Literature DB >> 28976180

Magnetic Particle Imaging for Real-Time Perfusion Imaging in Acute Stroke.

Peter Ludewig, Nadine Gdaniec1, Jan Sedlacik, Nils D Forkert2, Patryk Szwargulski1, Matthias Graeser1, Gerhard Adam, Michael G Kaul, Kannan M Krishnan3,4, R Matthew Ferguson3, Amit P Khandhar3, Piotr Walczak5,6, Jens Fiehler, Götz Thomalla, Christian Gerloff, Tobias Knopp1, Tim Magnus.   

Abstract

The fast and accurate assessment of cerebral perfusion is fundamental for the diagnosis and successful treatment of stroke patients. Magnetic particle imaging (MPI) is a new radiation-free tomographic imaging method with a superior temporal resolution, compared to other conventional imaging methods. In addition, MPI scanners can be built as prehospital mobile devices, which require less complex infrastructure than computed tomography (CT) and magnetic resonance imaging (MRI). With these advantages, MPI could accelerate the stroke diagnosis and treatment, thereby improving outcomes. Our objective was to investigate the capabilities of MPI to detect perfusion deficits in a murine model of ischemic stroke. Cerebral ischemia was induced by inserting of a microfilament in the internal carotid artery in C57BL/6 mice, thereby blocking the blood flow into the medial cerebral artery. After the injection of a contrast agent (superparamagnetic iron oxide nanoparticles) specifically tailored for MPI, cerebral perfusion and vascular anatomy were assessed by the MPI scanner within seconds. To validate and compare our MPI data, we performed perfusion imaging with a small animal MRI scanner. MPI detected the perfusion deficits in the ischemic brain, which were comparable to those with MRI but in real-time. For the first time, we showed that MPI could be used as a diagnostic tool for relevant diseases in vivo, such as an ischemic stroke. Due to its shorter image acquisition times and increased temporal resolution compared to that of MRI or CT, we expect that MPI offers the potential to improve stroke imaging and treatment.

Entities:  

Keywords:  animal models of human disease; basic science research; cerebrovascular disease; ischemic stroke; magnetic particle imaging; nanomedicine; nanoparticles; stroke imaging

Mesh:

Substances:

Year:  2017        PMID: 28976180     DOI: 10.1021/acsnano.7b05784

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  28 in total

1.  Pulsed Excitation in Magnetic Particle Imaging.

Authors:  Zhi Wei Tay; Daniel Hensley; Jie Ma; Prashant Chandrasekharan; Bo Zheng; Patrick Goodwill; Steven Conolly
Journal:  IEEE Trans Med Imaging       Date:  2019-02-11       Impact factor: 10.048

2.  Magnetic Particle Imaging-Guided Heating in Vivo Using Gradient Fields for Arbitrary Localization of Magnetic Hyperthermia Therapy.

Authors:  Zhi Wei Tay; Prashant Chandrasekharan; Andreina Chiu-Lam; Daniel W Hensley; Rohan Dhavalikar; Xinyi Y Zhou; Elaine Y Yu; Patrick W Goodwill; Bo Zheng; Carlos Rinaldi; Steven M Conolly
Journal:  ACS Nano       Date:  2018-03-28       Impact factor: 15.881

3.  Superferromagnetic Nanoparticles Enable Order-of-Magnitude Resolution & Sensitivity Gain in Magnetic Particle Imaging.

Authors:  Zhi Wei Tay; Shehaab Savliwala; Daniel W Hensley; K L Barry Fung; Caylin Colson; Benjamin D Fellows; Xinyi Zhou; Quincy Huynh; Yao Lu; Bo Zheng; Prashant Chandrasekharan; Sindia M Rivera-Jimenez; Carlos M Rinaldi-Ramos; Steven M Conolly
Journal:  Small Methods       Date:  2021-09-12

Review 4.  Nanoparticles in the diagnosis and treatment of vascular aging and related diseases.

Authors:  Hui Xu; Shuang Li; You-Shuo Liu
Journal:  Signal Transduct Target Ther       Date:  2022-07-11

Review 5.  Magnetic particle imaging for radiation-free, sensitive and high-contrast vascular imaging and cell tracking.

Authors:  Xinyi Y Zhou; Zhi Wei Tay; Prashant Chandrasekharan; Elaine Y Yu; Daniel W Hensley; Ryan Orendorff; Kenneth E Jeffris; David Mai; Bo Zheng; Patrick W Goodwill; Steven M Conolly
Journal:  Curr Opin Chem Biol       Date:  2018-05-10       Impact factor: 8.822

6.  Optimization of Drive Parameters for Resolution, Sensitivity and Safety in Magnetic Particle Imaging.

Authors:  Zhi Wei Tay; Daniel W Hensley; Prashant Chandrasekharan; Bo Zheng; Steven M Conolly
Journal:  IEEE Trans Med Imaging       Date:  2019-12-02       Impact factor: 10.048

Review 7.  A perspective on a rapid and radiation-free tracer imaging modality, magnetic particle imaging, with promise for clinical translation.

Authors:  Prashant Chandrasekharan; Zhi Wei Tay; Xinyi Yedda Zhou; Elaine Yu; Ryan Orendorff; Daniel Hensley; Quincy Huynh; K L Barry Fung; Caylin Colson VanHook; Patrick Goodwill; Bo Zheng; Steven Conolly
Journal:  Br J Radiol       Date:  2018-06-21       Impact factor: 3.039

8.  Navigation of a magnetic micro-robot through a cerebral aneurysm phantom with magnetic particle imaging.

Authors:  Franz Wegner; Thorsten M Buzug; Anna C Bakenecker; Anselm von Gladiss; Hannes Schwenke; André Behrends; Thomas Friedrich; Kerstin Lüdtke-Buzug; Alexander Neumann; Joerg Barkhausen
Journal:  Sci Rep       Date:  2021-07-07       Impact factor: 4.379

9.  MRI Guided Focused Ultrasound-Mediated Delivery of Therapeutic Cells to the Brain: A Review of the State-of-the-Art Methodology and Future Applications.

Authors:  Nabid Ahmed; Dheeraj Gandhi; Elias R Melhem; Victor Frenkel
Journal:  Front Neurol       Date:  2021-06-17       Impact factor: 4.086

10.  Tailored Magnetic Multicore Nanoparticles for Use as Blood Pool MPI Tracers.

Authors:  Harald Kratz; Azadeh Mohtashamdolatshahi; Dietmar Eberbeck; Olaf Kosch; Frank Wiekhorst; Matthias Taupitz; Bernd Hamm; Nicola Stolzenburg; Jörg Schnorr
Journal:  Nanomaterials (Basel)       Date:  2021-06-10       Impact factor: 5.076

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