Preclinical Imaging Modalities

Preclinical imaging modalities are noninvasive or minimally invasive technologies used to visualize anatomy, physiology, and disease in laboratory models before clinical translation, making them important for evaluating bioengineered therapies and devices. They generate contrast through distinct physical principles: MRI detects magnetic resonance signals, CT measures X-ray attenuation, ultrasound records reflected sound waves, optical methods capture emitted or fluorescent light, and PET or SPECT maps radiotracer distribution. In bioengineering, these tools track scaffold integration, vascularization, tissue regeneration, biomaterial degradation, and therapeutic delivery over time, often enabling longitudinal measurements in the same subject. Multimodal imaging can combine structural and functional data to improve validation, safety assessment, and the design of biomedical interventions.

Preclinical Imaging Modalities - Related Videos

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JoVE Journal - Bioengineering
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Multimodal Cross-Device and Marker-Free Co-Registration of Preclinical Imaging Modalities

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2023

The combination of multiple imaging modalities is often necessary to gain a comprehensive understanding of pathophysiology. This approach utilizes phantoms to generate a differential transformation between the coordinate systems of two modalities, which is then applied for co-registration. This method eliminates the need for fiducials in production scans.

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JoVE Journal - Biology
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Imaging In-Stent Restenosis: An Inexpensive, Reliable, and Rapid Preclinical Model

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2009

This video demonstrates how to use a preclinical inexpensive and reliable model to study pathobiological and pathophysiological processes of in-stent restenosis development. Longitudinal in vivo monitoring using OCT (Optical Coherence Tomography) and analysis of OCT images are also demonstrated.

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JoVE Journal - Neuroscience
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Cross-Modal Multivariate Pattern Analysis

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2011

Classical multivariate pattern analysis predicts sensory stimuli a subject perceives from neural activity in the corresponding cortices (e.g. visual stimuli from activity in visual cortex). Here, we apply pattern analysis cross-modally and show that sound- and touch-implying visual stimuli can be predicted from activity in auditory and somatosensory cortices, respectively.

Research

JoVE Journal - Bioengineering

Construction of a Preclinical Multimodality Phantom Using Tissue-mimicking Materials for Quality Assurance in Tumor Size Measurement

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2013

This paper describes in-house procedures of constructing a preclinical multimodality phantom made of tissue-mimicking (TM) materials for quality assurance (QA) of tumor size measurement in animal imaging modalities such as ultrasound (US), computed tomography (CT) and magnetic resonance imaging (MRI).

Multi-modal Imaging of Angiogenesis in a Nude Rat Model of Breast Cancer Bone Metastasis Using Magnetic Resonance Imaging, Volumetric Computed Tomography and Ultrasound

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2012

In the pathogenesis of bone metastasis, angiogenesis is a crucial process and therefore represents a target for imaging and therapy. Here, we present a rat model of site-specific breast cancer bone metastasis and describe strategies to non-invasively image angiogenesis in vivo using magnetic resonance imaging, volumetric computed tomography and ultrasound.

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