The objective of this study is to determine the clinical effectiveness of early onset long-term intensive physiotherapy on motor development in children with spastic diplegic cerebral palsy (CP). The study was a non-randomized cohort study with 62 months (mean) follow-up. The participants were ten infants who were first examined before 3 months of age corrected for prematurity. All had a gestational age of less than 33 weeks and a birth weight of less than 2000 g. Brain magnetic resonance imaging revealed periventricular white matter injury in nine subjects and moderate grade bilateral porencephaly in one. Five completed a full course of training of 52 months (mean), two did not receive therapy, and three received an insufficient course of therapy. The study was conducted at the Regional Center for Children with Disabilities including outpatient clinics and a school for children with special needs. The Vojta Method was used, which is an extensive family oriented physiotherapy program which uses isometric strengthening of muscles with tactile stimulation. Subjects were evaluated for the highest motor developmental level at the outcome evaluation 59 months (mean) after initiation of therapy. Four of the five who completed training could either stand still for 5 s or walk at the time of the outcome evaluation 52 months after the beginning of the therapy program. None of the five subjects with no training or insufficient training could accomplish this task when evaluated 64 months following therapy initiation. This was a statistically significant difference (P = 0.0278). A consistently applied physiotherapy program resulted in better motor outcomes in this group of children at risk for developing spastic diplegic CP.
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http://dx.doi.org/10.1016/S0387-7604(03)00111-6 | DOI Listing |
Ann Clin Transl Neurol
January 2025
Movement Disorders Program, Department of Neurology, Boston Children's Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Biallelic loss-of-function variants in AP4S1 cause childhood-onset hereditary spastic paraplegia. A recent report suggested that heterozygous AP4S1 variants lead to a syndrome of lower limb spasticity and dysregulation of sphincter function. We critically evaluate this claim against clinical observations in 28 heterozygous carriers of the same AP4S1 variant (NM_007077.
View Article and Find Full Text PDFMol Genet Genomic Med
February 2025
Department of Pediatric Neurology, Hospital Universitario Quirónsalud, Madrid, Spain.
Background: Biallelic pathogenic variants in the FUCA1 gene are associated with fucosidosis. This report describes a 4-year-old boy presenting with psychomotor regression, spasticity, and dystonic postures.
Methods And Results: Trio-based whole exome sequencing revealed two previously unreported loss-of-function variants in the FUCA1 gene.
Int J Mol Sci
January 2025
Institute for Maternal and Child Health IRCCS Burlo Garofolo, Via dell'Istria, 65, 34137 Trieste, Italy.
Pathogenic variants in , encoding dynamin-like protein-1 (DRP1), cause a lethal encephalopathy. DRP1 defective function results in altered mitochondrial networks, characterized by elongated/spaghetti-like, highly interconnected mitochondria. We validated in yeast the pathogenicity of a de novo variant identified by whole exome sequencing performed more than 10 years after the patient's death.
View Article and Find Full Text PDFCerebellum
January 2025
Molecular Medicine for Neurodegenerative and Neuromuscular Diseases Unit, IRCCS Stella Maris Foundation, Pisa, Italy.
Autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS) is a rare inherited condition described worldwide and characterized by a wide spectrum of heterogeneity in terms of genotype and phenotype. How sacsin loss leads to neurodegeneration is still unclear, and current knowledge indicates that sacsin is involved in multiple functional mechanisms. We hence hypothesized the existence of epigenetic factors, in particular alterations in methylation patterns, that could contribute to ARSACS pathogenesis and explain the pleiotropic effects of SACS further than pathogenic mutations.
View Article and Find Full Text PDFNeurogenetics
January 2025
Department of Pediatrics, Erciyes University, Faculty of Medicine, Kayseri, Turkey.
The cytoskeleton, composed of microtubules, intermediate filaments and actin filaments is vital for various cellular functions, particularly within the nervous system, where microtubules play a key role in intracellular transport, cell morphology, and synaptic plasticity. Tubulin-specific chaperones, including tubulin folding cofactors (TBCA, TBCB, TBCC, TBCD, TBCE), assist in the proper formation of α/β-tubulin heterodimers, essential for microtubule stability. Pathogenic variants in these chaperone-encoding genes, especially TBCD, have been linked to Progressive Encephalopathy with Brain Atrophy and Thin Corpus Callosum (PEBAT, OMIM #604,649), a severe neurodevelopmental disorder.
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