骨软化症
- 名osteomalacia;halisteresis
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在成年人,缺钙可导致骨软化症。
In adults , calcium deficiency may lead to osteomalacia .
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他们这种状况存在骨软化症的风险。
They are at risk for a condition called osteomalacia .
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低磷酸盐血性骨软化症双磷酸盐颌骨骨坏死:附8例临床分析
Bisphosphonate-related osteonecrosis of the jaws , the report of eight cases
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成人肾小管性骨软化症13例临床分析
Clinical analysis of 13 cases of adult renal tubular osteomalacia
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低磷酸盐血性骨软化症血清低钠低氯对成人颅内感染诊断的价值
Value of Serum Low Sodium Low Chlorine in the Diagnosis of Adult Intracranial Infection
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肿瘤相关性低磷抗D骨软化症的外科干预治疗
Surgical treatment of tumor-induced osteomalacia
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76例低钙血症患者,其中68例甲状旁腺功能低下,5例骨软化症,3例肾性骨病。
76 patients with hypocalcemia were studied . Among these patients , 68 had hypoparathyroidism , 5 osteomalacia and 3 renal osteodystrophy .
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13例成人肾小管性骨软化症计有杭维生素D佝偻病5例和肾小管性酸中毒骨软化8例。
Thirteen cases of adult renal tubular osteomalacia consisting of 5 cases of vitamin D resistant rickets , 6 renal tubular acidosis osteomalacia and 2 Fanconis syndrome were analyzed .
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目的观察分析采用外科手术方法治疗肿瘤相关性低磷抗D骨软化症的早期疗效及此类肿瘤的外科学特点。
Objective To observe and analyze the early therapeutic effects of treating the tumor-induced vitamin-D resistant hypo-phosphate osteomalacia by surgical intervention and surgical characters of this kind of tumor .
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吸收功能减退,可能引起缺铁、骨质疏松症及缺乏维生素D缺乏和阳光照射所致的骨软化症。
Absorption is reduced , possibly contributing to iron deficiency , osteoporosis ( also related to calcium deficiency ), and osteomalacia due to lack of vitamin D and absence of exposure to sunshine .
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方法从2004年2月至2005年3月,对7例诊断为肿瘤相关性低磷抗D骨软化症的患者进行手术治疗,完整切除软组织肿瘤5例,骨肿瘤2例。
Methods Seven patients with the diagnosis of tumor-induced vitamin-D resistant hypo-phosphate osteomalacia received complete resection operations of tumors from February 2004 to March 2005 , with 5 cases of soft connective tissue tumor and 2 of bone tumor .
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骨软化型氟骨症实验动物软骨组织酶活力的改变
Changes of enzyme activity in cartilage tissue in rats of osteomalacia skeletal fluorosis
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不同营养因素对大鼠骨软化性氟骨症骨生物力学的影响
Effects of several different nutritional factors on biomechanical
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目的探讨骨软化型氟骨症的骨骼影像学表现及其形成的机制。
Objective To investigate skeletal imaging appearances of osteomalacia type skeletal fluorosis and its mechanism .
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在人体内部,紫外线被用来刺激维生素D的生成,这种维生素能预防驼背、骨软化和骨质疏松症等骨骼问题。
Ultraviolet light is needed to activate production of vitamin D in the body , which prevents rickets , osteomalacia and osteoporosis .
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与低骨矿物质密度导致的骨质疏松症或骨质缺乏不同,骨软化症妨碍新骨形成。
Unlike osteoporosis or osteopenia , which result from low bone mineral density , osteomalacia interferes with new bone formation .
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骨硬化、骨软化及骨疏松不同营养因素对骨软化型氟骨症骨密度的影响
The effects of several nutrition factors on bone mineral density of osteomalacia skeletal fluorosis in rats