Deutsch

Progress makes laser based imaging simpler and more three-dimensional

141
2023-12-05 14:31:19
Übersetzung anzeigen

a. b. Schematic diagram of PACTER system calibration and imaging program. BT, beam trap; DAQ, data acquisition unit; HWP, half wave plate; PBS, polarization beam splitter; ER, traverse the relay. The difference between the two modes is highlighted by a black dashed box.

c. Schematic diagram of a single component ultrasonic transducer manufactured on ER.

d. The ultrasound transducer detected 1D PATTER signals 0, t1, and tN. e at time instance t, and reconstructed a 4D image of the human palm blood vessel based on the signals in d.

Sometimes, scientific progress appears in the form of discovering new things. At other times, progress boils down to doing better, faster, or easier. The new research by Professor Li Hong Wang, a professor of medical and electrical engineering at the California Institute of Technology and Professor Bren Wang's laboratory, is the latter.

In a paper published in the journal Nature Biomedical Engineering titled "Ultrafast longitudinal imaging of biomedical via single shot volumetric photoacoustic tomography with a single element detector," Wang and postdoctoral scholar Yide Zhang demonstrated how they simplified and improved the imaging technology they first announced in 2020.

This technology is a photoacoustic imaging technique called PATER, which is the expertise of the Wang team.
In photoacoustic imaging, the laser is pulsed into the tissue, where it is absorbed by the molecules of the tissue, causing them to vibrate. Each vibrating molecule serves as a source of ultrasound and can be used to image internal structures in a manner similar to ultrasound imaging.

However, photoacoustic imaging is technically challenging as it can generate all imaging information in a short period of time. In order to capture this information, early versions of Wang's photoacoustic imaging technology required pressing arrays of hundreds of sensors onto the surface of the imaged tissue, making the technology complex and expensive.

Wang and Zhang reduced the required number of transducers by using a device called a traversal relay, which slows down the speed of information flowing into the transducers. As explained in the previous story about PATER: "In computing, there are two main ways to transmit data: serial and parallel. In serial transmission, data is sent in a single stream form through a communication channel. In parallel transmission, multiple communication channels are used to send multiple data simultaneously.".

Source: Laser Net

Ähnliche Empfehlungen
  • SILICON AUSTRIA LABS and EV GROUP Strengthen Cooperation in Optical Technology Research

    EV Group, a leading supplier of wafer bonding and lithography equipment for the MEMS, nanotechnology, and semiconductor markets, and Silicon Austria Labs, a leading electronic systems research center in Austria, announced that SAL has received and installed multiple EVG lithography and photoresist processing systems in its MicroFab at the R&D cleanroom facility in Filach, Austria.These devices...

    2023-11-15
    Übersetzung anzeigen
  • Mechanism of Time Power Modulation Increasing Weld Depth in High Power Laser Welding

    Researchers from the Hanover Laser Center and Leibniz University in Germany reported on the mechanism of increased welding depth during time power modulation in high-power laser beam welding. The related paper titled "Mechanisms of Increasing Welding Depth during Temporary Power Modulation in High Power Laser Beam Welding" was published in Advanced Engineering Materials.Understanding the basic mec...

    2024-12-18
    Übersetzung anzeigen
  • High sensitivity visualization of ultrafast carrier diffusion using a wide field holographic microscope

    A sketch of the imaging and holographic parts of a transient holographic microscope, including a pulse sequence, to illustrate the signal modulation method. By imaging the pinhole array at the sample position, a diffraction limited excitation spot array can be created, allowing for the simultaneous collection of transient data around 100 excitation spots.Femtosecond transient microscopy is an impo...

    2023-12-25
    Übersetzung anzeigen
  • Two photon absorption quantum mechanism breaks through the resolution and efficiency limits of optical nanoprinting

    Recently, a research team from the School of Physics and Optoelectronic Engineering at Jinan University has elucidated for the first time the time-dependent quantum mechanism of two-photon absorption and proposed a two-photon absorption (fpTPA) optical nanoprinting technology based on few photon irradiation, successfully breaking through the bottleneck of traditional two-photon printing technology...

    03-06
    Übersetzung anzeigen
  • Redefining optical limits: Engineers discover enhanced nonlinear optical properties in 2D materials

    Recently, according to a paper published in Nature Communications titled "Phonoenhanced nonlinearities in hexagonal boron nitride," engineers from Columbia University collaborated with theoretical experts from the Max Planck Institute of Material Structure and Dynamics to discover that pairing lasers with lattice vibrations can improve the nonlinear optical properties of layered two-dimensional ma...

    2024-02-23
    Übersetzung anzeigen