In the fast-paced environment of healthcare facilities, medical staff consistently face the dual challenges of managing repetitive, yet critical tasks and operating under the constant pressure of staff shortages. These day-to-day responsibilities are crucial for patient care but can be physically and mentally taxing on professionals who are already navigating high-stress situations.
Moreover, the dynamic nature of medical settings, coupled with the absolute necessity for precision in patient care, introduces significant challenges in automating these tasks. Many of these repetitive duties, such as preparing for surgeries, positioning patients, and conducting routine scans, are prime candidates for automation. However, developing solutions that can adapt to the ever-changing environment of a hospital and execute tasks with the high level of accuracy required in medical care presents a complex but vital frontier in healthcare technology.
Senix Robotics introduced RoboSurge to tackle the challenges faced by healthcare professionals. Utilizing cutting-edge robotics and AI, RoboSurge autonomously performs preparatory, positioning, and diagnostic functions, easing the workload on medical staff. Its advanced navigation systems and precision mechanics ensure adaptability and accuracy within the dynamic hospital environment, enhancing patient care through consistent, reliable automation. This solution features:
The robotic surgery solution is built on an advanced mobile platform, capable of autonomous navigation within a medical environment. This platform is equipped with a sophisticated sensor array, including LIDAR, cameras, and proximity sensors, which allows it to move independently through hospital corridors, avoiding obstacles and dynamically adjusting its path to its destination. The drive system is designed for stability and smooth motion, ensuring that onboard instruments remain steady during transit.
At the core of this robotic system is a highly articulate robotic arm, designed to handle various medical tools and devices with precision. The arm features multiple joints that provide a wide range of motion and the ability to perform complex surgical tasks. It is constructed from biocompatible materials suitable for sterile environments, ensuring safety and reliability in direct patient interactions.
A versatile tool changer mechanism allows the robotic arm to switch between different sensors and surgical devices automatically, depending on the procedure's requirements. This modular capability supports a variety of attachments, such as scalpels, forceps, ultrasound probes, and specialized diagnostic sensors, enabling a wide range of surgical and examination procedures without human intervention.
The robot autonomously navigates from its docking station to the patient's room using its advanced autonomous drive platform. Upon arriving, it positions itself optimally next to the patient's bed, ready for the procedure.
Utilizing a high-definition 3D scanner from its tool changer, the robot performs a comprehensive scan of the patient’s body. This scan is used to create a detailed 3D model of the area to be treated, aiding in precise planning and execution of the procedure.
The robotic arm, equipped with the necessary tools via the automated tool changer, assists the patient into the correct position, ensuring comfort and safety, and prepares the site for the operation or examination.
With precise movements, the robotic arm adjusts the patient’s limbs and removes any covering, ensuring clear access to the operation site. This step is crucial for the accuracy and success of the subsequent procedures.
The robot selects an ultrasound probe and conducts targeted scans of the relevant body parts. This step provides real-time imaging data essential for assessing the patient's condition and refining the surgical approach.
The robot selects an ultrasound probe and conducts targeted scans of the relevant body parts. This step provides real-time imaging data essential for assessing the patient's condition and refining the surgical approach.
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