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3篇 您的检索式:作者名="Corey Pollock"
    题名 作者 年代 出处 被引量
1Use of the pediatric risk of mortality score to predict nosocomial infection in a pediatric intensive care unit显示文摘Pollock E Ford JEL Corey M 1991Crit Care Med1991,19,2:1
2Use of the pediatric risk of mortality score to predict nosocomial infection in a pediatric intensive care unit显示文摘Pollock E Ford-Jones EL Corey M 1991Crit Care Med1991,19,2:1
3100pT/cm single-point MEMS magnetic gradiometer from a commercial accelerometer显示文摘Magnetic sensing is present in our everyday interactions with consumer electronics and demonstrates the potential for the measurement of extremely weak biomagnetic fields,such as those of the heart and brain.In this work,we leverage the many benefits of microelectromechanical system(MEMS)devices to fabricate a small,low-power,and inexpensive sensor whose resolution is in the range of biomagnetic fields.At present,biomagnetic fields are measured only by expensive mechanisms such as optical pumping and superconducting quantum interference devices(SQUIDs),suggesting a large opportunity for MEMS technology in this work.The prototype fabrication is achieved by assembling micro-objects,including a permanent micromagnet,onto a postrelease commercial MEMS accelerometer using a pick-and-place technique.With this system,we demonstrate a room-temperature MEMS magnetic gradiometer.In air,the sensor’s response is linear,with a resolution of 1.1 nT cm^(−1),spans over 3 decades of dynamic range to 4.6µT cm^(−1),and is capable of off-resonance measurements at low frequencies.In a 1mTorr vacuum with 20 dB magnetic shielding,the sensor achieves a 100 pT cm^(−1) resolution at resonance.This resolution represents a 30-fold improvement compared with that of MEMS magnetometer technology and a 1000-fold improvement compared with that of MEMS gradiometer technology.The sensor is capable of a small spatial resolution with a magnetic sensing element of 0.25 mm along its sensitive axis,a>4-fold improvement compared with that of MEMS gradiometer technology.The calculated noise floor of this platform is 110 fTcm^(−1) Hz−1/2,and thus,these devices hold promise for both magnetocardiography(MCG)and magnetoencephalography(MEG)applications.Josh Javor Alexander Stange Corey Pollock Nicholas Fuhr David J.Bishop 2020Microsystems & Nanoengineering2020,6,1:1
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