1.Combination of Cervical Perivascular Sympathectomy and Selective Posterior Rhizotomy in Spasticity of Cerebral Palsy: 11 Cases Report
Mengjin YU ; Pinglan HUANG ; Ruixiong YE ; Jia QU ; Weina LIAO ; Yao ZHANG
Chinese Journal of Rehabilitation Theory and Practice 2014;(2):167-170
Objective To investigate the effect of combined application of cervical perivascular sympathectomy (CPVS) and selective posterior rhizotomy (SPR) on spasticity of cerebral palsy. Methods The data on 11 children with cerebral palsy following spasm who were treated by CPVS and SPR were retrospectively analyzed. Results Spasm of most children relieved significantly 1 month after surgery and limb movement function got notable improvement. The effect was confirmed stable and durable 4 months after surgery. Conclusion CPVS and SPR are effective surgical methods for treating spasticity of cerebral palsy.
2.Production and functional testing of polyurethane valve of the pediatric Luo-Ye pump
Yueheng WU ; Huanlei HUANG ; Ruixin FAN ; Zhoucuo QI ; Liming YAO ; Changli WU ; Pinglan LU ; Anheng CHENG ; Xuejun XIAO
Chinese Journal of Tissue Engineering Research 2013;(31):5607-5612
BACKGROUND:The mechanical valves used in the adult Luo-Ye pump have a large size and great destruction to blood, which are not suitable for infant ventricular assist pump. Therefore, designing and producing a high molecular valve with smal size and low incidence of thrombosis is a research hotspot. OBJECTIVE:To design and produce a valve of 20 mL infant Luo-Ye pump, and to test its basic functions and fatigue properties. METHODS:The size and shape of valve was designed with MASTERCAM software, polyurethane valve was obtained through producing the valve model and plastic injection;the static leakage, pressure drop and fatigue resistance of polyurethane valve were tested according to the ISO5840 requirements. RESULTS AND CONCLUSION:The polyurethane trefoil valve was produced, but the failure rate of plastic injection was high;the basic function of the trefoil valve met the ISO5840 requirements bascial y;after continuously operated 1.0×107 times, stroke volume of 20 mL Luo-Ye pump was changed 5.2%, and two polyurethane valves and valve leaflets did not change and damage. Polyurethane trefoil valve was designed and produced successful y;polyurethane valves could meet the needs of 20 mL Luo-Ye pump, which already have the ability to clinical trials.
3.PTEN and NBS1 gene mutations in familial breast cancer and early-onset breast cancer from Hunan Province in China.
Yuhui WU ; Bingjian JIANG ; Xu DAI ; Xueli HU ; Shouman WANG ; Pinglan JIANG ; Yuanping HU ; Jun HUANG
Journal of Central South University(Medical Sciences) 2016;41(2):121-126
OBJECTIVE:
To investigate the profile and potential significance of PTEN and NBS1 mutations among patients with familial or at early onset breast cancer in Hunan province.
METHODS:
A total of 131 breast cancer patients with familial history or suffered from breast cancer at the age of less than 35 years old were included in this study. A comprehensive phosphatase and tensin homolog (PTEN) and nibrin (NBS1) mutation analysis was performed through denaturing high performance liquid chromatography (DHPLC) and subsequent DNA direct sequencing.
RESULTS:
Among 131 patients, a reported mutation IVS4+109insTCTTA in PTEN gene were identified in two patients. The mutation frequency of IVS4+109insTCTTA was 1.15%. Two mutations in PTEN gene, 225 A>C (Thr 160 Pro) and IVS5+13T>C, was firstly discovered. Another reported missense mutation was rs121909229 G>A (Arg 130 Gln). Three mutations were detected in NBS1 gene, of which IVS6+43A>G and IVS6+127A>G were firstly discovered and another reported synonymous mutations was rs1805794 G>C (Glu 185 Gln).
CONCLUSION
The novel mutations in PTEN and NBS1 might be specific to the familial and early-onset breast cancer of Chinese Hunan population.
Adult
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Asian Continental Ancestry Group
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Breast Neoplasms
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genetics
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Cell Cycle Proteins
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genetics
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China
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DNA Mutational Analysis
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Female
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Humans
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Mutation
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Nuclear Proteins
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genetics
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PTEN Phosphohydrolase
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genetics