissue manipulation assembly 214 is located at the distal end of tubular body 212 and is generally used to contact, engage, fold and/or secure tissue.
Tissue manipulation assembly 214 comprises launch tube 218 extending from the distal end of body 212 and in-between the arms of upper extension member or bail 220. Launch tube 218 may define launch tube opening 224 through which needle 225 may be advanced, e.g., for deploying securing elements across engaged tissue. Launch tube 218 may be pivotally connected near or at its distal end via hinge or pivot 222 to the distal end of first bail 220. Second extension member or bail 226 may similarly extend from the distal end of body 212 in a longitudinal direction substantially parallel to first bail 220. First bail 220 and second bail 226 need not be completely parallel so long as an open space between first bail 220 and second bail 226 is sufficiently large to accommodate the drawing of tissue between the two members.
Tissue acquisition member 228 may be an elongate member, e.g., a wire, hypotube, a composite thereof, etc., which terminates at previously described tissue grasper 130. Tissue acquisition member 228 may extend through body 212 and distally between first bail 220 and second bail 226. Acquisition member 228 may also be translatable and actuable relative to body 212 such that tissue grasper 130 is able to translate longitudinally between first bail 220 and second bail 226, and to actuate for engaging tissue.
As seen in
Once anchor 300 has been deployed, needle 225 may be retracted, and grasper 130 may release the engaged tissue. In
As seen in the cross-sectional view of
Although various illustrative embodiments are described above, it will be evident to one skilled in the art that various changes and modifications are within the scope of the invention. It is intended in the appended claims to cover all such changes and modifications that fall within the true spirit and scope of the invention.
This application claims benefit from the filing date of U.S. provisional patent application Ser. No. 60/579,715, filed Jun. 14, 2004, which is incorporated herein by reference in its entirety.
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