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通过磁共振成像评估颅骨结构运动。

Assessment of calvarial structure motion by MRI.

作者信息

Crow William T, King Hollis H, Patterson Rita M, Giuliano Vincent

机构信息

The Osteopathic Research Center, University of North Texas Health Science Center, 3500 Camp Bowie Boulevard, Fort Worth Texas 76107 USA.

出版信息

Osteopath Med Prim Care. 2009 Sep 4;3:8. doi: 10.1186/1750-4732-3-8.

Abstract

BACKGROUND

Practitioners of manual medicine/manual therapy (MM/MT) who utilize techniques thought to have some impact upon and move the solid structures of the human head have been criticized for lack of evidence of cranial bone motion. The present study utilized magnetic resonance imagery (MRI) technology to address the question of whether or not inherent (non-operator initiated) calvarial structure motion can be assessed.

SUBJECTS

Twenty healthcare professionals, (physicians, nurses, medical students, pharmacists) between the ages of 24 and 52 were recruited. Seven females (ages 25-47, mean age 36.7) and 13 males (ages 25-53, mean age 31.2) volunteered. Technology: MRI scans were acquired at 450 ms per slice, in a 1.5 Tesla Signa Excite HD closed MRI system. The same scan prescription was repeated serially every 45 seconds to obtain eight serial slices for each subject. Image analysis was accomplished using ImageJ software (ImageJ 1.33 u National Institutes of Health, USA). Data from all eight images for each of the 20 subjects were analyzed to determine the two images with the largest differences in the parameters measured.

RESULTS

Difference values for the measures of area, width, height, major axis, and feret were statistically different whereas the measures for perimeter and minor axis were not. However, only the difference values for area were both statistically different (p < 0.003) and exceeded the resolution threshold of 0.898 mm/pixel.

DISCUSSION

The statistically significant difference value for area is suggestive of inherent motion in calvarial structures, and adds to the body of evidence supportive of biomechanically measurable calvarial structure motion in general. That the total intracranial area appeared to expand and recede was consistent with theory and prior studies suggestive of calvarial structure motion due to intracranial fluid volume changes.

CONCLUSION

The use of MRI technology was able to demonstrate calvarial structure motion at a level exceeding the resolution threshold, and provides a means for further research on phenomena related to the cranial concept. It may be just a matter of time until increased resolution of MRI technology and image analysis provide the ability to examine more detailed areas of specific cranial bone motion.

摘要

背景

运用被认为对人体头部固体结构有一定影响并能使其移动的手法医学/手法治疗(MM/MT)技术的从业者,因缺乏颅骨运动的证据而受到批评。本研究利用磁共振成像(MRI)技术来探讨是否可以评估颅骨结构的固有(非操作者引发)运动。

研究对象

招募了20名年龄在24至52岁之间的医疗保健专业人员(医生、护士、医学生、药剂师)。7名女性(年龄25 - 47岁,平均年龄36.7岁)和13名男性(年龄25 - 53岁,平均年龄31.2岁)自愿参与。技术:在1.5特斯拉Signa Excite HD封闭式MRI系统中,以每切片450毫秒的速度获取MRI扫描图像。每隔45秒连续重复相同的扫描处方,为每个受试者获取八组连续切片。使用ImageJ软件(美国国立卫生研究院的ImageJ 1.33 u)完成图像分析。对20名受试者中每个人的所有八幅图像的数据进行分析,以确定所测量参数差异最大的两幅图像。

结果

面积、宽度、高度、长轴和费雷特直径的测量差异值具有统计学意义,而周长和短轴的测量值则没有。然而,只有面积的差异值既具有统计学意义(p < 0.003),又超过了0.898毫米/像素的分辨率阈值。

讨论

面积的统计学显著差异值表明颅骨结构存在固有运动,并增加了总体上支持生物力学可测量的颅骨结构运动的证据。颅内总面积似乎扩张和收缩,这与因颅内液体体积变化导致颅骨结构运动的理论和先前研究一致。

结论

MRI技术的使用能够在超过分辨率阈值的水平上显示颅骨结构运动,并为进一步研究与颅骨概念相关的现象提供了一种手段。直到MRI技术和图像分析的分辨率提高到能够检查特定颅骨运动的更详细区域,可能只是时间问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32e1/2743699/d7abb289d4cc/1750-4732-3-8-1.jpg

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