Aug 2026· 2026 IEEE International Conference on Mechatronics and Automation (ICMA)· pp. 1045-1049· 0 citations· 25 references
Abstract
The penetration of commercial interventional robots into primary healthcare remains bottlenecked by prohibitive costs, spatial bulk, and intricate operability. To overcome these barriers, a footprint-reduced and economical robotic platform was designed in this work. Structurally, the execution-end utilizes a modular layout covering clamping, rotation, linear delivery, and support. Moving away from standard parallel roller grippers, the system adopts an industrial ER spring collet mechanism to grasp surgical instruments. Nut-driven radial contraction of the collet secures guidewires and catheters reliably. Through swapping collet sizes accommodates varying instrument profiles without hardware overhaul. The overall mass is kept under 6 kg within a pretty compact size envelope by pairing ABS with aluminum alloys. The input for User interaction is stripped down to a basic 16 membrane keypad enforcing a direct logic of "press-to-actuate, release-to-halt". Bench testing against a cardiovascular phantom yielded maximum relative deviations of 1.25% for linear feed and 2.69% for rotation movement, alongside zero mechanical stalling over a 20-minute composite motion trial. These experiments confirm that proposed system has ability to achieve clinical-grade precision for the robot-assisted vascular interventional surgery in medical facilities.
The distal end of a robotic surgical instrument is where access, dexterity, tissue interaction and procedural capability converge. In flexible, endoluminal, transoral, percutaneous, vascular and neuroendoscopic surgery, the clinical value of an instrument depends not only on kinematic complexity but also on miniaturisa...
C. D. Díaz Gutiérrez, Víctor Eduardo Quiroz Velázquez, Roemi Fernández· Journal of Robotic Surgery· 0 citations
Surgical robots require highly dexterous and compact robotic systems capable of operating effectively within confined anatomical spaces. However, due to limited access provided by a single incision, the miniaturization and maneuverability of these robots still need to be improved. In this paper, we propose the design a...
N. H. Dana, Harith S. Gallage, I. Auta et al.· 0 citations
Accurate force measurement on paddle shafts is essential for performance assessment and technique refinement, yet existing tools typically require permanent shaft modification or recalibration after each utilization. This study presents the iterative design and characterization of a removable, non-invasive interface fo...
Maria I. Cruz, B. B. Gomes, Marco Silva et al.· Italian National Conference...· 0 citations
Remote Center of Motion (RCM) is a critical kinematic constraint in minimally invasive robotic surgery, ensuring that surgical instruments pivot around a fixed incision point to minimize tissue trauma. While virtual RCM algorithms offer significant kinematic flexibility, their dependence on real-time computational accu...
S. Senanayaka, M. P. Abeysinghe, Y. Amarasinghe et al.· Moratuwa Engineering Researc...· 0 citations
Automated breast cancer screening has the potential to overcome the limitations of manual techniques, such as operator variability and the inability to image dense tissue. However, existing robotic solutions are often bulky, rigid, and unsafe for patient contact outside of clinical settings. Here, we present a wearable...
Christina Patterson, Dinesh K. Patel, C. Majidi· Advanced Intelligent Systems· 0 citations
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