Literature DB >> 10552083

Non-invasive assessment of skeletal kinetics using fluorine-18 fluoride positron emission tomography: evaluation of image and population-derived arterial input functions.

G J Cook1, M A Lodge, P K Marsden, A Dynes, I Fogelman.   

Abstract

To measure regional skeletal kinetics using fluorine-18 fluoride positron emission tomography (PET) it is necessary to know the concentration of radioactive tracer being delivered to bone by arterial plasma with relation to time, the arterial input function (IFa). Methods by which IFa can be derived without arterial sampling are attractive because of their relative technical simplicity and the reduction in possible morbidity to the subject. We have compared the use of a scaled population input function (IFp) and a corrected image-derived input function from the aorta (IFi) with an IFa directly measured from a radial artery line in ten normal postmenopausal women. Both of the aforementioned methods rely only on a small number of discrete venous samples. Each subject had a dynamic PET acquisition of the lumbar spine performed after the intravenous injection of 180 MBq (18)F-fluoride. Both the IFp and the IFi were compared with the IFa in terms of the accuracy of determination of six parameters. These were: plasma clearance of fluoride to bone mineral (K(i)), unidirectional plasma clearance to total bone tissue (K(1)) and individual rate constants k(2), k(3) and k(4), calculated using non-linear regression with a three-compartment model, and the plasma clearance to bone mineral calculated using the Patlak method (K(pat)). For both the IFp and the IFi method the root mean square errors for K(pat) and K(i) were similar and small (<8.2%). The errors in determining K(1) and the rate constants k(2) to k(4) are larger by either method, but with a small advantage using the IFp method. It is concluded that the use of either non-invasive method for determining the arterial plasma input function is suitable for the measurement of the most important parameters, K(i) and K(pat), in these subjects.

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Year:  1999        PMID: 10552083     DOI: 10.1007/s002590050474

Source DB:  PubMed          Journal:  Eur J Nucl Med        ISSN: 0340-6997


  27 in total

1.  Estimation of regional bone metabolism from whole-body 18F-fluoride PET static images.

Authors:  Musib Siddique; Glen M Blake; Michelle L Frost; Amelia E B Moore; Tanuj Puri; Paul K Marsden; Ignac Fogelman
Journal:  Eur J Nucl Med Mol Imaging       Date:  2011-11-08       Impact factor: 9.236

2.  Differences in regional bone metabolism at the spine and hip: a quantitative study using (18)F-fluoride positron emission tomography.

Authors:  T Puri; M L Frost; K M Curran; M Siddique; A E B Moore; G J R Cook; P K Marsden; I Fogelman; G M Blake
Journal:  Osteoporos Int       Date:  2012-05-12       Impact factor: 4.507

Review 3.  Image-derived input function for brain PET studies: many challenges and few opportunities.

Authors:  Paolo Zanotti-Fregonara; Kewei Chen; Jeih-San Liow; Masahiro Fujita; Robert B Innis
Journal:  J Cereb Blood Flow Metab       Date:  2011-08-03       Impact factor: 6.200

Review 4.  Importance of quantification for the analysis of PET data in oncology: review of current methods and trends for the future.

Authors:  Giampaolo Tomasi; Federico Turkheimer; Eric Aboagye
Journal:  Mol Imaging Biol       Date:  2012-04       Impact factor: 3.488

5.  (18)F-NaF PET/CT: EANM procedure guidelines for bone imaging.

Authors:  M Beheshti; F M Mottaghy; F Paycha; F F F Behrendt; T Van den Wyngaert; I Fogelman; K Strobel; M Celli; S Fanti; F Giammarile; B Krause; W Langsteger
Journal:  Eur J Nucl Med Mol Imaging       Date:  2015-07-23       Impact factor: 9.236

6.  Regional bone metabolism at the lumbar spine and hip following discontinuation of alendronate and risedronate treatment in postmenopausal women.

Authors:  M L Frost; M Siddique; G M Blake; A E Moore; P K Marsden; P J Schleyer; R Eastell; I Fogelman
Journal:  Osteoporos Int       Date:  2011-10-08       Impact factor: 4.507

Review 7.  Site specific measurements of bone formation using [18F] sodium fluoride PET/CT.

Authors:  Glen M Blake; Tanuj Puri; Musib Siddique; Michelle L Frost; Amelia E B Moore; Ignac Fogelman
Journal:  Quant Imaging Med Surg       Date:  2018-02

Review 8.  PET-MRI for the Study of Metabolic Bone Disease.

Authors:  James S Yoder; Feliks Kogan; Garry E Gold
Journal:  Curr Osteoporos Rep       Date:  2018-12       Impact factor: 5.096

9.  Population-based input function and image-derived input function for [¹¹C](R)-rolipram PET imaging: methodology, validation and application to the study of major depressive disorder.

Authors:  Paolo Zanotti-Fregonara; Christina S Hines; Sami S Zoghbi; Jeih-San Liow; Yi Zhang; Victor W Pike; Wayne C Drevets; Alan G Mallinger; Carlos A Zarate; Masahiro Fujita; Robert B Innis
Journal:  Neuroimage       Date:  2012-08-10       Impact factor: 6.556

10.  Assessment of the metabolic activity of bone grafts with (18)F-fluoride PET.

Authors:  Winfried Brenner; Cheryl Vernon; Ernest U Conrad; Janet F Eary
Journal:  Eur J Nucl Med Mol Imaging       Date:  2004-06-10       Impact factor: 9.236

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