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The estimation of elasticity and viscosity of soft tissues in vitro using the data of remote acoustic palpation.

The presented study revealed the significant dependence of displacement magnitude and strain relaxation on phantom elasticity and viscosity. It has been shown that simultaneous analysis of temporal behavior and magnitude of shear strain induced by the radiation force of focused ultrasonic beam gives the necessary data for quantitative estimation of tissue shear modulus because of the known functional dependencies of displacement on local viscosity and elasticity. As a result, the simplest calibration procedure of acoustic radiation force-based methods is performed and algorithm for separate reconstruction of tissue elasticity and viscosity is proposed. These findings were tested, in particular, using the data obtained for specially prepared phantoms containing calf liver and muscle tissue in vitro. The observed complex character of shear strain relaxation and noise in some tissue phantoms and tissues in vitro reduces the preciseness of viscoelastic properties estimation.

Algorithms↗

Molecular 'palpation' of BPH: a tale of MAPK signalling?

Benign prostatic hyperplasia (BPH) is a very common cause of hospitalization and surgery is currently the most effective therapy. MAP kinases (MAPKs) are a group of protein kinases with an important function in integrating physiological and pathological stimuli that might impact on cellular growth, differentiation and programmed cell death (apoptosis). Certain components of the MAPK signal-transduction pathways are involved in stimulus-specific fine-tuning of the activities mediated by the various MAPK families. As homeostasis is impaired in the hyperplastic prostate, aberrant coordination of the MAPK cascades might be implicated in a proliferative-apoptotic imbalance. Here, we hypothesize that the pathogenesis of BPH might be facilitated by functional anomalies in the MAPK circuitry and postulate that pharmacological 'rewiring' of MAPK pathways offers a potentially exciting new avenue for improved therapeutic control of clinical BPH.

Animals↗

Palpation pointer.

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Arterial Occlusive Diseases↗