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首页> 外文期刊>The Journal of craniofacial surgery >Particle size, temperature, and released amount of fat for safe periorbital fat grafts
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Particle size, temperature, and released amount of fat for safe periorbital fat grafts

机译:粒径,温度和释放的脂肪量,可安全用于眶周脂肪移植

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The aim of this study was to determine the particle size, temperature, and amount of released fat for safe periorbital fat grafts. From 28 patients, fat was suctioned from the abdomen (large particles [LPs]) and from the inner thigh (small particles [SPs]) using a 2.1-mm harvesting cannula with a diameter 3.2 × 1.4-mm hole and a 1-mm hole, respectively. The 10-mL syringes full of fat were then put into a centrifuge for 3 minutes (LP) and 1 minute (SP) at 3000 revolutions/min. Fat was then transferred to a 1-mL syringe with Luer-Lock adapters and a blunt cannula of 0.9-mm diameter. The force needed to push the fat out of the cannula was measured with a force gauge. The force was measured within the different groups according to particle size of the fat, temperature of the fat, and released amount of fat. The force needed to push the SP fat out of the cannula into the air with minimal amount (MA) (0.01-0.02 mL) injected at room temperature (25 C) (1.75 ± 0.82 N) was significantly greater (P = 0.000 [t test]) than at body temperature (BT, 33 C) (1.27 ± 0.38 N). At BT, the force needed to push the SP fat into subcutaneous pig tissue (2.30 ± 1.46 N) was significantly lesser (P = 0.000 [t test]) than LP fat (6.54 ± 2.39 N). At BT, the force needed to push the MA of SP fat into pig subcutaneous tissue (1.38 ± 0.26 N) was significantly lesser (P = 0.000 [t test]) than the force needed to push the usual amount (0.03-0.04 mL) of SP fat (3.83 ± 1.78 N). The force needed to push the fat into human lower eyelids at room temperature (4.06 ± 2.26 N) was significantly greater (P = 0.000 [t test]) than at BT (2.11 ± 0.96 N). At BT, the force needed to inject an MA of SP fat into human lower eyelids (1.55 ± 0.83 N) was significantly lesser (P = 0.000 [t test]) than the force needed to inject a usual amount of fat (2.78 ± 1.03 N). We suggest injections of the SP (1-mm hole diameter harvesting cannula) fat with MAs (0.01-0.02 mL) by means of fragmented incremental injections stored at BT (33 C) to reduce the injection pressure.
机译:这项研究的目的是确定安全的眶周脂肪移植物的粒径,温度和释放的脂肪量。从28例患者中,使用2.1毫米直径为3.2×1.4毫米的小孔和1毫米直径的收获套管从腹部(大颗粒[LPs])和大腿内侧(小颗粒[SPs])抽吸脂肪。孔。然后将充满脂肪的10 mL注射器放入离心机中,以3000转/分钟的速度离心3分钟(LP)和1分钟(SP)。然后将脂肪转移到带有Luer-Lock接头和0.9毫米直径钝管的1毫升注射器中。用测力计测量将脂肪推出套管所需的力。根据脂肪的粒径,脂肪的温度和脂肪的释放量在不同组内测量力。在室温(25 C)(1.75±0.82 N)注入的最低量(MA)(0.01-0.02 mL)将SP脂肪从套管中推入空气所需的力明显更大(P = 0.000 [t测试]),而不是在体温(BT,33 C)(1.27±0.38 N)时。在BT时,将SP脂肪推入皮下猪组织(2.30±1.46 N)所需的力(P = 0.000 [t检验])明显小于LP脂肪(6.54±2.39 N)。在BT时,将SP脂肪的MA推入猪皮下组织所需的力(1.38±0.26 N)要比推入通常量(0.03-0.04 mL)所需的力小得多(P = 0.000 [t测试])。 SP脂肪(3.83±1.78 N)。在室温(4.06±2.26 N)下将脂肪推入人的下眼睑所需的力(BT = 2.11±0.96 N)时明显更大(P = 0.000 [t测试])。在BT时,将人为SP脂肪的MA注入人的下眼睑(1.55±0.83 N)所需的力(P = 0.000 [t测试])比注入通常量的脂肪所需的力(2.78±1.03)要小得多。 N)。我们建议通过存储在BT(33 C)的分段增量注射来注射具有MAs(0.01-0.02 mL)的SP(1毫米孔径收获套管)脂肪,以降低注射压力。

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