Results 121 to 130 of about 640,198 (260)
Pak Biawak, a necrobot, embodies an unusual fusion of biology and robotics. Designed to repurpose natural structures after death, it challenges conventional boundaries between nature and engineering. Its movements are precise yet unsettling, raising questions about sustainability, ethics, and the untapped potential of biointegrated machines.
Leo Foulds +2 more
wiley +1 more source
Audio recording to accompany papers titled "Notes on Sanskrit Recordings for Study Purposes". -- Side 1. 3 March 1958. Recordings in Sanskrit -- Side 2. 7 March 1958.
Wurm, Stephen Adolphe
core
Delayed brain and spine migration of a retained SEEG electrode fragment: An unexpected complication. [PDF]
Krouma M +7 more
europepmc +1 more source
Muscle Control of an Extra Robotic Digit
This study compares muscle‐ and movement‐based control for operating a supernumerary robotic thumb. While movement control performs better in the proposed tasks, muscle‐based (EMG) control promotes broader motor learning. The results highlight the promise and challenges of using biosignals for human augmentation, offering new insights into intuitive ...
Julien Russ +7 more
wiley +1 more source
The comparison between written record and videotaped record
Ayumi INOUE, Makiko NAKA
openaire +1 more source
Video-EEG/polygraphy as a biomarker in the management of status epilepticus in anti-KELCH-like protein 11 encephalitis: Clinical and therapeutic implications. [PDF]
Costantino U +6 more
europepmc +1 more source
Modular, Textile‐Based Soft Robotic Grippers for Agricultural Produce Handling
This article introduces textile‐based pneumatic grippers that transform simple textiles into robust bending actuators. Detailed experiments uncover how cut geometry and fabric selection shape performance. Successful handling of fragile agricultural items showcases the potential of textile robotics for safe, scalable automation in food processing and ...
Zeyu Hou +4 more
wiley +1 more source
A Low‐Cost, Handheld Optical Stiffness Sensor for Minimally Invasive Surgery
A novel handheld stiffness sensor is presented for real‐time tissue stiffness characterization. By simultaneously sensing contact force and tissue deformation, the device enables accurate stiffness quantification without requiring precise manual control. This approach offers a promising solution for intraoperative tumor detection and minimally invasive
Qianyu Ma +4 more
wiley +1 more source

