Real-time imaging of the embryonic murine cardiovascular system is challenging due to the small size of the mouse embryo and rapid heart rate. High-frequency, linear-array ultrasound systems designed for small-animal imaging provide high-frame-rate and Doppler modes but are limited in regards to the field of view that can be imaged at fine-temporal and -spatial resolution. Here, a plane-wave imaging method was used to obtain high-speed image data from in utero mouse embryos and multi-angle, vector-flow algorithms were applied to the data to provide information on blood flow patterns in major organs. An 18-MHz linear array was used to acquire plane-wave data at absolute frame rates ≥10 kHz using a set of fixed transmission angles. After beam...
<p>Results of Pulsed Wave Doppler ultrasound (PW) measurements in fetal mice. a) mean heart rate acr...
Abstract: Live imaging of normal and abnormal vascular de-velopment in mammalian embryos is importan...
AbstractHigh-frequency ultrasound (HFU, >15 MHz) is a rapidly developing field. HFU is currently use...
An accurate diagnosis of congenital heart defects during fetal development is critical for intervent...
UnrestrictedSmall animal research is gaining more attention since mice and rats are preferred animal...
To preclinically investigate the role of hemodynamics in atherogenesis, mouse models are particularl...
High-frequency (HF) ultrasound imaging has been shown to be useful for non-invasively imaging anatom...
BACKGROUND: Ultrasound is a valuable non-invasive tool used in obstetrics and gynecology to monitor ...
Background. Heart development is a complex process, and abnormal development may result in congenita...
International audienceHigh frequency ultrasound imaging has become an effective tool for anatomical ...
Ultrasonography is a powerful tool to non-invasively monitor in real time the development of the hum...
The "natural history" of aortic aneurysm formation and growth is not fully understood. Mouse models ...
Abstract- High frequency ultrasound imaging has become an effective tool for anatomical mice studies...
Background: Ultrasound is a valuable non-invasive tool used in obstetrics and gynecology to monitor ...
Congenital heart defects (CHDs) are the most common cause of childhood morbidity and early mortality...
<p>Results of Pulsed Wave Doppler ultrasound (PW) measurements in fetal mice. a) mean heart rate acr...
Abstract: Live imaging of normal and abnormal vascular de-velopment in mammalian embryos is importan...
AbstractHigh-frequency ultrasound (HFU, >15 MHz) is a rapidly developing field. HFU is currently use...
An accurate diagnosis of congenital heart defects during fetal development is critical for intervent...
UnrestrictedSmall animal research is gaining more attention since mice and rats are preferred animal...
To preclinically investigate the role of hemodynamics in atherogenesis, mouse models are particularl...
High-frequency (HF) ultrasound imaging has been shown to be useful for non-invasively imaging anatom...
BACKGROUND: Ultrasound is a valuable non-invasive tool used in obstetrics and gynecology to monitor ...
Background. Heart development is a complex process, and abnormal development may result in congenita...
International audienceHigh frequency ultrasound imaging has become an effective tool for anatomical ...
Ultrasonography is a powerful tool to non-invasively monitor in real time the development of the hum...
The "natural history" of aortic aneurysm formation and growth is not fully understood. Mouse models ...
Abstract- High frequency ultrasound imaging has become an effective tool for anatomical mice studies...
Background: Ultrasound is a valuable non-invasive tool used in obstetrics and gynecology to monitor ...
Congenital heart defects (CHDs) are the most common cause of childhood morbidity and early mortality...
<p>Results of Pulsed Wave Doppler ultrasound (PW) measurements in fetal mice. a) mean heart rate acr...
Abstract: Live imaging of normal and abnormal vascular de-velopment in mammalian embryos is importan...
AbstractHigh-frequency ultrasound (HFU, >15 MHz) is a rapidly developing field. HFU is currently use...