2024
DOI: 10.1186/s12909-024-05155-1
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An intelligent grasper to provide real-time force feedback to shorten the learning curve in laparoscopic training

Xuemei Huang,
Pingping Wang,
Jie Chen
et al.

Abstract: Background A lack of force feedback in laparoscopic surgery often leads to a steep learning curve to the novices and traditional training system equipped with force feedback need a high educational cost. This study aimed to use a laparoscopic grasper providing force feedback in laparoscopic training which can assist in controlling of gripping forces and improve the learning processing of the novices. Methods Firstly, we conducted a pre-experiment t… Show more

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“…These models are crafted to closely mimic the tactile properties of human tissues, such as elasticity, tensile strength, and resistance, providing a realistic sense of how tissues react under surgical manipulation [24]. This realism is crucial for surgeons to refine the precise motor skills necessary for minimizing tissue damage and improving patient outcomes during delicate surgical procedures [24], [25], [26].…”
Section: Functional 3d Models Enable On-demand Practicementioning
confidence: 99%
“…These models are crafted to closely mimic the tactile properties of human tissues, such as elasticity, tensile strength, and resistance, providing a realistic sense of how tissues react under surgical manipulation [24]. This realism is crucial for surgeons to refine the precise motor skills necessary for minimizing tissue damage and improving patient outcomes during delicate surgical procedures [24], [25], [26].…”
Section: Functional 3d Models Enable On-demand Practicementioning
confidence: 99%