A Systematic Review of Design of Electrodes and Interfaces for Non-Contact and Capacitive Biomedical Measurements: Terminology, Electrical Model, and System Analysis. [PDF]
Klaić L +3 more
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Cancer‐associated NPC remodeling creates a high‐flux, low‐stringency nuclear state that supports malignant adaptation but increases mechanical fragility. Targeting the FG‐barrier or NPC scaffold may drive mechanostat failure, envelope rupture, DNA damage, and loss of nuclear integrity.
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wiley +1 more source
Redox-programmable quantum dots for high-valence and strongly redox-active ion recognition: from reactivity windows to adaptive MXene platforms. [PDF]
Abu Shuheil M +8 more
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Analysis of vertical AND flash memory for energy-efficient, scalable, fast CIM beyond vertical NAND flash memory. [PDF]
Ko J +9 more
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Lactate-Induced Liquid-Liquid Phase Separation of HIF-1α Drives Myeloid Cell Polarization and Immune Evasion in Colorectal Cancer. [PDF]
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Flexible amplifier with >100-dB voltage gain enabled by intrinsic gain singularity of carbon nanotube transistors. [PDF]
Huang R +14 more
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Low Noise Feed-Through Compensation Circuit Design for Resonant MEMS Pressure Sensor. [PDF]
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A CMOS Charge Sensitive Amplifier with sub-electron equivalent noise charge
2014 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2014We present a CMOS Charge Sensitive Amplifier (CSA) specifically designed for low capacitance pixel or silicon drift detectors for high resolution X-ray spectrometry. The intrinsic noise of the CSA has been measured at different operating temperatures with a triangular shaping with peaking time from 0.8 µs to 102 µs.
Giuseppe Bertuccio, Daniele Macera
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A Fully Differential Charge-Sensitive Amplifier for Dust-Particle Detectors
2018 14th Conference on Ph.D. Research in Microelectronics and Electronics (PRIME), 2018This paper presents the design and measurements of a fully differential charge sensitive amplifier operating in the frequency range from 7 Hz to 300 kHz. In comparison to the typically employed single input transistor topology, the shown differential approach greatly simplifies the suppression of common mode noise.
Markus Grözing
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