Please refer to the list of technologies below for licensing and research collaboration availability. If you can't find the technology you're interested in, please contact us at TTD@lbl.gov.
- Apparatus and Instrumentation for Single Molecule Spectroscopy
- Automated Cryotomographic Stage for X-ray Microscopy
- Automated Electron Microscopy Film Scanner
- Coplanar Electrode Configuration Improves Radiation Detector Performance
- Co-registration of PET and Transrectal Ultrasound (TRUS) Images for Improved Prostate Imaging and Biopsy

- Cost-Effective Idententification of Novel, Semiconductor Detector Materials

- Cost-Effective, Laser-Assisted In Situ Nanostructure Fabrication and Processing

- Cryogenic Immersion Light Microscope Stage
- Dedicated Test Surface for Calibration of High-Performance Optical Systems

- Diagnostic MRI Skin Map Database

- Digital Restoration and Preservation of Audio Recordings
- Early Identification of Vulnerable Atherosclerotic Plaques Using In Vivo MIR Spectroscopy and Imaging
- Fast, Bright, Monochromatic Photofield-emission Electron Source with Spin-polarization Control
- Fast Scintillation Detectors Using Direct-Gap Semiconductors
- Ferrofluids for Subsurface Barriers Flow Control and Imaging
- Frames and Crawlers for On-ship Detection of Nuclear Materials
- Functionalized Semiconductor Nanocrystals for Imaging Organelles in Live Cells

- Genomic and Proteomic Imaging Software
- Graphene Membranes for Nanometer-scale Lithography and Single Atom Resolution TEM Imaging

- Heart and Torso Phantom Model of Cardiac and Respiratory Motion for Nuclear Imaging

- High-Efficiency Micro-Scale Light-Concentrating Arrays for Digital Imaging

- High Quantum Efficiency Charge-Coupled Device
- High Voltage Compatible, Fully Depleted CCD
- Lightweight, Portable X-Ray Core Scanner
- Low-resistivity Photon-transparent Window Attached to Photo-sensitive Silicon Detector
- Mass Spectrometer for High Molecular Weight Ions and Charged Particles
- Method and Apparatus for Adjustably Inducing Biaxial Strain in Thin Films

- Method for Detection of RF Magnetic Fields

- More Sensitive, Less Expensive Semiconductor Detectors

- Multi-channel Detector Readout Method and Integrated Circuit
- New Multimodal Probes Compatible with Fluorescence and MRI

- Nanosecond Monolithic CMOS Readout Cell
- NMR AND MRI Technologies:
- Functionalized NMR-based Xenon Biosensor
- Low-Field MRI with Improved Resolution and Portability Using Gradient Fields of Arbitrary Size
- Low Field NMR/MRI Using High Tc SQUIDS
- Low-Field NMR/MRI Using Rotating-Frame Gradient Fields

- Mobile Ex-Situ High Resolution NMR and MRI
- Optical Atomic Magnetometer for Portable, Inexpensive MRI and Magnetic Microparticle Detection

- Portable, High Resolution NMR/MRI in Inhomogeneous Fields
- Remote Detection of Blood Flow in Living Systems with Background-free MRI

- Remote NMR/MRI Detection
- Safe and Selective Enhancement of NMR and MRI Using Hyperpolarized Noble Gases
- SQUID-Detected NMR and MRI at Ultralow Magnetic Fields
- Using Pulse Sequences to Achieve High Resolution NMR/MRI with Simplified Hardware
- Non-contact Nanoscale Imaging of Liquids and Weakly Bound Materials
- Novel Use of NMR with Microfluidic Lab-On-A-Chip Devices

- Optical Synchronization Systems for Femtosecond Light Sources
- Optical Metrology for X-Ray Mirror
- Photocaged Nanocrystals for Control of Spatial and Temporal Resolution in Bioimaging

- Positional Sensor Measures Rotational and Lateral Displacements

- Robust All-Optical Atomic Magnetometer

- Rotenone Analogs: High Extraction and Retention Perfusion Tracers for PET and SPECT Imaging
- Scanning Tunneling Microscope for UHV to High Pressure and High Temperature Operation

- Source-independent Full Waveform Inversion of Seismic Data
- Transmission Electron Microscope Phase-contrast Enhancement
- Ultracompact Spectrometer and Beam Profiler for In-situ Vacuum UV and Soft X-Ray Beam Characterization

- Ultra-High Density Diffraction Gratings for Soft X-ray Applications

- Ultrahigh Time Resolution Magnetic Resonance

- Widely Tunable, Semiconductor THz (Infrared) Laser
