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[1]徐方琪,孫奇,朱星瑜,等.不同生理磁共振成像技術(shù)在早期膝骨關(guān)節(jié)炎診斷中的應(yīng)用進(jìn)展[J].中醫(yī)正骨,2016,28(04):64-68.
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不同生理磁共振成像技術(shù)在早期膝骨關(guān)節(jié)炎診斷中的應(yīng)用進(jìn)展()
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《中醫(yī)正骨》[ISSN:1001-6015/CN:41-1162/R]

卷:
第28卷
期數(shù):
2016年04期
頁碼:
64-68
欄目:
綜述
出版日期:
2016-04-20

文章信息/Info

作者:
徐方琪1孫奇2朱星瑜1呂帥潔3肖魯偉1童培建3
1.浙江中醫(yī)藥大學(xué),浙江 杭州 310053;
2.浙江省杭州市富陽中醫(yī)骨傷醫(yī)院,浙江 杭州 311400;
3.浙江省中醫(yī)院,浙江 杭州 310006
關(guān)鍵詞:
磁共振成像 骨關(guān)節(jié)炎 綜述
摘要:
軟骨病變對(duì)骨關(guān)節(jié)炎的發(fā)生發(fā)展起著重要作用。生理磁共振成像技術(shù)具有較高的組織對(duì)比度,能夠較好地反映軟骨的生化、代謝及退變過程,對(duì)膝骨關(guān)節(jié)炎的早期診斷具有較高的應(yīng)用價(jià)值。本文就T2映射、T2*映射、自旋鎖定成像、軟骨磁共振延遲增強(qiáng)掃描、鈉成像、彌散加權(quán)成像、擴(kuò)散張量成像及化學(xué)交換飽和傳遞成像等生理磁共振成像技術(shù)在早期膝骨關(guān)節(jié)炎診斷中的應(yīng)用進(jìn)展進(jìn)行了綜述。

參考文獻(xiàn)/References:

[1] Meulenbelt I.Osteoarthritis year 2011 in review:genetics[J].Osteoarthritis Cartilage,2012,20(3):218-222.
[2] Glyn-Jones S,Palmer AJ,Agricola R,et al.Osteoarthritis[J].Lancet,2015,386(9991):376-387.
[3] Cicuttini FM,Wluka AE.Osteoarthritis:is OA a mechanical or systemic disease?[J].Nat Rev Rheumatol,2014,10(9):515-516.
[4] Dardzinski BJ,Mosher TJ,Li S,et al.Spatial variation of T2 in human articular cartilage[J].Radiology,1997,205(2):546-550.
[5] Wong CS,Yan CH,Gong NJ,et al.Imaging biomarker with T1ρ and T2 mappings in osteoarthritis-in vivo human articular cartilage study[J].Eur J Radiol,2013,82(4):647-650.
[6] Wei B,Du X,Liu J,et al.Associations between the properties of the cartilage matrix and findings from quantitative MRI in human osteoarthritic cartilage of the knee[J].Int J Clin Exp Pathol,2015,8(4):3928-3936.
[7] Dunn TC,Lu Y,Jin H,et al.T2 relaxation time of cartilage at MR imaging:comparison with severity of knee osteoarthritis[J].Radiology,2004,232(2):592-598.
[8] Baum T,Joseph GB,Arulanandan A,et al.Association of magnetic resonance imaging-based knee cartilage T2 measurements and focal knee lesions with knee pain:data from the Osteoarthritis Initiative[J].Arthritis Care Res(Hoboken),2012,64(2):248-255. 中醫(yī)正骨2016年4月第28卷第4期 J Trad Chin Orthop Trauma,2016,Vol.28,No.4(總307) (總308)中醫(yī)正骨2016年4月第28卷第4期 J Trad Chin Orthop Trauma,2016,Vol.28,No.4
[9] Mosher TJ,Liu Y,Yang QX,et al.Age dependency of cartilage magnetic resonance imaging T2 relaxation times in asymptomatic women[J].Arthritis Rheum,2004,50(9):2820-2828.
[10] Mosher TJ,Collins CM,Smith HE,et al.Effect of gender on in vivo cartilage magnetic resonance imaging T2 mapping[J].J Magn Reson Imaging,2004,19(3):323-328.
[11] Baum T,Joseph GB,Nardo L,et al.Correlation of magnetic resonance imaging-based knee cartilage T2 measurements and focal knee lesions with body mass index:thirty-six-month followup data from a longitudinal,observational multicenter study[J].Arthritis Care Res(Hoboken),2013,65(1):23-33.
[12] Serebrakian AT,Poulos T,Liebl H,et al.Weight loss over 48 months is associated with reduced progression of cartilage T2 relaxation time values:data from the osteoarthritis initiative[J].J Magn Reson Imaging,2015,41(5):1272-1280.
[13] Hirose J,Nishioka H,Nakamura E,et al.T1ρ and T2 mapping of the proximal tibiofibular joint in relation to aging and cartilage degeneration[J].Eur J Radiol,2012,81(10):2776-2782.
[14] Friedrich KM,Shepard T,Chang G,et al.Does joint alignment affect the T2 values of cartilage in patients with knee osteoarthritis?[J].Eur Radiol,2010,20(6):1532-1538.
[15] Lin W,Alizai H,Joseph GB,et al.Physical activity in relation to knee cartilage T2 progression measured with 3T MRI over a period of 4 years:data from the Osteoarthritis Initiative[J].Osteoarthritis Cartilage,2013,21(10):1558-1566.
[16] Kijowski R,Blankenbaker DG,Munoz Del Rio A,et al.Evaluation of the articular cartilage of the knee joint:value of adding a T2 mapping sequence to a routine MR imaging protocol[J].Radiology,2013,267(2):503-513.
[17] Hesper T,Hosalkar HS,Bittersohl D,et al.T2* mapping for articular cartilage assessment:principles,current applications,and future prospects[J].Skeletal Radiol,2014,43(10):1429-1445.
[18] Maier CF,Tan SG,Hariharan H,et al.T2 quantitation of articular cartilage at 1.5 T[J].J Magn Reson Imaging,2003,17(3):358-364.
[19] Mamisch TC,Hughes T,Mosher TJ,et al.T2 star relaxation times for assessment of articular cartilage at 3T:a feasibility study[J].Skeletal Radiol,2012,41(3):287-292.
[20] Williams A,Qian Y,Chu CR.UTE-T2* mapping of human articular cartilage in vivo:a repeatability assessment[J].Osteoarthritis Cartilage,2011,19(1):84-88.
[21] Williams A,Qian Y,Bear D,et al.Assessing degeneration of human articular cartilage with ultra-short echo time(UTE)T2* mapping[J].Osteoarthritis Cartilage,2010,18(4):539-546.
[22] Pauli C,Bae WC,Lee M,et al.Ultrashort-echo time MR imaging of the patella with bicomponent analysis:correlation with histopathologic and polarized light microscopic findings[J].Radiology,2012,264(2):484-493.
[23] Miese FR,Zilkens C,Holstein A,et al.Assessment of early cartilage degeneration after slipped capital femoral epiphysis using T2 and T2* mapping[J].Acta Radiol,2011,52(1):106-110.
[24] Krause FG,Klammer G,Benneker LM,et al.Biochemical T2* MR quantification of ankle arthrosis in pes cavovarus[J].J Orthop Res,2010,28(12):1562-1568.
[25] Li X,Kuo D,Theologis A,et al.Cartilage in anterior cruciate ligament-reconstructed knees:MR imaging T1{rho}and T2—initial experience with 1-year follow-up[J].Radiology,2011,258(2):505-514.
[26] Bashir A,Gray ML,Burstein D.Gd-DTPA2-as a measure of cartilage degradation[J].Magn Reson Med,1996,36(5):665-673.
[27] Nishioka H,Hirose J,Okamoto N,et al.Evaluation of the relationship between T1ρ and T2 values and patella cartilage degeneration in patients of the same age group[J].Eur J Radiol,2015,84(3):463-468.
[28] Koskinen SK,Ylä-Outinen H,Aho HJ,et al.Magnetization transfer and spin lock MR imaging of patellar cartilage degeneration at 0.1 T[J].Acta Radiol,1997,38(6):1071-1075.
[29] Wang L,Regatte RR.Quantitative mapping of human cartilage at 3.0T:parallel changes in T2,T1ρ,and dGEMRIC[J].Acad Radiol,2014,21(4):463-471.
[30] Li X,Pai A,Blumenkrantz G,et al.Spatial distribution and relationship of T1rho and T2 relaxation times in knee cartilage with osteoarthritis[J].Magn Reson Med,2009,61(6):1310-1318.
[31] Gold GE,Burstein D,Dardzinski B,et al.MRI of articular cartilage in OA:novel pulse sequences and compositional/functional markers[J].Osteoarthritis Cartilage,2006,14 Suppl A:A76-86.
[32] Van Tiel J,Kotek G,Reijman M,et al.Is T1ρ Mapping an Alternative to Delayed Gadolinium-enhanced MR Imaging of Cartilage in the Assessment of Sulphated Glycosaminoglycan Content in Human Osteoarthritic Knees?An in Vivo Validation Study[J].Radiology,2016,279(2):523-531.
[33] Burstein D,Gray ML,Hartman AL,et al.Diffusion of small solutes in cartilage as measured by nuclear magnetic resonance(NMR)spectroscopy and imaging[J].J Orthop Res,1993,11(4):465-478.
[34] Owman H,Ericsson YB,Englund M,et al.Association between delayed gadolinium-enhanced MRI of cartilage(dGEMRIC)and joint space narrowing and osteophytes:a cohort study in patients with partial meniscectomy with 11 years of follow-up[J].Osteoarthritis Cartilage,2014,22(10):1537-1541.
[35] Sigurdsson U,Siversson C,Lammentausta E,et al.In vivo transport of Gd-DTPA2-into human meniscus and cartilage assessed with delayed gadolinium-enhanced MRI of cartilage(dGEMRIC)[J].BMC Musculoskelet Disord,2014,15:226.
[36] Borthakur A,Mellon E,Niyogi S,et al.Sodium and T1 rho MRI for molecular and diagnostic imaging of articular cartilage[J].NMR Biomed,2006,19(7):781-821.
[37] Trattnig S,Welsch GH,Juras V,et al.23Na MR imaging at 7 T after knee matrix-associated autologous chondrocyte transplantation preliminary results[J].Radiology,2010,257(1):175-184.
[38] Zhu SC,Shi DP,Xuan A.Human patellar cartilage:echo planar diffusion-weighted MR imaging findings at 3.0T[J].Clin Imaging,2012,36(3):199-202.
[39] Deoni SC,Peters TM,Rutt BK.Quantitative diffusion imaging with steady-state free precession[J].Magn Reson Med,2004,51(2):428-433.
[40] Bieri O,Ganter C,Scheffler K.Quantitative in vivo diffusion imaging of cartilage using double echo steady-state free precession[J].Magn Reson Med,2012,68(3):720-729.
[41] Friedrich KM,Mamisch TC,Plank C,et al.Diffusion-weighted imaging for the follow-up of patients after matrix-associated autologous chondrocyte transplantation[J].Eur J Radiol,2010,73(3):622-628.
[42] Raya JG,Melkus G,Adam-Neumair S,et al.Diffusion-tensor imaging of human articular cartilage specimens with early signs of cartilage damage[J].Radiology,2013,266(3):831-841.
[43] Ukai T,Sato M,Yamashita T,et al.Diffusion tensor imaging can detect the early stages of cartilage damage:a comparison study[J].BMC Musculoskelet Disord,2015,16:35.
[44] Raya JG,Dettmann E,Notohamiprodjo M,et al.Feasibiltiy of in vivo diffusion tensor imaging of articular cartilage with coverage of all cartilage regions[J].Eur Radiol,2014,24(7):1700-1706.
[45] Ling W,Regatte RR,Navon G,et al.Assessment of glycosaminoglycan concentration in vivo by chemical exchange-dependent saturation transfer(gagCEST)[J].Proc Natl Acad Sci USA,2008,105(7):2266-2270.
[46] Rehnitz C,Kupfer J,Streich NA,et al.Comparison of biochemical cartilage imaging techniques at 3T MRI[J].Osteoarthritis Cartilage,2014,22(10):1732-1742.
[47] Lee JS,Parasoglou P,Xia D,et al.Uniform magnetization transfer in chemical exchange saturation transfer magnetic resonance imaging[J].Sci Rep,2013,3:1707.
[48] Schleich C,Bittersohl B,Miese F,et al.Glycosaminoglycan chemical exchange saturation transfer at 3T MRI in asymptomatic knee joints[J].Acta Radiol,2016,57(5):627-632.

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備注/Memo

備注/Memo:
基金項(xiàng)目:浙江省科技廳重大與高發(fā)疾病防治技術(shù)項(xiàng)目(2012C13017-2)
通訊作者:童培建 E-mail:[email protected]
更新日期/Last Update: 2016-08-30