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1.
Zhongguo Zhong Yao Za Zhi ; 49(5): 1196-1205, 2024 Mar.
Article in Chinese | MEDLINE | ID: mdl-38621966

ABSTRACT

Processing of Chinese medicinal materials is an important part in the Chinese medicine heritage, and the temperature control in the processing has a direct impact on the quality and efficacy of traditional Chinese medicines. However, the processing of Chinese medicinal materials has the problems of subjective temperature judgement, determination of the end point based on experience, unclear processing mechanism, unstable quality of products, and inconsistent processing standards. The temperature control in the processing is reflected in the appearance and internal quality of Chinese medicinal materials. The theory of quality evaluation through morphological identification is developed based on the comprehensive evaluation of the shape, color, taste, and components, which is associated with the temperature control in the processing. To solve the problems above, this paper puts forward the following solutions. The first is literature mining. By review of the ancient medical works and pharmaceutical experience, the temperature control in processing and the evolution of processing methods can be revealed. Second, according to the ancient method, the processing principle can be explored, on the basis of which the processing technology can be innovated. Third, the standard operating procedure(SOP) should be established to quantify the fire temperature, providing a theoretical basis for the formulation of Chinese medicinal material processing standards. Moreover, it provides a basis for improving the quality of processed products and increasing the safety and effectiveness of traditional Chinese medicines.


Subject(s)
Drugs, Chinese Herbal , Humans , Temperature , Medicine, Chinese Traditional , Reference Standards , Technology
2.
Zhongguo Zhong Yao Za Zhi ; 48(22): 6011-6020, 2023 Nov.
Article in Chinese | MEDLINE | ID: mdl-38114207

ABSTRACT

Spray drying technology is one of the most commonly used unit operations in the production of traditional Chinese medicine(TCM) preparations, offering advantages such as short drying time and uniform product quality. However, due to the properties of TCM extracts, such as high viscosity, strong hygroscopicity, and poor flowability, there is limited scope to solve the problems of wall adhesion and clumping in spray drying from the macroscopic perspective of pharmaceutical production. Therefore, it has become a trend to study and optimize the spray drying process from the microscopic point of view by investigating single droplet evaporation behavior. Based on the reaction engineering approach(REA), the single droplet drying system, as a novel method for studying droplets, collects parameter data on individual TCM droplets during the drying process and uses the REA to process the data and establish predictive models. This approach is crucial for understanding the mechanism of TCM spray drying. This paper summarized and analyzed the cha-racteristics of various single droplet systems, the application of REA in single droplet drying systems, and its significance in optimizing the process, predicting drying states, and shortening the development cycle in the field of TCM spray drying, and looked ahead to the prospects of this method, including the introduction of new parameters and imaging techniques, aiming to provide a reference for further research in the field of TCM spray drying.


Subject(s)
Medicine, Chinese Traditional , Spray Drying , Desiccation/methods , Temperature , Technology
3.
Surg Today ; 53(2): 274-277, 2023 Feb.
Article in English | MEDLINE | ID: mdl-36242640

ABSTRACT

Transumbilical laparoendoscopic single-site surgery (TU-LESS) is a new and evolving surgical method suitable for gynecological diseases, because of its minimal invasion and good cosmetic results. However, since the incision required for this procedure is longer than that for traditional laparoscopy, it may be associated with a higher incidence of postoperative incision complications, such as umbilical hernia, infection, hematoma, and poor wound healing. Moreover, the patient may be left with a misshapen umbilicus because intensive surgery is performed through a single umbilical incision. To minimize the incisional complications and meet patients' cosmetic expectations, we designed a novel suturing technique, named "Zheng's anchor suture technique". This video demonstrates the specific steps and shows photographs of patients' umbilici that were sutured by this technique, taken after recovery from various operations.


Subject(s)
Hernia, Umbilical , Laparoscopy , Surgical Wound , Humans , Postoperative Complications/epidemiology , Laparoscopy/methods , Umbilicus/surgery , Hernia, Umbilical/surgery , Hematoma
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