Renal shear wave velocity by acoustic radiation force impulse did not reflect advanced renal impairment.

scientific article published in December 2016

Renal shear wave velocity by acoustic radiation force impulse did not reflect advanced renal impairment. is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1111/NEP.12701
P698PubMed publication ID26667380

P50authorTomoaki TakataQ60970851
P2093author name stringHajime Isomoto
Chishio Munemura
Takeaki Fukui
Shinobu Sugihara
Satoko Fukuda
Masahiko Koda
Toshiaki Okamoto
Takaaki Sugihara
Tomomitsu Matono
Kenichi Miyoshi
Keiko Hosho
Yukari Mae
Takuji Iyama
P2860cites workAcoustic waves in medical imaging and diagnosticsQ30435868
Acoustic radiation force impulse imaging for noninvasive evaluation of renal parenchyma elasticity: preliminary findingsQ30452095
Acoustic radiation force elasticity imaging in diagnostic ultrasoundQ30453582
Shearwave dispersion ultrasound vibrometry (SDUV) on swine kidneyQ30457627
Acoustic radiation force impulse elastography of the kidneys: is shear wave velocity affected by tissue fibrosis or renal blood flow?Q39203706
Assessment of renal tissue elasticity by acoustic radiation force impulse quantification with histopathological correlation: preliminary experience in chronic kidney diseaseQ39207711
Reduced renal function in patients with simple renal cystsQ44900468
Acquired cystic transformation of the kidneys of haemodialysed patientsQ45128891
Quantitative elastography of renal transplants using supersonic shear imaging: a pilot study.Q45760761
Age-related changes in liver, kidney, and spleen stiffness in healthy children measured with acoustic radiation force impulse imagingQ46863027
Acoustic Radiation Force Impulse (ARFI) technique in ultrasound with Virtual Touch tissue quantification of the upper abdomenQ56779156
P433issue12
P304page(s)1056-1062
P577publication date2016-12-01
P1433published inNephrologyQ15750101
P1476titleRenal shear wave velocity by acoustic radiation force impulse did not reflect advanced renal impairment
P478volume21

Reverse relations

cites work (P2860)
Q64900940A novel ultrasound technique to detect early chronic kidney disease.
Q96166116Acoustic Radiation Force Impulse Elastography May Predict Acute Rejection in Kidney Transplantation
Q28080028Applications of acoustic radiation force impulse quantification in chronic kidney disease: a review
Q47103128Clinical value of liver and spleen shear wave velocity in predicting the prognosis of patients with portal hypertension
Q52809193Full-Field-of-View Time-Harmonic Elastography of the Native Kidney.
Q48093002Renal shear wave elastography for the assessment of nephron hypertrophy: a cross-sectional study in chronic kidney disease
Q91182621Supersonic Shear Wave Ultrasonography for Assessing Tissue Stiffness in Native Kidney
Q46351473Utility of Shear Wave Elastography for Assessing Allograft Fibrosis in Renal Transplant Recipients: A Pilot Study.

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