QT interval changes in term pregnant women living at moderately high altitude

2016 ◽  
Vol 19 (5) ◽  
pp. 611 ◽  
Author(s):  
G Batmaz ◽  
AN Aksoy ◽  
S Aydın ◽  
NK Ay ◽  
B Dane
Author(s):  
Padma Dolma ◽  
P. T. Angchuk ◽  
Vandana Jain ◽  
Vatsla Dadhwal ◽  
Dalvir Kular ◽  
...  

Abstract Background States which reduce foetal oxygen delivery are associated with impaired intrauterine growth. Hypoxia results when barometric pressure falls with ascent to altitude, and with it the partial pressure of inspired oxygen (‘hypobaric hypoxia’). birthweight is reduced when native lowlanders gestate at such high altitude (HA)—an effect mitigated in native (millennia) HA populations. Studying HA populations offer a route to explore the mechanisms by which hypoxia impacts foetal growth. Methods Between February 2017 and January 2019, we prospectively studied 316 pregnant women, in Leh, Ladakh (altitude 3524 m, where oxygen partial pressure is reduced by 1/3) and 101 pregnant women living in Delhi (low altitude, 216 m above sea level). Results Of Ladakhi HA newborns, 14% were small for gestational age (<10th birthweight centile) vs 19% of newborn at low altitude. At HA, increased maternal body mass index, age, and uterine artery (UtA) diameter were positively associated with growth >10th weight centile. Conclusions This study showed that Ladakhi offspring birthweight is relatively spared from the expected adverse HA effects. Furthermore, maternal body composition and greater UtA size may be physiological HA adaptations and warrant further study, as they offer potential mechanisms to overcome hypoxia-related growth issues. Impact Reduced foetal oxygen delivery seen in native lowlanders who gestate at HA causes foetal growth restriction—an effect thought to be mitigated in native HA populations. We found that greater maternal body mass and UtA diameter were associated with increased offspring birthweight in a (Ladakh) HA population. This supports a role for them as physiological mediators of adaptation and provides insights into potential mechanisms that may treat hypoxia-related growth issues.


2009 ◽  
Vol 9 (1) ◽  
Author(s):  
Xiaoyan Zhou ◽  
Hong Yan ◽  
Yuan Xing ◽  
Shaonong Dang ◽  
Bianba Zhuoma ◽  
...  

2012 ◽  
Vol 19 (02) ◽  
pp. 155-158
Author(s):  
SAEED SIDDIQUI ◽  
ATIF SITWAT HAYAT ◽  
M. KHALID SIDDIQUI ◽  
Naila Atif ◽  
Hamayun Shah

Objectives: To estimate the frequency of iron deficiency anemia in a sample of population of pregnant women residingpermanently at high altitude of ≥5000 feet in different areas of district Abbottabad. Study Design: Cross sectional Study. Place & duration ofStudy: Northern Institute of Medical Sciences Abbottabad: From 17 August 2009 to 15 June 2010. Subjects and Methods: This study wascarried out on hundred pregnant women residing permanently at an altitude of ≥5000 feet above sea level in district Abbottabad. The agerange was fixed to 15-45 (child bearing age ) years. Suspected study participants having anemia were tested for iron status by serum ferritintest. Pregnant women having both anemia and iron deficiency were labeled as patients of Iron deficiency anemia. Results: The age range was15-41 years with a mean of + / - SD of 28.13 + / - 6.61. All women were of low and middle socioeconomic class with 74 % illiteracy. 60 % of womenhad birth spacing of two or less than two years. 64 % of pregnant women had three children. Anemia was detected in 74 % (X2 =9.42 p > 0.05),iron deficiency in 66 % (X2 = 14.76 p <0.01) and iron deficiency anemia in 60 % (X2 = 13.56 p < 0.01). Conclusions: High altitude residentpregnant women remain at high risk of developing iron deficiency anemia because of illiteracy, poverty and ignorance. With adequate nutritionand health education the problem can be addressed effectively.


2002 ◽  
Vol 82 (2) ◽  
pp. 123-126 ◽  
Author(s):  
Abdel J Fuenmayor ◽  
Frances U Stock ◽  
Akbar C Fuenmayor ◽  
Abdel M Fuenmayor P

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