MEDICAL CONSULTING FIELDS

Brand Owner (click to sort) Address Description
CONCENTRIC Ginkgo BioWorks, Inc. 27 Drydock Avenue, 8th Floor Boston MA 02210 Medical consulting in the fields of viruses, pathogens, diagnostic testing, pandemic response, and biosecurity; providing medical information in the fields of viruses, pathogens, diagnostic testing, pandemic response, biosecurity, and bioinformatics; the foregoing not related to imaging for medical purposes;Monitoring and testing of water, air, soil, surfaces, and human and animal reservoirs for viruses, pathogens, and contaminants; detection of viruses, pathogens, and contaminants in water, air, soil, surfaces, and human and animal reservoirs; scientific and technological services, namely, bio-sample testing services for others in the fields of biosecurity, bioinformatics, scientific research, and scientific diagnostics; scientific and technological services, namely, biosecurity surveillance for analyzing food, water, air, and environmental resource safety; consulting services for others in the field of design, planning, and implementation project management of biosecurity initiatives related to the monitoring, testing, and detection of viruses, pathogens, and contaminants in water, air, soil, surfaces, and human and animal reservoirs; scientific laboratory services; scientific and technological research and development in the fields of biosecurity and bioinformatics; providing scientific and technological information in the fields of biosecurity and bioinformatics; scientific and technological services, namely, data collection and analysis in the fields of biosecurity and bioinformatics; none of the foregoing being for agricultural and horticultural use, imaging for medical purposes, or photonics;
CONCENTRIC BY GINKGO Ginkgo BioWorks, Inc. 27 Drydock Avenue, 8th Floor Boston MA 02210 Medical consulting in the fields of viruses, pathogens, diagnostic testing, pandemic response, and biosecurity; providing medical information in the fields of viruses, pathogens, diagnostic testing, pandemic response, biosecurity, and bioinformatics; the foregoing not related to imaging for medical purposes;Monitoring and testing of water, air, soil, surfaces, and human and animal reservoirs for viruses, pathogens, and contaminants; detection of viruses, pathogens, and contaminants in water, air, soil, surfaces, and human and animal reservoirs; scientific and technological services, namely, bio-sample testing services for others in the fields of biosecurity, bioinformatics, scientific research, and scientific diagnostics; scientific and technological services, namely, biosecurity surveillance for analyzing food, water, air, and environmental resource safety; consulting services for others in the field of design, planning, and implementation project management of biosecurity initiatives related to the monitoring, testing, and detection of viruses, pathogens, and contaminants in water, air, soil, surfaces, and human and animal reservoirs; scientific laboratory services; scientific and technological research and development in the fields of biosecurity and bioinformatics; providing scientific and technological information in the fields of biosecurity and bioinformatics; scientific and technological services, namely, data collection and analysis in the fields of biosecurity and bioinformatics; none of the foregoing being for agricultural and horticultural use, imaging for medical purposes, or photonics;
 

Where the owner name is not linked, that owner no longer owns the brand

   
Technical Examples
  1. Nuclear magnetic resonance (NMR) signals are detected in microtesla fields. Prepolarization in millitesla fields is followed by detection with an untuned dc superconducting quantum interference device (SQUID) magnetometer. Because the sensitivity of the SQUID is frequency independent, both signal-to-noise ratio (SNR) and spectral resolution are enhanced by detecting the NMR signal in extremely low magnetic fields, where the NMR lines become very narrow even for grossly inhomogeneous measurement fields. MRI in ultralow magnetic field is based on the NMR at ultralow fields. Gradient magnetic fields are applied, and images are constructed from the detected NMR signals.