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ObjectivesTo meet the high demand for polymerase chain reaction (PCR) tests to diagnose COVID-19 and rapidly control the outbreak, an efficient and safe molecular diagnostic protocol is necessary. In this study, we evaluated the efficacy and safety of the medical robot developed for non-face-to-face nasopharyngeal swab specimen collection.MethodsIn a nonclinical study, an otorhinolaryngologist collected swab specimens manually and using a medical robot. In a single-institution, randomized, open-label, prospective, exploratory clinical trial, nasopharyngeal swab specimens were collected from the enrolled participants both manually and by using the medical robot.ResultsEvaluation of the efficacy and safety of nasopharyngeal swab collection using a medical robot was assessed. After the operation of the robot, subjective discomfort experienced by the participants and any side effects or abnormalities in the nose were also monitored. Preliminary nonclinical data revealed comparable results between robotic and manual methods in terms of RNA metrics and cytokeratin-8 expression. Minor initial damage to A549 cells by the robot improved with subsequent use. In the clinical setting, the robot-assisted technique yielded a 92.31% detection rate for human RNase P, while the manual method achieved 100%. Post-swabbing discomfort reported by participants was similar for both methods and resolved within 48 h.ConclusionsThe medical robot system could efficiently, safely, and accurately collect nasopharyngeal swab samples in a non-face-to-face manner. Its installation in respiratory clinics, airports, or ports could minimize the infection risk between individuals and healthcare workers, thereby contributing to an efficient distribution of medical resources.
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http://dx.doi.org/10.1177/19458924251323363 | DOI Listing |
Sci Adv
September 2025
School of Biomedical Engineering, ShanghaiTech University, Shanghai, China.
Developing intelligent robots with integrated sensing capabilities is critical for advanced manufacturing, medical robots, and embodied intelligence. Existing robotic sensing technologies are limited to recording of acceleration, driving torque, pressure feedback, and so on. Expanding and integrating with the multimodal sensors to mimic and even surpass the human feeling is substantially underdeveloped.
View Article and Find Full Text PDFSci Transl Med
September 2025
Department of Mechanical Engineering, University of California, Santa Barbara, Santa Barbara, CA 93106, USA.
Endotracheal intubation is a critical medical procedure for protecting a patient's airway. Current intubation technology requires extensive anatomical knowledge, training, technical skill, and a clear view of the glottic opening. However, all of these may be limited during emergency care for trauma and cardiac arrest outside the hospital, where first-pass failure is nearly 35%.
View Article and Find Full Text PDFJ Robot Surg
September 2025
Department of CSE, United Institute of Technology, Coimbatore, India.
J Robot Surg
September 2025
ORSI Academy, Melle, Belgium.
This Letter to the Editor responds to the recent publication by Patel et al. (J Robot Surg. Jul 11;19(1):370, 2025), which outlines a framework and recommendations for telesurgery.
View Article and Find Full Text PDFJ Robot Surg
September 2025
Ayub Medical College, Abbottabad, Pakistan.