Severity: Warning
Message: file_get_contents(https://...@pubfacts.com&api_key=b8daa3ad693db53b1410957c26c9a51b4908&a=1): Failed to open stream: HTTP request failed! HTTP/1.1 429 Too Many Requests
Filename: helpers/my_audit_helper.php
Line Number: 176
Backtrace:
File: /var/www/html/application/helpers/my_audit_helper.php
Line: 176
Function: file_get_contents
File: /var/www/html/application/helpers/my_audit_helper.php
Line: 250
Function: simplexml_load_file_from_url
File: /var/www/html/application/helpers/my_audit_helper.php
Line: 3122
Function: getPubMedXML
File: /var/www/html/application/controllers/Detail.php
Line: 575
Function: pubMedSearch_Global
File: /var/www/html/application/controllers/Detail.php
Line: 489
Function: pubMedGetRelatedKeyword
File: /var/www/html/index.php
Line: 316
Function: require_once
The objective was to utilize a moisture distribution model to summarize the influence of water content on the structural properties of lotus seed resistant starch. The result showed that water content affected the composition of resistant starch. The compact structure was observed on the surface of resistant starch prepared with 50% water content; other samples displayed a flake structure. Compared with samples prepared with insufficient (50% and 60%) or excess water (95% and 90%), resistant starches prepared with 70% and 80% water content were composed of higher-molecular-weight chains and consisted of more double helix and crystal. Two corresponding relationships between the structural properties of resistant starch and the water distribution in them were found. Bound water was related to the hydrated starch chains, while channel water in B-type crystal represented the micro-crystalline structure. Therefore, moisture distribution model can be feasibly used to depict the structural properties of resistant starch.
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Source |
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http://dx.doi.org/10.1016/j.foodchem.2019.01.214 | DOI Listing |
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