PubMed Health⌕ Search

PubMed · 1455872

Endoscopic intervention for enteral access.

Abstract

Contrary to total parenteral nutrition with its relatively recent introduction into modern clinical medicine, enteral nutrition has a long and colorful history. Prior to development of fiberoptic endoscopy, physicians attempting to feed patients who could not or would not eat were limited to the blind placement of intestinal tubes or radiologically assisted placement of these devices. Previous to these modern attempts, the use of nutrient enemas was attempted for which there was evidence of occasional success. With the introduction of fiberoptic flexible endoscopy, guidance of tubes into the upper intestinal tract under direct vision became feasible. The manner in which tubes were positioned, advanced, or manipulated are myriad and attest to the ingenuity of clinicians. A revolution in endoscopic intervention occurred with the introduction of the percutaneous endoscopic gastrostomy in 1980. This provided secure access to the stomach without a laparotomy. This technique was also modified to allow decompression of the stomach with feeding distally into the small intestine and also direct puncture and placement of tubes into the small intestine. The most recent advance in enteral nutrition is taking place at the present time with the introduction of laparoscopic techniques in the creation of gastrostomies and jejunostomies.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

T A Stellato. Endoscopic intervention for enteral access.. https://doi.org/10.1007/bf02067059

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Endoscopic controlled intramedullary fracture reduction. A case report about closed fracture reduction under visual control.

Intramedullary bone endoscopy (IBE) was introduced as a new endoscopic technique in the year 2002 to achieve and manipulate the medullary canal of long bone under direct visual control. We report on a patient with a proximal femur fracture, where the new technique of IBE was used for intramedullary fracture reduction under visual control for the first time. Thus, the intraoperative use of an image intensifier was reduced.

Endoscopes↗

Removal of a pellet from the left orbital cavity by image-guided endoscopic navigation.

In the cranio-maxillofacial field, computer-aided surgery based on computed tomography data is becoming increasingly important. Complex surgical procedures can be performed utilizing preoperative imaging to provide real-time localization of surgical instruments in the surgical field. Image-data-based navigation plays an ever-increasing role in cases of minimal invasive surgery. The case is presented here of a 58-year-old male patient referred after a hunting accident with a pellet in the left orbit. After transferring the preoperatively acquired computed tomography data to a commercially available navigation system, the bullet was removed through the original wound canal using an intraoperatively calibrated high-resolution endoscope.

Endoscopes↗

[Manipulator assisted endoscope guidance in functional endoscopic sinus surgery: proof of concept].

BACKGROUND: Functional endoscopic sinus surgery (FESS) is characterized by single-handed preparation and guidance of the endoscope by the nondominant hand. This results in an additional extension of operation time by up to 15% and ergonomic deficits. The aim of this study is the conception of an automated assistance system for FESS in view of the following questions: (1) Which degree of surgical automation is suitable for FESS? (2) Which design is suitable? (3) What are the properties of the technical system (planning, time, accuracy, precision) of the selected system? (4) Does the system offer potential for a clinical application? METHODS: In all 49 FESS were analyzed for surgical workflows. Measurement of the maximum forces within FESS was performed with 40 trials on an anatomical model. Three different mechanical systems were used in ten FESS and evaluated using the ICCAS Human-Machine Evaluation Scale. For realization of automated endoscope guidance an engine-driven and -braked manipulator (PA10-6c, Mitsubishi, Japan) was used. The technical parameters determined were expenditure of time for the preoperative planning of workspace, surgical accuracy and precision of the intraoperative endoscope positioning, maximal forces, and time. RESULTS: Concept-conditioned instrument changes amount to an average of 41.1 and 18.9% (5.21 min) time requirement for each FESS side. Maximum forces on the mucous membrane during a conventional FESS were measured at 9.8 N (5.9-9.8). Usability of the mechanical endoscope holder was estimated in 18 of 20 cases to be inferior to the standard procedure. The time needed for segmenting the intranasal workspace was 15.2 min (10.0-23.0). The maximum deviation of the automatically driven endoscope from a planned position amounted to 0.85 mm (manually 4.64 mm). The maximum force was measured with 1.1 N in the z direction (manually 9.8 N). Automated guidance of the endoscope to an intranasal position needed 7.25 s (6.4-7.9); manually 12.64 s (5.9-43.0). CONCLUSION: Guidance of the endoscope for FESS by an automated motor-driven system is possible. The conception which is based on workflow analysis favors a system with automatic definition of the workspace and a manual movement of the endoscope. The examined system offers a potential for clinical application. Definition of the automation level and development of a man-machine interface is more important than selection or reconstruction of a special manipulator for endoscope guidance in FESS from a surgical point of view.

Endoscopes↗