Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The MISLI-Drive, a modular sterilizable robotic driver for steerable laparoscopic instruments

View through CrossRef
Introduction:Based on the success of the former “Shaft-Actuated, Tip-Articulated” SATA-Drive, a prototype robotic instrument driver for modular, steerable, laparoscopic instruments, a new driver is designed and tested to improve previously lacking features concerning cleanability, instrument adaptation, practical application and control. The design of the driver engages these issues with a modular design aimed at re-use of both the instrument and the driver, for which a set of design requirements are established.Methods:A new modular design has been developed to improve cleanability through separation of the electro-motors and the instrument mechanism which clutches the instrument. Contamination of the driver’s robotic side is prevented though a combination of a drape and a Sterile barrier interface, while the instrument side is made sterilizable. A novel instrument clutching mechanism enables quick-release features, while a motor-axis latching mechanism enables plug-and-play assembly. Embedded sensors allow precise and fast control. A user-experiment was conducted on instrument exchange and assembly time, while mechanical and electrical tests were conducted on the driver’s responsiveness.Results:The driver has proven its ability to control the instrument, after which it can be disassembled for cleaning and inspection. The driver is designed for re-use through disassembled sterilization where all possibly contaminated surfaces are exposable for cleaning and inspection. The new standardized instrument clutches allow easy instrument (dis-)assembly. Instrument exchange is possible in two methods, the fastest of which is a median of 11 (6.3–14.6) seconds. The driver’s instrument mechanism is separated in a median of 3.7 (1.8–8.1) seconds. After assembly, the driver is operational in less than 2 s.Discussion:Instrument exchange times are similar to the semi-reusable Da Vinci systems, yet the MISLI-Drive is designed for sterilization, inspection and continual re-use. The modular build of the driver also allows easier parts replacement during maintenance, and requires minimal adaptation to different future scenarios, which is expected to reduce the overall cost of use.
Title: The MISLI-Drive, a modular sterilizable robotic driver for steerable laparoscopic instruments
Description:
Introduction:Based on the success of the former “Shaft-Actuated, Tip-Articulated” SATA-Drive, a prototype robotic instrument driver for modular, steerable, laparoscopic instruments, a new driver is designed and tested to improve previously lacking features concerning cleanability, instrument adaptation, practical application and control.
The design of the driver engages these issues with a modular design aimed at re-use of both the instrument and the driver, for which a set of design requirements are established.
Methods:A new modular design has been developed to improve cleanability through separation of the electro-motors and the instrument mechanism which clutches the instrument.
Contamination of the driver’s robotic side is prevented though a combination of a drape and a Sterile barrier interface, while the instrument side is made sterilizable.
A novel instrument clutching mechanism enables quick-release features, while a motor-axis latching mechanism enables plug-and-play assembly.
Embedded sensors allow precise and fast control.
A user-experiment was conducted on instrument exchange and assembly time, while mechanical and electrical tests were conducted on the driver’s responsiveness.
Results:The driver has proven its ability to control the instrument, after which it can be disassembled for cleaning and inspection.
The driver is designed for re-use through disassembled sterilization where all possibly contaminated surfaces are exposable for cleaning and inspection.
The new standardized instrument clutches allow easy instrument (dis-)assembly.
Instrument exchange is possible in two methods, the fastest of which is a median of 11 (6.
3–14.
6) seconds.
The driver’s instrument mechanism is separated in a median of 3.
7 (1.
8–8.
1) seconds.
After assembly, the driver is operational in less than 2 s.
Discussion:Instrument exchange times are similar to the semi-reusable Da Vinci systems, yet the MISLI-Drive is designed for sterilization, inspection and continual re-use.
The modular build of the driver also allows easier parts replacement during maintenance, and requires minimal adaptation to different future scenarios, which is expected to reduce the overall cost of use.

Related Results

Implementation of a Robotic Surgical Program in Gynaecological Oncology and Comparison with Prior Laparoscopic Series
Implementation of a Robotic Surgical Program in Gynaecological Oncology and Comparison with Prior Laparoscopic Series
Background. Robotic surgery in gynaecological oncology is a rapidly developing field as it offers several technical advantages over conventional laparoscopy. An audit was performed...
Evaluating the Cost for Robotic vs “Non-Robotic” Transhiatal Esophagectomy
Evaluating the Cost for Robotic vs “Non-Robotic” Transhiatal Esophagectomy
Introduction This study was undertaken to analyze and compare the cost of robotic transhiatal esophagectomy (THE) to “non-robotic” THE (ie, “open” and laparosco...
The transferability of laparoscopic and open surgical skills to robotic surgery
The transferability of laparoscopic and open surgical skills to robotic surgery
Abstract Background Within the last decades, robotic surgery has gained popularity. Most robotic surgeons have changed their main surgical activity ...
Robotic Versus Laparoscopic Right Hemicolectomy For Cancer
Robotic Versus Laparoscopic Right Hemicolectomy For Cancer
Background: Laparoscopic right colectomy is regarded technically difficult especially with intracorporeal anastomosis, and in obese patients. Robotic surgery may offer a solution t...
A <span aria-describedby="tippy-18">Comparison of Clinical Outcomes of Robot-Assisted and Conventional Laparoscopic Surgery
A <span aria-describedby="tippy-18">Comparison of Clinical Outcomes of Robot-Assisted and Conventional Laparoscopic Surgery
Background: Robot-assisted laparoscopic surgery robot-assisted surgical system has gained significant popularity over open and laparoscopic interventions. However, given its high c...
Outcome of laparoscopy assisted pancreaticoduodenectomy at the department of gastrointestinal surgery, Viet Duc University Hospital
Outcome of laparoscopy assisted pancreaticoduodenectomy at the department of gastrointestinal surgery, Viet Duc University Hospital
Abstract Introduction: Laparoscopic-assisted pancreaticoduodenectomy is a complex surgical procedure associated with a high rate of complications, particularly those arising from...
The Robotic Approach in Rectal Cancer
The Robotic Approach in Rectal Cancer
Since a robotic surgical system was developed in the early 1990s and the first robotic-assisted radical prostatectomy was reported in 2001, robotic surgery has spread in many surgi...

Back to Top