Features Partner Sites Information LinkXpress hp
Sign In
Advertise with Us

Download Mobile App




New Technology Images Flowing Blood in Real Time

By HospiMedica International staff writers
Posted on 19 Feb 2024

Understanding the dynamics of blood flow, or hemodynamics, provides critical information about various vascular diseases. More...

Insights into factors like blood flow velocity and oxygenation are key indicators in the early detection and monitoring of conditions such as atherosclerosis, aneurysms, thrombosis, and more. While some existing clinical imaging methods can detect these hemodynamic properties, they often require the use of contrast agents or exposure to ionizing radiation, posing potential health risks. Despite their importance, routine clinical measurement of these hemodynamic properties has been limited due to technological constraints. Now, a breakthrough may be on the horizon following a new development.

A team of researchers at the California Institute of Technology (Caltech, Pasadena, CA, USA) and the University of Southern California (Los Angeles, CA, USA) has developed a low-cost, non-invasive 3D imaging method called Photoacoustic Computed Tomography through an Ergodic Relay (PACTER). This method has been shown to effectively image flowing blood in real-time in both animal and human studies. The team’s focus was on exploring alternatives based on the photoacoustic effect, a phenomenon that describes the transmission of sound waves following the absorption of light. This effect is utilized in photoacoustic imaging to visualize internal body tissues: biomolecules absorb laser pulse light and re-emit energy as ultrasonic waves, which are then used to create images.

In this study, photoacoustic imaging was used to detect signals from hemoglobin in red blood cells, enabling real-time visualization of blood flow. While photoacoustic technology typically requires multiple expensive ultrasound sensors, the team’s previous system used just one sensor to create 2D images. To advance to 3D imaging while maintaining a cost-effective, single-sensor design, the researchers pre-calibrated their PACTER system with narrow laser beams aimed at 6,400 distinct points in a bovine blood sample. This intensive calibration allowed the system to later differentiate 6,400 signals from a single, wider laser beam during imaging, enabling rapid imaging while capturing extensive data.

The effectiveness of PACTER was demonstrated in experiments with mice, where the system mapped abdominal vasculature in 3D and detected breathing rates through periodic vessel size changes. The system was also applied to human subjects, visualizing vessels in hands and feet, common assessment areas for peripheral vascular disease and diabetes. The team could calculate blood flow speeds and observe expected changes in blood velocity and vessel shape when altering hemodynamics with blood pressure cuffs. Going forward, the researchers aim to enhance PACTER’s sensitivity and develop a more portable version. Some other potential applications of PACTER include measuring blood oxygenation in neck arteries and veins and monitoring brain metabolism.

“This technology takes several innovative concepts and packages them into one compact unit. I could see this type of tool potentially finding broad applications, including continuous monitoring in hospitals and at home,” said Randy King, Ph.D. from the National Institute of Biomedical Imaging and Bioengineering.

Related Links:
Caltech
University of Southern California


Gold Member
Blood Gas Analyzer
i-Check200
Radiology Monitor
MDNC-6121 Barco Nio Color 5.8MP
Rapid Sepsis Test
SeptiCyte RAPID
Hybrid Arch Device
Neo EDE
Read the full article by registering today, it's FREE! It's Free!
Register now for FREE to HospiMedica.com and get access to news and events that shape the world of Hospital Medicine.
  • Free digital version edition of HospiMedica International sent by email on regular basis
  • Free print version of HospiMedica International magazine (available only outside USA and Canada).
  • Free and unlimited access to back issues of HospiMedica International in digital format
  • Free HospiMedica International Newsletter sent every week containing the latest news
  • Free breaking news sent via email
  • Free access to Events Calendar
  • Free access to LinkXpress new product services
  • REGISTRATION IS FREE AND EASY!
Click here to Register








Channels

Artificial Intelligence

view channel
Image: Artificial intelligence (AI) standalone performance and reader performance with versus without AI assistance. (A) Receiver operating characteristics (ROC) curve for AI standalone performance in the US dataset (AUC 0.899, 95% CI 0.858 to 0.939). (B) ROC curve for AI standalone performance in the Korean dataset (AUC 0.963, 95% CI 0.946 to 0.975). (C) Pooled reader ROC without (AUC 0.718) versus with (AUC 0.852) AI assistance in the Korean dataset; P<0.001. AUC, area under the receiver operating characteristics curve. (Leonard Sunwoo et al., Journal of NeuroInterventional Surgery (2026). DOI: 10.1136/jnis-2026-025339)

AI Improves Non-Contrast CT Interpretation for Time-Sensitive Stroke Assessment

Acute ischemic stroke occurs when a blood vessel in the brain becomes blocked, requiring rapid diagnosis to enable timely reperfusion therapy. Emergency departments often use computed tomography angiography... Read more

Critical Care

view channel
Image Credit: Adobe Stock

Emergency Department Campaign Reduces CT Use Without Identified Missed Injuries

Unnecessary head and cervical spine computed tomography (CT) in low-risk trauma patients exposes them to avoidable radiation, prolongs emergency department stays, and increases healthcare costs.... Read more

Surgical Techniques

view channel
Image: Researchers developed a handheld photothermal mid-infrared spectroscopic imaging (MIRSI) system that measures just 8 square inches. Probe light from a visible (red) diode laser and pump light from a modulated quantum cascade laser (QCL) are coupled into optical fibers and delivered to a flexible, handheld imager (blue dashed box). The beams are combined at a short-pass dichroic mirror and focused onto the sample using an off-axis parabolic mirror (OAP). (Image Credit:Rohith Reddy, University of Houston)

Handheld Infrared Imaging Device Supports Tumor Margin Assessment During Surgery

Accurately determining tumor margins during surgery remains challenging. Frozen-section pathology takes time and can miss residual disease, potentially leading to repeat surgery and delayed therapy.... Read more

Point of Care

view channel
Image Credit: 123RF

Continuous Glucose Monitoring Identifies Cardiometabolic Risk in Adults Without Diabetes

Dysglycemia—abnormal blood glucose regulation—can fluctuate throughout the day and often escape conventional screening. Clinicians typically rely on fasting plasma glucose and hemoglobin A1c, which offer... Read more

Business

view channel
Image: LigaSure RAS Maryland, designed for the Valleylab FT10 platform on Hugo RAS, seals and cuts vessels, tissue, and lymphatics up to 7 mm in diameter (Photo courtesy of Medtronic)

Medtronic Receives FDA Clearance for Vessel-Sealing Instrument for Robotic Surgery

As robotic-assisted surgery expands across U.S. hospitals, teams increasingly seek energy instruments with the familiarity and performance of tools used in open and laparoscopic procedures.... Read more
Copyright © 2000-2026 Globetech Media. All rights reserved.