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The accurate measurement of cooking vessel temperatures in induction hobs is crucial for ensuring optimal cooking performance and safety. To achieve this, improvements in existing measurement methods such as thermocouples, thermistors, and infrared (IR) temperature sensors are being explored. However, traditional IR sensors are sensitive to interference from the heated glass ceramic, severely affecting accuracy.

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Top-down architecture of magnetized micro-cilia and conductive micro-domes as fully bionic electronic skin for de-coupled multidimensional tactile perception.

Mater Horiz

November 2024

Joint Key Laboratory of the Ministry of Education, Institute of Applied Physics and Materials Engineering, University of Macau, Avenida da Universidade, Taipa, Macau 999078, China.

Article Synopsis
  • E-skin technology simulates human skin's sensory functions for applications in prosthetics and healthcare, but faces challenges in accurately mimicking stimuli responses.
  • A new concept called fully bionic E-skin (FBE-skin) integrates components like a magnetized micro-cilia array and flexible electrodes to replicate the structure and function of human skin, including mechanoreceptors.
  • FBE-skin can detect a wide range of forces and stimuli, improving interactions in various fields, from intelligent sensing to human-machine interfaces.
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Objective To explore the impact of M2 macrophages on the malignant biological behavior of esophageal cancer by inhibiting the anti-tumor ability of CD8 T cells. Methods Using phorbol myristate acetate (PMA) combined with interleukin 4 (IL-4)/IL-13, we induced human monocytic leukemia cells (THP-1) to become M2 macrophages and the detected related inflammatory factors by real-time quantitative PCR. We used magnetic bead sorting to isolate CD8 T cells from healthy volunteers' peripheral blood, and verified the purity of the sorted cells by flow cytometry.

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Abdominal hemorrhage is an important clinical disease that can be life-threatening in severe cases. Therefore, timely detection and treatment of abdominal hemorrhage is crucial for the health and safety of patients. Magnetic induction tomography is a non-invasive, nonradioactive, and non-contact electromagnetic imaging technology with potential application value for disease screening and continuous monitoring.

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Cable Eccentricity Detection Method Based on Magnetic Field.

Sensors (Basel)

August 2024

School of Electromechanical Engineering, Guilin University of Electronic Technology, Guilin 541004, China.

Amid the rapid advancement of electronic information technology, the need for cable eccentricity measurement in the industry is increasing both in China and across the globe. Current detection methods have several flaws, including high costs, insufficient accuracy, and instability. In this paper, we introduce a magnetic field-based detection method for cable eccentricity that provides high precision and cost-effectiveness.

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