Publications by authors named "N C Maruyama"

Background: Early intervention may prevent maltreatment during infancy. This study examined the effectiveness of interventions initiated during the perinatal period to prevent child abuse and neglect.

Methods: We searched the MEDLINE, PsycINFO, Embase, and Cochrane Central Register of Controlled Trials databases for articles published before February 2023.

View Article and Find Full Text PDF

Background: Adult hypophosphatasia is an uncommon inherited disorder of mineral homeostasis affecting bone. It arises from mutations within the Alkaline Phosphatase, Biomineralization Associated (ALPL) gene, which encodes tissue-nonspecific alkaline phosphatase. Because of its low prevalence and non-specific clinical manifestations, underdiagnosis and misdiagnosis are frequent, particularly in Asian populations.

View Article and Find Full Text PDF

Objectives: We examined the association of schooling, sibling life situation, and dietary habits with the estimated 24-h urinary salt excretion and the urinary sodium-to-potassium (Na/K) ratio in 3-year-old children.

Methods: The subjects were 639 children who underwent a health checkup in four cities and towns in Kyoto Prefecture from January to November 2019. The children's parents answered questionnaires about weekday childcare places, the birth order, and the awareness of reducing the salt intake.

View Article and Find Full Text PDF

Background: Midwives and perinatal nurses play a crucial role in responding to intimate partner violence (IPV) against pregnant women; however, these roles are often not performed adequately. This study aimed to identify provider-related, healthcare system, and social barriers and facilitators to IPV response from the perspective of midwives and perinatal nurses.

Methods: This qualitative descriptive study used semi-structured interviews with five midwives and a nurse from perinatal care facilities in Tokyo, Japan.

View Article and Find Full Text PDF

Here, we report a smart genome editing system for soybean (Glycine max) using the in planta bombardment-ribonucleoprotein (iPB-RNP) method without introducing foreign DNA or requiring traditional tissue culture processes such as embryogenesis and organogenesis. Shoot apical meristem (SAM) of embryonic axes was used as the target tissue for genome editing because the SAM in soybean mature seeds has stem cells and specific cell layers that develop germ cells during the reproductive growth stage. In the iPB-RNP method, the RNP complex of the CRISPR/Cas9 system was directly delivered into SAM stem cells via particle bombardment, and genome-edited plants were generated from these SAMs.

View Article and Find Full Text PDF