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205篇 您的检索式:作者名="Carrino"
    题名 作者 年代 出处 被引量
1腰部的脊骨的磁性的回声成像上的过渡 lumbosacral 解剖的预言显示文摘 AIM:To evaluate two simple angle measurements for predicting lumbosacral transitional vertebra(LSTV) in magnetic resonance imaging(MRI) studies of the spine.METHODS:The lumbar spine MRI studies of 50 subjects with LSTV and 50 subjects with normal lumbosacral anatomy were retrospectively evaluated.In each study,the mid-sagittal T2-weighted image was used to measure the angle formed by a line parallel to the superior surface of the sacrum and a line perpendicular to the axis of the scan table(A-angle),as well as the angle formed by a line parallel to the superior endplate of the L3 vertebra and a line parallel to the superior surface of the sacrum(B-angle).RESULTS:The total study population consisted of 100 subjects(46 males,54 females,51 ± 16 years old).There were no differences in age and sex between the two groups.Both A-angle and B-angle were significantly increased in subjects with LSTV compared to controls(P < 0.05).The optimal cut-off values of A-angle and B-angle for the prediction of LSTV were 39.8°(sensitivity = 80%,specificity = 80%,accuracy = 83%;95% confidence interval = 74%-89%,P = 0.0001) and 35.9°(sensitivity = 80%,specificity = 54%,accuracy = 69%;95% confidence interval = 59%-78%,P = 0.0005),respectively.CONCLUSION:On sagittal MR images of the lumbar spine,an increased A-angle and/or B-angle should alert the radiologist to the presence of LSTV.Majid Chalian Theodoros Soldatos John A Carrino Alan J Belzberg Jay Khanna Avneesh Chhabra 2012World Journal of Radiology2012,4,3:5
2Incremental value of magnetic resonance neurography of Lumbosacral plexus over non-contributory lumbar spine magnetic resonance imaging in radiculopathy: A prospective study显示文摘AIM: To test the incremental value of 3T magnetic resonance neurography(MRN) in a series of unilateral radiculopathy patients with non-contributory magnetic resonance imaging(MRI).METHODS: Ten subjects(3 men,7 women; mean age54 year and range 22-74 year) with unilateral lumbar radiculopathy and with previous non-contributory lumbar spine MRI underwent lumbosacral(LS) plexus MRN over a period of one year. Lumbar spine MRI performed as part of the MRN LS protocol as well as bilateral L4-S1 nerves,sciatic,femoral and lateral femoral cutaneous nerves were evaluated in each subject for neuropathy findings on both anatomic(nerve signal,course and caliber alterations) and diffusion tensor imaging(DTI)tensor maps(nerve signal and caliber alterations).Minimum fractional anisotropy(FA) and mean apparent diffusion coeffcient(ADC) of L4-S2 nerve roots,sciatic and femoral nerves were recorded.RESULTS: All anatomic studies and 80% of DTI imaging received a good-excellent imaging quality grading. In a blinded evaluation,all 10 examinations demonstrated neural and/or neuromuscular abnormality corresponding to the site of radiculopathy. A number of contributory neuropathy findings including double crush syndrome were observed. On DTI tensor maps,nerve signal and caliber alterations were more conspicuous. Although individual differences were observed among neuropathic appearing nerve(lower FA and increased ADC) as compared to its contralateral counterpart,there were no significant mean differences on statistical comparison of LS plexus nerves,femoral and sciatic nerves(P > 0.05).CONCLUSION: MRN of LS plexus is useful modality for the evaluation of patients with non-contributory MRI of lumbar spine as it can incrementally delineate the etiology and provide direct objective and non-invasive evidence of neuromuscular pathology.Avneesh Chhabra Sahar J Farahani Gaurav K Thawait Vibhor Wadhwa Allan J Belzberg John A Carrino 2016World Journal of Radiology2016,8,1:4
33T magnetic resonance neurography of pudendal nerve with cadaveric dissection correlation显示文摘AIM: To evaluate the pudendal nerve segments that could be identified on magnetic resonance neurography(MRN) before and after surgical marking of different nerve segments.METHODS: The hypothesis for this study was that pudendal nerve and its branches would be more easily seen after the surgical nerve marking. Institutional board approval was obtained. One male and one female cadaver pelvis were obtained from the anatomy board and were scanned using 3 Tesla MRI scanner using MR neurography sequences. All possible pudendal nerve branches were identified. The cadavers were then sent to the autopsy lab and were surgically dissected by a peripheral nerve surgeon and an anatomist to identify the pudendal nerve branches. Radiological markers were placed along the course of the pudendal nerve and its branches. The cadavers were then closed and rescanned using the same MRN protocol as the premarking scan. The remaining pudendal nerve branches were attempted to be identified using the radiological markers. All scans were read by an experienced musculoskeletal radiologist.RESULTS: The pre-marking MR Neurography scans clearly showed the pudendal nerve at its exit from the lumbosacral plexus in the sciatic notch, at the level of the ischial spine and in the Alcock's Canal in both cadavers. Additionally, the right hemorrhoidal branch could be identified in the male pelvis cadaver. The perineal and distal genital branches could not be identified. On post-marking scans, the markers were used as identifiable structures. The location of the perineal branch, the hemorroidal branch and the dorsal nerve to penis(in male cadaver)/clitoris(in female cadaver) could be seen. However, the visualization of these branches was suboptimal. The contralateral corresponding nerves were poorly seen despite marking on the surgical side. The nerve was best seen on axial T1W and T2W SPAIR images. The proximal segment could be seen well on 3D DW PSIF sequence. T2W SPACE was not very useful in visualization of this small nerve or its branches.CONCLUSION: Proximal pudendal nerve is easily seen on MR neurography, however it is not possible to identify distal branches of the pudendal nerve even after surgical marking.Avneesh Chhabra Courtney A McKenna Vibhor Wadhwa Gaurav K Thawait John A Carrino Gary P Lees A Lee Dellon 2016World Journal of Radiology2016,8,7:3
4Preparation and hybridization analysis of DNA/RNA from E. coli on microfabricated bioelectronic chips显示文摘Cheng Jing Sheldon E L Wu Lei Uribe A Gerrue L O Carrino J Heller M J O'Connell J P 0,,:2
5Spectrum of magnetic resonance imaging findings in congenital lumbar spinal stenosis显示文摘AIM: To investigate whether congenital lumbar spinal stenosis(CLSS) is associated with a specific degenerative changes of the lumbar spine. METHODS: The lumbar spine magnetic resonance imaging studies of 52 subjects with CLSS and 48 control subjects were retrospectively evaluated. In each examination, the five lumbar levels were assessed for the presence or absence of circumferential or shallow annular bulges, annular tears, anterior or posterior disc herniations, epidural lipomatosis, Schmorl's nodes,spondylolisthesis, pars defects, and stress reactions of the posterior vertebral elements. RESULTS: Compared to control individuals, subjects with CLSS exhibited increased incidence of circumferential and shallow annular bulges, annular tears, discherniations and spondylolisthesis(P < 0.05). CONCLUSION: CLSS is associated with increased incidence of degenerative changes in specific osseous and soft-tissue elements of the lumbar spine.Theodoros Soldatos Majid Chalian Shrey Thawait Alan J Belzberg John Eng John A Carrino Avneesh Chhabra 2014World Journal of Clinical Cases2014,2,12:2
6Medial meniscus extrusion on knee MRI:is extent associated with severity of degeneration or type of tear显示文摘Costa CR Morrison WB Carrino JA 0,,1:1
7显示文摘Carrino L Moroni G Pollni W 2002J Mater Process Technol2002,121,:1
8Reactive end- plate marrow changes: a systematic morphologic and epidemiologic evaluation 显示文摘Karchevsky M Schweitzer ME Carrino JA 2005Skeletal Radiol2005,34,3:1
9显示文摘Sorrentino L Carrino L 2009J Mater Process Teeh2009,209,:1
10Reactive endplate marrow changes:a systematic morphologic and epidemiologic evaluation显示文摘Karchevsky M Schweitzer ME Carrino JA 0,,03:1
11Vertebral augmentation:vertebra-plasty and kyphop lasty显示文摘Carrino JA Chan R Vaccaro AR 2004Semin Roentgenol2004,39,1:1
12Vertebral augmentation: vertebroplasty and kyphoplasty 显示文摘Carrino JA Chan R Vaecaro AR 2004J Semin Roentgenol2004,39,1:1
13Identity of the core proteins of the large chondroitin sulphate proteoglycaus synthesized by skeletal muscle and prechondrogenic mesenchyme显示文摘Carrino DA Dennis JE Drushel RF 1994Biochem J1994,298,:1
14Vertebral augmenta tion: vertebroplasty andkyphoplasty 显示文摘Carrino JA Chan R Vaccaro AR 2004Semin Roent genol2004,39,1:1
15Rotator cuff:evaluation with fast spin-echo versus conventional spin-echo MR imaging显示文摘 McCauley TR Katz LD 1997Radiology1997,202,2:1
16Vertebral augmentation:vertebroplasty kyphoplasty显示文摘Carrino JA Chan R Vaccaro AR 0,,:1
17Vertebral augmentation:vertebroplasty and kyphoplasty显示文摘Carrino JA Chan R Vaccaro AR 2004Semin Roentgenol2004,39,1:1
18Ageing time of wettability on polypropylene surfaces processed by cold plasma 显示文摘CARRINO L POLINI W SORRENTINO L 2004Journal of Materials Processing Technology2004,,153154:1
19Vertebral augmentation: vertebmplasty kyphoplasty 显示文摘Carrino JA Chan R Vaccaro AR 2004Semin Roentgeno12004,39,:1
20Vertebral augmentation : vertebroplasty and kyphoplasty 显示文摘Carrino JA Chan R Vaccaro AR 2004Semin Roentgenol2004,39,1:1
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