Human T-lymphotropic virus type 1 (HTLV-1) is found in indigenous peoples
of the Pacific Islands and the Americas, whereas type 2 (HTLV-2) is widely
distributed among the indigenous peoples of the Americas, where it appears to be more
prevalent than HTLV-1, and in some tribes of Central Africa. HTLV-2 is considered
ancestral in the Americas and is transmitted to the general population and injection
drug users from the indigenous population. In the Americas, HTLV-1 has more than one
origin, being brought by immigrants in the Paleolithic period through the Bering
Strait, through slave trade during the colonial period, and through Japanese
immigration from the early 20th century, whereas HTLV-2 was only brought
by immigrants through the Bering Strait. The endemicity of HTLV-2 among the
indigenous people of Brazil makes the Brazilian Amazon the largest endemic area in
the world for its occurrence. A review of HTLV-1 in all Brazilian tribes supports the
African origin of HTLV-1 in Brazil. The risk of hyperendemicity in these
epidemiologically closed populations and transmission to other populations reinforces
the importance of public health interventions for HTLV control, including the
recognition of the infection among reportable diseases and events.
HTLV-1 is transmitted primarily either through sexual intercourse or from mother to child. The mother/child pairs were classified as seroconcordant or serodiscordant. We analyzed mother to child transmission (MTCT) according to sociodemographic, clinical and epidemiological characteristics of the mother, child’s gender and duration of breastfeeding. Between June 2006 and August 2016 we followed 192 mothers with HTLV-1 infection (mean age 41 years old), resulting in 499 exposed offspring, 288 (57.7%) of whom were tested for HTLV-1, making up the final sample for the study, along with their 134 respective mothers. Among the tested mother/child pairs, 41 (14.2%) were HTLV-1 positive, highlighted that seven of 134 family clusters concentrated 48.8% of positive cases. Variables associated with a positive child: breastfeeding duration ≥12 months, maternal PVL ≥100 copies/104 PBMC, mother’s age at delivery >26 years old, and HTLV-1 in more than one child of the same mother. In a multiple logistic regression, breastfeeding ≥12 months, higher maternal PVL and ≥2 previous HTLV-1-infected children remained independently associated with the outcome. Thus, high maternal PVL and breastfeeding beyond 12 months were independently associated with MTCT of the HTLV-1 infection. Our results reinforce the need for both prenatal HTLV screening in endemic areas and for advising mothers on breastfeeding.
Vector fields analysis traditionally distinguishes conservative (curl-free) from mass preserving (divergence-free) components. The Helmholtz-Hodge decomposition allows separating any vector field into the sum of three uniquely defined components: curl free, divergence free and harmonic. This decomposition is usually achieved by using mesh-based methods such as finite differences or finite elements. This work presents a new meshless approach to the Helmholtz-Hodge decomposition for the analysis of 2D discrete vector fields. It embeds into the SPH particle-based framework. The proposed method is efficient and can be applied to extract features from a 2D discrete vector field and to multiphase fluid flow simulation to ensure incompressibility.
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