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IJMS | Free Full-Text | Methamphetamine Induces Systemic Inflammation and  Anxiety: The Role of the Gut–Immune–Brain Axis
IJMS | Free Full-Text | Methamphetamine Induces Systemic Inflammation and Anxiety: The Role of the Gut–Immune–Brain Axis

Brain Dopamine Neurotoxicity in Baboons Treated with Doses of  Methamphetamine Comparable to Those Recreationally Abused by Humans:  Evidence from [11C]WIN-35,428 Positron Emission Tomography Studies and  Direct In Vitro Determinations | Journal of
Brain Dopamine Neurotoxicity in Baboons Treated with Doses of Methamphetamine Comparable to Those Recreationally Abused by Humans: Evidence from [11C]WIN-35,428 Positron Emission Tomography Studies and Direct In Vitro Determinations | Journal of

The neuroprotective potential of low-dose methamphetamine in preclinical  models of stroke and traumatic brain injury - ScienceDirect
The neuroprotective potential of low-dose methamphetamine in preclinical models of stroke and traumatic brain injury - ScienceDirect

Distinct dose‐dependent effects of methamphetamine on real‐time dopamine  transmission in the rat nucleus accumbens and behaviors - Bhimani - 2021 -  Journal of Neurochemistry - Wiley Online Library
Distinct dose‐dependent effects of methamphetamine on real‐time dopamine transmission in the rat nucleus accumbens and behaviors - Bhimani - 2021 - Journal of Neurochemistry - Wiley Online Library

Methamphetamine Downregulates the Sperm-Specific Calcium Channels Involved  in Sperm Motility in Rats | ACS Omega
Methamphetamine Downregulates the Sperm-Specific Calcium Channels Involved in Sperm Motility in Rats | ACS Omega

Effect of low dose and high dose methamphetamine (METH) on synaptic... |  Download Scientific Diagram
Effect of low dose and high dose methamphetamine (METH) on synaptic... | Download Scientific Diagram

Frontiers | Low and high dose methamphetamine differentially regulate  synaptic structural plasticity in cortex and hippocampus
Frontiers | Low and high dose methamphetamine differentially regulate synaptic structural plasticity in cortex and hippocampus

Methamphetamine | Effects of Methamphetamine | FRANK
Methamphetamine | Effects of Methamphetamine | FRANK

Long-Term Treatment with Low Doses of Methamphetamine Promotes Neuronal  Differentiation and Strengthens Long-Term Potentiation of Glutamatergic  Synapses onto Dentate Granule Neurons | eNeuro
Long-Term Treatment with Low Doses of Methamphetamine Promotes Neuronal Differentiation and Strengthens Long-Term Potentiation of Glutamatergic Synapses onto Dentate Granule Neurons | eNeuro

Brain Dopamine Neurotoxicity in Baboons Treated with Doses of  Methamphetamine Comparable to Those Recreationally Abused by Humans:  Evidence from [11C]WIN-35,428 Positron Emission Tomography Studies and  Direct In Vitro Determinations | Journal of
Brain Dopamine Neurotoxicity in Baboons Treated with Doses of Methamphetamine Comparable to Those Recreationally Abused by Humans: Evidence from [11C]WIN-35,428 Positron Emission Tomography Studies and Direct In Vitro Determinations | Journal of

Effect of low dose and high dose methamphetamine (METH) on glial cell... |  Download Scientific Diagram
Effect of low dose and high dose methamphetamine (METH) on glial cell... | Download Scientific Diagram

Neurobiology and Clinical Manifestations of Methamphetamine Neurotoxicity
Neurobiology and Clinical Manifestations of Methamphetamine Neurotoxicity

Time perception deficits and its dose-dependent effect in methamphetamine  dependents with short-term abstinence | Science Advances
Time perception deficits and its dose-dependent effect in methamphetamine dependents with short-term abstinence | Science Advances

Frontiers | Low and high dose methamphetamine differentially regulate  synaptic structural plasticity in cortex and hippocampus
Frontiers | Low and high dose methamphetamine differentially regulate synaptic structural plasticity in cortex and hippocampus

Frontiers | Low and high dose methamphetamine differentially regulate  synaptic structural plasticity in cortex and hippocampus
Frontiers | Low and high dose methamphetamine differentially regulate synaptic structural plasticity in cortex and hippocampus

Administration of low dose methamphetamine 12 h after a severe traumatic  brain injury prevents neurological dysfunction and cognitive impairment in  rats - ScienceDirect
Administration of low dose methamphetamine 12 h after a severe traumatic brain injury prevents neurological dysfunction and cognitive impairment in rats - ScienceDirect

Methamphetamine Causes Degeneration of Dopamine Cell Bodies and Terminals  of the Nigrostriatal Pathway Evidenced by Silver Staining |  Neuropsychopharmacology
Methamphetamine Causes Degeneration of Dopamine Cell Bodies and Terminals of the Nigrostriatal Pathway Evidenced by Silver Staining | Neuropsychopharmacology

Contrasting dose-dependent effects of acute intravenous methamphetamine on  lateral hypothalamic extracellular glucose dynamics in male and female rats  | Journal of Neurophysiology
Contrasting dose-dependent effects of acute intravenous methamphetamine on lateral hypothalamic extracellular glucose dynamics in male and female rats | Journal of Neurophysiology

Frontiers | Low and high dose methamphetamine differentially regulate  synaptic structural plasticity in cortex and hippocampus
Frontiers | Low and high dose methamphetamine differentially regulate synaptic structural plasticity in cortex and hippocampus

Modeling Human Methamphetamine Exposure in Nonhuman Primates: Chronic Dosing  in the Rhesus Macaque Leads to Behavioral and Physiological Abnormalities |  Neuropsychopharmacology
Modeling Human Methamphetamine Exposure in Nonhuman Primates: Chronic Dosing in the Rhesus Macaque Leads to Behavioral and Physiological Abnormalities | Neuropsychopharmacology

Neurology International | Free Full-Text | Oxytocin, a Novel Treatment for  Methamphetamine Use Disorder
Neurology International | Free Full-Text | Oxytocin, a Novel Treatment for Methamphetamine Use Disorder

Long-Term Treatment with Low Doses of Methamphetamine Promotes Neuronal  Differentiation and Strengthens Long-Term Potentiation of Glutamatergic  Synapses onto Dentate Granule Neurons | eNeuro
Long-Term Treatment with Low Doses of Methamphetamine Promotes Neuronal Differentiation and Strengthens Long-Term Potentiation of Glutamatergic Synapses onto Dentate Granule Neurons | eNeuro

Frontiers | Low and high dose methamphetamine differentially regulate  synaptic structural plasticity in cortex and hippocampus
Frontiers | Low and high dose methamphetamine differentially regulate synaptic structural plasticity in cortex and hippocampus

Dose-dependent changes in the locomotor responses to methamphetamine in  BALB/c mice: Low doses induce hypolocomotion - ScienceDirect
Dose-dependent changes in the locomotor responses to methamphetamine in BALB/c mice: Low doses induce hypolocomotion - ScienceDirect

Frontiers | Low and high dose methamphetamine differentially regulate  synaptic structural plasticity in cortex and hippocampus
Frontiers | Low and high dose methamphetamine differentially regulate synaptic structural plasticity in cortex and hippocampus