[1] |
Flegal K M, Graubard B I, Williamson D F, et al. Cause-specific excess deaths associated with underweight, overweight, and obesity[J]. Jama, 2007, 298(17):2028-2037.
|
[2] |
POLEDNAK A P. Estimating the number of U.S. incident cancers attributable to obesity and the impact on temporal trends in incidence rates for obesity-related cancers[J]. Cancer Detection and Prevention, 2009, 32(3):190-199.
|
[3] |
LEHNHARDT M, HOMANN H H, DAIGELER A, et al. Major and lethal complications of liposuction:a review of 72 cases in Germany between 1998 and 2002[J]. Plastic and Reconstructive Surgery, 2008, 121(6):396e-403e.
|
[4] |
HABBEMA L, TANG J C, SATTLER G, et al. Liposuction of the neck:low incidence of nerve injury and other complications in 987 patients[J]. Journal of Drugs in Dermatology, 2018, 17(1):30.
|
[5] |
MULHOLLAND R S, PAUL M D, CHALFOUN C. Noninvasive body contouring with radiofrequency, ultrasound, cryolipolysis, and low-level laser therapy[J]. Clinics in Plastic Surgery, 2011, 38(3):503-520.
|
[6] |
APFELBERG D B, ROSENTHAL S, HUNSTAD J P, et al. Progress report on multicenter study of laser-assisted liposuction[J]. Aesthetic Plastic Surgery, 1994, 18(3):259-264.
|
[7] |
DIBERNARDO B E, REYES J, BO C. Evaluation of tissue thermal effects from 1064/1320-nm laser-assisted lipolysis and its clinical implications[J]. Journal of Cosmetic and Laser Therapy, 2009, 11(2):62-69.
|
[8] |
李东. 激光照射下生物组织选择性光热效应的理论及实验研究[D]. 西安:西安交通大学, 2013. LI D. Theoretical and experimental research on selective photothermalysis of biological tissue[D]. Xi'an:Xi'an Jiaotong University, 2013.
|
[9] |
NESTOR M S, NEWBURGER J, ZARRAGA M B. Body contouring using 635-nm low level laser therapy[C]//Seminars in Cutaneous Medicine and Surgery. 2013.
|
[10] |
LUKAC M, VIZINTIN Z, ZABKAR J, et al. QCW pulsed Nd:YAG 1064 nm laser lipolysis[J]. Journal of the Laser and Health Academy, 2009, 2009(4/1):1-12.
|
[11] |
AVCI P, NYAME T T, GUPTA G K, et al. Low-level laser therapy for fat layer reduction:a comprehensive review[J]. Lasers in Surgery and Medicine, 2013, 45(6):349-357.
|
[12] |
FAKHOURI T M, EL TAL A K, ABROU A E, et al. Laser-assisted lipolysis:a review[J]. Dermatologic Surgery, 2012, 38(2):155-169.
|
[13] |
KIM K H, GERONEMUS R G. Laser lipolysis using a novel 1064 nm Nd:YAG laser[J]. Dermatologic Surgery, 2006, 32(2):241-248.
|
[14] |
KATZ B, MCBEAN J. Laser-assisted lipolysis:a report on complications[J]. Journal of Cosmetic and Laser Therapy, 2008, 10:231-233.
|
[15] |
ZHOU Z F, WU W T, CHEN B, et al. An experimental study on the spray and thermal characteristics of R134a two-phase flashing spray[J]. International Journal of Heat and Mass Transfer, 2012, 55:4460-4468.
|
[16] |
TIAN J M, CHEN B, LI D, et al. Transient spray cooling:similarity of dynamic heat flux for different cryogens, nozzles and substrates[J]. International Journal of Heat and Mass Transfer, 2017, 108:561-571.
|
[17] |
陈斌, 周致富, 辛慧. 制冷剂瞬态闪蒸喷雾冷却研究进展[J]. 化工学报, 2018, 69(1):57-68. CHEN B, ZHOU Z F, XIN H. Cryogen transient flashing spray cooling:state of art[J]. CIESC Journal, 2018, 69(1):57-68.
|
[18] |
ZHOU Z F, CHEN B, WANG R, et al. Coupling effect of hypobaric pressure and spray distance on heat transfer dynamics of R134a pulsed flashing spray cooling[J]. Experimental Thermal and Fluidence, 2016, 70:96-104.
|
[19] |
AGUILAR G, DÍAZ S H, LAVERNIA E J, et al. Cryogen spray cooling efficiency:improvement of port wine stain laser therapy through multiple-intermittent cryogen spurts and laser pulses[J]. Lasers in Surgery and Medicine, 2002, 31(1):27-35.
|
[20] |
PENNES H H. Analysis of tissue and arterial blood temperatures in the resting human forearm[J]. Journal of Applied Physiology, 1948, 1(2):93-122.
|
[21] |
WELCH A J, WISSLER E H, PRIEBE L A. Significance of blood flow in calculations of temperature in laser irradiated tissue[J]. IEEE Transactions on Biomedical Engineering, 1980, 27(3):164-166.
|
[22] |
ZHOU Z F, XU T Y, CHEN B. Algorithms for the estimation of transient surface heat flux during ultra-fast surface cooling[J]. International Journal of Heat and Mass Transfer, 2016, 100:1-10.
|
[23] |
JIA W, AGUILAR G, VERKRUYSSE W, et al. Improvement of port wine stain laser therapy by skin preheating prior to cryogen spray cooling:a numerical simulation[J]. Lasers in Surgery and Medicine, 2010, 38(2):155-162.
|
[24] |
辛慧, 陈斌, 周致富. 激光溶脂中多脉冲式制冷剂喷雾冷却基体表面传热特性研究[C]//中国工程热物理学会传热传质学术会议.苏州, 2017. XIN H, CHEN B, ZHOU Z F. Heat transfer characteristics of multi-pulsed cryogen spray cooling for laser lipolysis[C]//Chinese Society of Engineering Thermophysics Heat and Mass Transfer Conference. Suzhou, 2017.
|
[25] |
DAI T, PIKKULA B M, WANG L V, et al. Comparison of human skin opto-thermal response to near-infrared and visible laser irradiations:a theoretical investigation[J]. Physics in Medicine and Biology, 2004, 49(21):4861-4877.
|
[26] |
BERUBE D, RENTON B, HANTASH B M. A predictive model of minimally invasive bipolar fractional radiofrequency skin treatment[J]. Lasers in Surgery and Medicine, 2009, 41(7):473-478.
|
[27] |
KAO B, KELLY K M, AGUILAR G, et al. Evaluation of cryogen spray cooling exposure on in vitro model human skin[J]. Lasers in Surgery and Medicine, 2004, 34(2):146-154.
|
[28] |
LI D, CHEN B, WU W J, et al. Multi-scale modeling of tissue freezing during cryogen spray cooling with R134a, R407c and R404a[J]. Applied Thermal Engineering, 2014, 73(2):1489-1500.
|