Fink G R, Corfield D R, Murphy K, Kobayashi I, Dettmers C, Adams L, Frackowiak R S, Guz A
Wellcome Department of Cognitive Neurology, Institute of Neurology, London, United Kingdom.
J Appl Physiol (1985). 1996 Sep;81(3):1295-305. doi: 10.1152/jappl.1996.81.3.1295.
Human cerebral activity with increasing inspiratory force: a study using positron emission tomography. J. Appl. Physiol. 81(3): 1295-1305, 1996.--The major aim of this study was to use positron emission tomography (PET) to assess dose-dependent effects of inspiratory loads on relative regional cerebral blood flow as an indication of neuronal activation and recruitment. Six normal men underwent H2 15O-PET scanning during unloaded breathing and with external inspiratory loads (generating mouth pressures of -5, -10, and -15 cmH2O); positive-pressure ventilation against relaxed respiratory muscles acted as control. During unloaded breathing, the supplementary motor area was significantly activated. With the addition of the smallest load, activations also occurred in the right premotor area and bilaterally in the superolateral motor cortex (MI) in areas previously shown to be activated with deeper breathing. There was little further change in these areas with greater loads. Additional force-related activations occurred in the inferolateral sensorimotor cortex, parietal cortex, and midbrain/hypothalamus. The results suggest that volitionally induced increases in inspiratory muscle force are achieved via a complex integration of neuronal activations in cortical and subcortical regions associated with motor control.
一项使用正电子发射断层扫描的研究。《应用生理学杂志》81(3): 1295 - 1305, 1996年。——本研究的主要目的是使用正电子发射断层扫描(PET)来评估吸气负荷对相对局部脑血流量的剂量依赖性影响,以此作为神经元激活和募集的指标。六名正常男性在无负荷呼吸以及施加外部吸气负荷(产生-5、-10和-15 cmH₂O的口腔压力)期间接受了H₂¹⁵O - PET扫描;对抗放松呼吸肌的正压通气作为对照。在无负荷呼吸期间,辅助运动区被显著激活。随着施加最小负荷,在右侧运动前区以及先前已显示在深呼吸时被激活的双侧上外侧运动皮层(MI)也出现了激活。随着负荷增加,这些区域几乎没有进一步变化。在外侧感觉运动皮层、顶叶皮层和中脑/下丘脑出现了与力量相关的额外激活。结果表明,通过与运动控制相关的皮层和皮层下区域神经元激活的复杂整合,可实现吸气肌力的自主诱导增加。