论文标题
在环境环境中检测生物磁性的便携式磁力测定法
Portable magnetometry for detection of biomagnetism in ambient environments
论文作者
论文摘要
我们提出了一种以每十亿分辨率的零件分辨率的光学磁力测定方法,该方法能够检测地球环境环境中从人脑和心脏产生的生物磁信号。我们的磁性静音传感器通过检测高度自旋极化碱金属蒸气的自由频率来测量总磁场。一阶渐变计由两个磁力计由3厘米基线隔开。我们的渐变计来自用最先进的微型碱蒸气电池,先进的热隔热,定制电子设备和激光包装在传感器头中的最先进的碱蒸气电池,在USB端口上消耗5 W的笔记本电脑运行。渐变计获得16英尺/cm/hz $^{1/2} $的灵敏度,我们用来检测神经元电流和磁性心脏摄影信号。神经元磁场的记录是非侵入性功能性脑成像的少数可用方法之一,通常需要广泛的磁屏蔽和其他基础结构。这项工作证明了可以在各种自然环境中部署的一系列便携式生物磁传感器的密集阵列的可能性。
We present a method of optical magnetometry with parts-per-billion resolution that is able to detect biomagnetic signals generated from the human brain and heart in Earth's ambient environment. Our magnetically silent sensors measure the total magnetic field by detecting the free-precession frequency of highly spin-polarized alkali metal vapor. A first-order gradiometer is formed from two magnetometers that are separated by a 3 cm baseline. Our gradiometer operates from a laptop consuming 5 W over a USB port, enabled by state-of-the-art micro-fabricated alkali vapor cells, advanced thermal insulation, custom electronics, and laser packages within the sensor head. The gradiometer obtains a sensitivity of 16 fT/cm/Hz$^{1/2}$ outdoors, which we use to detect neuronal electrical currents and magnetic cardiography signals. Recording of neuronal magnetic fields is one of a few available methods for non-invasive functional brain imaging that usually requires extensive magnetic shielding and other infractructure. This work demonstrates the possibility of a dense array of portable biomagnetic sensors that are deployable in a variety of natural environments.