A study of toad infestation was carried out from July to December 2022, in the vicinity of the Mfilou and Ngamboulou Rivers, with the aim of determining the prevalence rate of parasitic carriage in these toads. After ...A study of toad infestation was carried out from July to December 2022, in the vicinity of the Mfilou and Ngamboulou Rivers, with the aim of determining the prevalence rate of parasitic carriage in these toads. After collecting 289 specimens, all belonging to the Anuran order and Bufonidae family, three species were identified: Sclerophrys camerunensis (Parker, 1936), Sclerophrys regularis (Reuss, 1834) and Sclerophrys sp. The most abundant species were Sclerophrys camerunensis, followed by Sclerophrys regularis. With regard to parasitological aspects, of the 289 specimens collected, 195 were parasitized, i.e. a percentage of 67.47%. The only parasitic species identified was Ascaris sp., which is preferentially located in the intestine.展开更多
颗粒粒度反演需要求解第一类Fredholm积分方程,此问题是动态光散射中的难点之一,其中,双峰颗粒的反演更是亟待解决的问题.为保证反演结果的非负性,采用了trust region reflective Newton和active set算法实现的非负Tikhonov,非负TSVD算...颗粒粒度反演需要求解第一类Fredholm积分方程,此问题是动态光散射中的难点之一,其中,双峰颗粒的反演更是亟待解决的问题.为保证反演结果的非负性,采用了trust region reflective Newton和active set算法实现的非负Tikhonov,非负TSVD算法对双峰颗粒数据进行了反演.结果表明采用前者实现的非负Tikhonov和非负TSVD不能区别间隔粒径较近双峰,而采用后者实现的非负Tikhonov和非负TSVD能区别出.展开更多
文摘A study of toad infestation was carried out from July to December 2022, in the vicinity of the Mfilou and Ngamboulou Rivers, with the aim of determining the prevalence rate of parasitic carriage in these toads. After collecting 289 specimens, all belonging to the Anuran order and Bufonidae family, three species were identified: Sclerophrys camerunensis (Parker, 1936), Sclerophrys regularis (Reuss, 1834) and Sclerophrys sp. The most abundant species were Sclerophrys camerunensis, followed by Sclerophrys regularis. With regard to parasitological aspects, of the 289 specimens collected, 195 were parasitized, i.e. a percentage of 67.47%. The only parasitic species identified was Ascaris sp., which is preferentially located in the intestine.
文摘颗粒粒度反演需要求解第一类Fredholm积分方程,此问题是动态光散射中的难点之一,其中,双峰颗粒的反演更是亟待解决的问题.为保证反演结果的非负性,采用了trust region reflective Newton和active set算法实现的非负Tikhonov,非负TSVD算法对双峰颗粒数据进行了反演.结果表明采用前者实现的非负Tikhonov和非负TSVD不能区别间隔粒径较近双峰,而采用后者实现的非负Tikhonov和非负TSVD能区别出.