[1]Brazaitis M, Eimantas N, Daniuseviciute L, et al. Two strategies for the acute response to cold exposure but one strategy for the response to heat stress[J]. Int J Hyperthermia, 2015,31(4):325-335.
[2]Lubura M, Hesse D, Neumann N, et al. Non-invasive quantification of white and brown adipose tissues and liver fat content by computed tomography in mice[J]. PLoS One, 2012,7(5):e37026.
[3]Benard G, Bellance N, James D, et al. Mitochondrial bioenergetics and structural network organization[J]. J Cell Sci, 2007,120(Pt 5):838-848.
[4]Loncar D, Afzelius BA, Cannon B. Epididymal white adipose tissue after cold stress in rats. II. Mitochondrial changes[J]. J Ultrastruct Mol Struct Res, 1988, 101(2-3):199-209.
[5]Bertholet AM, Delerue T, Millet AM, et al. Mitochondrial fusion/fission dynamics in neurodegeneration and neuronal plasticity[J]. Neurobiol Dis, 2015, 90(15):3-19.
[6]Lockie SH, Stefanidis A, Oldfield BJ, et al. Brown adipose tissue thermogenesis in the resistance to and reversal of obesity: a potential new mechanism contributing to the metabolic benefits of proglucagon-derived peptides [C]. The Workshop on Living Labs for Information Retrieval Evaluation,ACM, 2013:7-10.
[7]Cui ZhJ, Zhao KB, Deng JX, et al. Effects of acute cold exposure on the mouse central nervous system[J]. Acta Anatomica Sinica, 2013, 44(5):594-601. (in Chinese)
崔占军, 赵凯冰, 邓洁心,等. 急性寒冷暴露对小鼠中枢神经系统的影响[J]. 解剖学报, 2013, 44(5):594-601.
[8]Qu TT, Li RL,Wang Y, et al. The alterations of cardiac and cerebral blood vessels in mice after chronic cold exposure[J]. Acta Anatomica Sinica, 2016, 47(1):80-86. (in Chinese)
屈婷婷, 李瑞玲, 王颖,等. 慢性寒冷暴露与小鼠心肌及脑血管的改变[J]. 解剖学报, 2016, 47(1):80-86.
[9]Wang XQ, Wang ShM, Wang L, et al. Mitochondrial labeling of cerebellar granule cells in vivo and in vitro with MitoTracker[J]. Chinese Journal of Anatomy, 2016,39(2):226-228. (in Chinese)
王小青, 王淑曼, 王来, 等. MitoTracker对在体小鼠小脑和体外培养颗粒细胞线粒体的染色方法[J]. 解剖学杂志, 2016,39(2):226-228.
[10]Li RL, Chen YF, Wang Y, et al. Synapse loss in visual cortex of mouse after prenatal nitrite exposure[J]. Acta Anatomica Sinica, 2015, 46(6):729-736. (in Chinese)
李瑞玲, 陈永芳, 王颖,等. 孕期亚硝酸盐暴露对子鼠视皮质突触改变的影响[J]. 解剖学报, 2015, 46(6):729-736.
[11]Greiner MA, Burckart KA, Wagoner MD, et al. Regional assessment of energy-producing metabolic activity in the endothelium of donor corneas[J]. Invest Ophthalmol Vis Sci, 2015,56(5):2803-2810.
[12]Lubura M, Hesse D, Neumann N, et al. Non-invasive quantification of white and brown adipose tissues and liver fat content by computed tomography in mice[J]. PLoS One, 2012,7(5):e37026.
[13]Pemp B, Cherecheanu AP, Garhofer G, et al. Calculation of central retinal artery diameters from non-invasive ocular haemodynamic measurements in type 1 diabetes patients[J]. Acta Ophthalmol, 2013, 91(5):e348-e352.
[14]Stefanovic V, Paavonen J, Halmesmki E, et al. Two intrauterine rescue transfusions in treatment of severe fetomaternal hemorrhage in the early third trimester[J]. Clin Case Rep, 2013, 1(2):59-62.
[15]Liu X, Trakooljul N, Hadlich F, et al. MicroRNA-mRNA regulatory networking fine-tunes the porcine muscle fiber type, muscular mitochondrial respiratory and metabolic enzyme activities[J]. BMC Genomics, 2016,17(1):531-531.
[16]Yeh HT, Huang IJ, Chen CM, et al. Regression of vascular calcification following an acute episode of calciphylaxis: a case report[J]. J Med Case Rep, 2014, 8(1):1-7.
[17]Santa-Cruz LD, Guerrero-Castillo S, Uribe-Carvajal S, et al. Mitochondrial dysfunction during the early stages of excitotoxic spinal motor neuron degeneration in vivo[J]. ACS Chem Neurosci, 2016,7(7):886-896.
[18]Otera H, Ishihara N, Mihara K. New insights into the function and regulation of mitochondrial fission[J]. Biochim Biophys Acta, 2013, 1833(5):1256-1268.
[19]Zhang Z, Liu L, Wu S, et al. Drp1, Mff, Fis1, and MiD51 are coordinated to mediate mitochondrial fission during UV irradiation-induced apoptosis[J]. FASEB J, 2016,30(1):466-476.
[20]Shum M, Bellmann K, St-Pierre P, et al. Pharmacological inhibition of S6K1 increases glucose metabolism and Akt signalling in vitro and in diet-induced obese mice[J]. Diabetologia, 2016, 59(3):592-603.
|