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WMIC MPI Presentations

Watch the on-demand MPI talks from the WMIC 2020 virtual meeting, listed below. You have to register to access them, but registration is free. MPI posters and poster presentations from WMIC 2020 are also available below.

Tuesday, October 6

  • Pre-meeting Workshop: Magnetic Particle Imaging (MPI) Interest Group | Sponsored by Magnetic Insight 

Originally aired 12:00-1:30 PM EST | Recording will be available soon

Wednesday, October 7

  • Jeff Gaudet, MI. Combining Magnetic Particle Imaging (MPI) and Localized Hyperthermia for image guided therapy.

Originally aired 10:10-10:20 AM EST | View the recording at wmicvirtual.org: Access here

How to access the recording: Login > Navigate to "On-Demand Channel 1" > See Day 1, "Session 2: Engineering Novel Image-Guided Approaches" > Go to 08:45 on the video

Thursday, October 8

  • Kiersten Melo. Western. Micron-sized iron particles for the detection of cancer cells by magnetic particle imaging. Sponsored by Magnetic Insight 

Originally aired 10:40-10:50 AM EST | View the recording at wmicvirtual.org: Access here

How to access the recording: Login > Navigate to "On-Demand Channel 2" >Scroll down to Day 2, "Session 1: Magnetic Contrast" > Go to 38:12 on the video

  • Hasaan Hayat, MSU. Artificial intelligence analysis of magnetic particle imaging for islet transplantation in a mouse model

Originally aired 11:30-11:40 AM EST | View the recording at wmicvirtual.org: Access here

How to access the recording: Login > Navigate to "On-Demand Channel 1" > Scroll down to Day 2, "Session 4: Machine Learning" > Go to 28:28 on the video

Friday, October 9

  • Aixia Sun, MSU. in vivo Tracking of Stem Cell-derived Islet Organoids Using Magnetic Particle Imaging

Originally aired 9:30-9:40 AM EST | Recording will be available soon

  • Katie Parkins, JHU. Visualizing tumour self-homing with magnetic particle imaging

Originally aired 11:10-11:20 AM EST | View the recording at wmicvirtual.org: Access here

How to access the recording: Login > Navigate to "On-Demand Channel 1" > Scroll down to Day 3, "Session 3: Tumor Targeting" > Go to 7:45 on the video

  • Yapei Zhang, MSU. Drug release monitoring using magnetic particle imaging by exploiting particle degradation-induced shift to the Brownian regime.

Originally aired 1:20-1:30 PM EST | View the recording at wmicvirtual.org: Access here

How to access the recording: Login > Navigate to "On-Demand Channel 2" > Scroll down to Day 3, "Session 5: Late Breaking: Tracking Cells & Particles" > Go to 18:23 on the video

 

MPI Posters

How to access posters: Login to/register at wmicvirtual.org > Navigate to "e-Posters" > Search "MPI" and the 12 MPI posters listed below will appear on the page:

1) Julia Gevaert: Comparison of Iron Oxide Nanoparticles for Magnetic Particle Imaging

2) Erik Shapiro: Complex Relationship Between Iron Oxide Nanoparticle Degradation and Signal Intensity in Magnetic Particle Imaging

3) James Mansfield: Imaging Cancer Immunology: Magnetic Particle Imaging of CD47 Immunotherapy

4) King Long Barry Fung: Surface protein targeted white blood cell tracking of inflammation using Magnetic Particle Imaging (WBC-MPI)

5) Victoria Toomajian: In Vivo Tracking of Iron Labeled Extracellular Vesicles by Magnetic Particle Imaging

6) Kota Nomura: Dependence of Magnet Field Gradient on Spatial Resolution in MPI with Field-Free line

7) Sitong Liu: Long circulating tracer tailored for magnetic particle imaging

8) Quincy Huynh: Employing Active and Passive Compensation to Improve SNR of Arbitrary Waveform Relaxometer

9) Prashant Chandrasekharan: Monitoring outcome of hyperthermia treatment by measuring relaxation induced blurring with magnetic particle imaging

10) Natasha Knier: Dual modality imaging of human breast cancer cells derived from patient brain metastases

11) Chinmoy Saayujya: Computational modeling of superferromagnetism in finite-length chains of superparamagnetic Iron Oxide tracers for use in super-resolution Magnetic Particle Imaging

12) Caylin Colson: Measuring SPIO Chain Formation Times for Super-Resolution MPI with Magnetic Particle Relaxometry