(3.1.6)--10.头颈部肿瘤脑科学与影像新技术.pdf
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1、Simple and Reliable Determination of IntravoxelIncoherent Motion Parameters for the DifferentialDiagnosis of Head and Neck TumorsMiho Sasaki,Misa Sumi,Sato Eida,Ikuo Katayama,Yuka Hotokezaka,Takashi Nakamura*Department of Radiology and Cancer Biology,Nagasaki University School of Dentistry,Nagasaki,
2、JapanAbstractIntravoxel incoherent motion(IVIM)imaging can characterize diffusion and perfusion of normal and diseased tissues,andIVIM parameters are authentically determined by using cumbersome least-squares method.We evaluated a simpletechnique for the determination of IVIM parameters using geomet
3、ric analysis of the multiexponential signal decay curve asan alternative to the least-squares method for the diagnosis of head and neck tumors.Pure diffusion coefficients(D),microvascular volume fraction(f),perfusion-related incoherent microcirculation(D*),and perfusion parameter that is heavilyweig
4、hted towards extravascular space(P)were determined geometrically(Geo D,Geo f,and Geo P)or by least-squaresmethod(Fit D,Fit f,and Fit D*)in normal structures and 105 head and neck tumors.The IVIM parameters were compared fortheir levels and diagnostic abilities between the 2 techniques.The IVIM param
5、eters were not able to determine in 14 tumorswith the least-squares method alone and in 4 tumors with the geometric and least-squares methods.The geometric IVIMvalues were significantly different(p,0.001)from Fit values(+264%and 27624%for D and f values,respectively).Geo Dand Fit D differentiated be
6、tween lymphomas and SCCs with similar efficacy(78%and 80%accuracy,respectively).Stepwiseapproaches using combinations of Geo D and Geo P,Geo D and Geo f,or Fit D and Fit D*differentiated betweenpleomorphic adenomas,Warthin tumors,and malignant salivary gland tumors with the same efficacy(91%accuracy
7、=21/23).However,a stepwise differentiation using Fit D and Fit f was less effective(83%accuracy=19/23).Consideringcumbersome procedures with the least squares method compared with the geometric method,we concluded that thegeometric determination of IVIM parameters can be an alternative to least-squa
8、res method in the diagnosis of head andneck tumors.Citation:Sasaki M,Sumi M,Eida S,Katayama I,Hotokezaka Y,et al.(2014)Simple and Reliable Determination of Intravoxel Incoherent Motion Parameters for theDifferential Diagnosis of Head and Neck Tumors.PLoS ONE 9(11):e112866.doi:10.1371/journal.pone.01
9、12866Editor:Sune N.Jespersen,Aarhus University,DenmarkReceived March 7,2014;Accepted October 20,2014;Published November 17,2014Copyright:?2014 Sasaki et al.This is an open-access article distributed under the terms of the Creative Commons Attribution License,which permitsunrestricted use,distributio
10、n,and reproduction in any medium,provided the original author and source are credited.Data Availability:The authors confirm that all data underlying the findings are fully available without restriction.All data underlying the findings in the presentstudy are freely available in the manuscript.Fundin
11、g:The authors received the funds of this study from the internal source of Nagasaki University.The funders had no role in study design,data collectionand analysis,decision to publish,or preparation of the manuscript.Competing Interests:The authors have declared that no competing interests exist.*Ema
12、il:takunagasaki-u.ac.jpIntroductionDiffusion occurs because of the non-ending movement of everysingle molecule 1.Brown first observed this phenomenon(although Ingenhousz found the phenomenon earlier than Browndid),and Einstein later gave this phenomenon a sound mathe-matical description considering
13、a free diffusion process,where themolecules only collide with other molecules in a homogeneouscontainer without boundaries.Diffusion-weighted imaging(DWI)is based on MR signal attenuations caused by the displacement ofintracellular and extracellular water molecules for a given time.Inbiological tiss
14、ues,however,the environment of water moleculescan hardly be called homogeneous:membranes,macromolecules,and fibers hamper the diffusion process 2.Furthermore,there isother incoherent motion within a voxel that can lead to signalattenuation;in particular,the water molecules in blood capillariesexhibi
15、t a pseudorandom motion in the tortuous capillaries.Le Bihan proposed that intravoxel incoherent motion(IVIM)imaging can distinguish between the pure molecular diffusion andmotion of water molecules in the capillary network with a singleDWI acquisition technique,provided that high b-values($200 s/mm
16、2)and low b-values(,200 s/mm2)are used 3.The IVIMimaging can be characterized by 3 parameters:pure diffusioncoefficient(D);microvascular volume fraction(f);and perfusion-related incoherent microcirculation(D*)4.To determine theIVIM parameters from a multiexponential signal decay curve,theleast-squar
17、es method is usually used 4,5.However,the method iscumbersome,and thus may not be suitable for routine clinical use.Recently,some researchers have applied simplified methods fordetermining IVIM parameters to characterize tumors in the liver,prostate,and head and neck region 69.For example,Lewin etal
18、 shoed that the perfusion fraction parameter f determined byusing a geometric analysis of DW MR images can be a marker ofsorafenib treatment of patients with advanced hepatocellularcarcinoma 7.However,they did not indicate how precise thegeometric determination of the perfusion parameter comparedwit
19、h the conventional technique.In addition,Mazaheri et al notedthat the linear fit of the logarithmic signal using limited numbers ofb-value is statistically less appropriate than fitting the signals toexponential functions using a least-squares method 8.ThePLOS ONE|www.plosone.org1November 2014|Volum
20、e 9|Issue 11|e112866authors also suggested the importance of b-value selection used forthe simplified IVIM analysis.In simplified methods,the IVIMparameters are estimated by using a limited number 34 of b-values compared with the authentic IVIM imaging,which uses 913 b-values 4,5,10,11.However,the r
21、eliability in measurementsand effectiveness in diagnosing tumors with simplified IVIMtechniques using limited numbers of b-value has not been fullyinvestigated.Sasaki et al.reported the reproducibility of IVIMparameter measurements in evaluating the technique for func-tional assessment of the mastic
22、ator muscles 12.However,therewas no published report that presented the reproducibility ofIVIM parameters in diagnosing tumors.In the present study,wedirectlycomparedtheIVIMparametervaluesthatweredeterminedbyasimplifiedgeometricmethodwiththosedetermined by the conventional least-squares method.We ha
23、vealso compared the diagnostic accuracy for diagnosing head andneck squamous cell carcinomas(SCCs)and lymphomas as well asbenign and malignant salivary gland tumors between the 2methods.Materials and MethodsEthics statementThe Ethics Committee of Nagasaki University approved thisstudy.Informed conse
24、nt was waived due to the retrospectiveTable 1.105 head and neck tumors.TumornBenign35Salivary gland tumorPleomorphic adenoma15Warthin tumor8Odontogenic tumorAmeloblastoma2Keratcysticodontogenic tumor2Odontogenic fibroma2Odontogenicmyxoma1Hemangioma1Angiomyoma1Myofibroma1Papiloma1Adenomatous goiter1M
25、alignant70SCC25SCC node12Lymphoma14Salivary gland tumorCarcinoma ex.pleomorphic adenoma2Adenoid cystic carcinoma1Acinic cell carcinoma1Adenocarcinoma1Dedifferentiated carcinoma1Salivary duct carcinoma1Lymph node metastasis from malignant salivary gland tumor4Malignant melanoma1Nasopharyngeal carcino
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